Haynes 625 is a nickel-chromium-molybdenum alloy with niobium/tantalum added to enhance its corrosion resistance and strength at elevated temperatures. It is one of the most widely used superalloys due to its exceptional mechanical properties, high corrosion resistance, and ease of fabrication. Haynes 625 has excellent resistance to pitting, crevice corrosion, and stress corrosion cracking in chloride-containing environments, making it suitable for use in marine and chemical processing applications. It also exhibits high resistance to oxidation and scaling at elevated temperatures up to 1000â??, making it suitable for use in high-temperature applications such as gas turbines, furnace components, and heat exchangers. Haynes 625 can be easily fabricated by various methods including welding, forging, and machining. It can be used in both as-welded and annealed conditions. It is available in various forms such as plates, sheets, bars, and tubes, and is widely used in industries such as aerospace, chemical processing, oil and gas, and nuclear power. US standards: AMS 5599: Specifies the standard specifications for Haynes 625 plate, sheet, and strip; AMS 5666: Specifies the standard specifications for Haynes 625 bars, wire, profiles, and forgings; AMS 5837: Specifies the standard specifications for Haynes 625 seamless or welded tubes; ASME SB 443: Specifies the standard specifications for Haynes 625 plate, sheet, and strip; ASME SB 446: Specifies the standard specifications for Haynes 625 bars and forgings; ASME SB 444: Specifies the standard specifications for Haynes 625 seamless and welded tubes. European standards: EN 2.4856: Specifies the standard specifications for Haynes 625 plate, sheet, strip, bars, and wire; EN 10216-5: Specifies the standard specifications for Haynes 625 seamless steel tubes. Japanese standards: JIS NW 625: Specifies the standard specifications for Haynes 625 plate, sheet, strip, bars, and seamless tubes; JIS NW 6692: Specifies the standard specifications for Haynes 625 welded tubes. Chinese standards: GB/T 14992: Specifies the standard specifications for Haynes 625 plate, sheet, and strip; GB/T 14994: Specifies the standard specifications for Haynes 625 welded seamless steel tubes; GB/T 15008: Specifies the standard specifications for Haynes 625 bars and forgings; GB/T 15010: Specifies the standard specifications for Haynes 625 seamless and welded tubes. We can provide the following the products:Haynes 625 alloy coil; Haynes 625 alloy strip;Haynes 625 alloy plate; Haynes 625 alloy sheets; Haynes 625 alloy tube; Haynes 625 alloy pipe;Haynes 625 alloy flat; Haynes 625 alloy bar GB/JIS:G4903/UNS:N06625/W.Nr:2.4856
Haynes 617 is a nickel-chromium-cobalt-molybdenum alloy with excellent high-temperature strength, good oxidation resistance, and excellent resistance to carburization and sulfidation. It is commonly used in gas turbine engine components, industrial furnace applications, and other high-temperature applications. Haynes 617 has a nominal composition of 44.5% nickel, 20-24% chromium, 8-10% molybdenum, 0.5% maximum copper, 0.15% maximum carbon, 1.0% maximum cobalt, 0.5% maximum silicon, 1.0% maximum manganese, 0.015% maximum sulfur, 0.015% maximum phosphorus, and the balance iron. Haynes 617 offers excellent mechanical properties at high temperatures, making it ideal for use in gas turbine engine components such as combustion liners, transition ducts, and exhaust systems. Its high-temperature strength and resistance to carburization and sulfidation make it suitable for use in industrial furnace applications such as radiant tubes, muffles, and retorts. In addition to its high-temperature strength and resistance to oxidation and carburization, Haynes 617 also offers good resistance to thermal shock and thermal fatigue. This makes it ideal for use in applications that require resistance to cyclic heating and cooling, such as gas turbine engine components and industrial furnace applications. Overall, Haynes 617 is a versatile high-temperature alloy that offers excellent mechanical properties and resistance to corrosion and oxidation in high-temperature environments. Its use in gas turbine engine components and industrial furnace applications has been well-established, and it continues to be an important material in these industries. US standards: AMS 5887: Standard specification for Haynes 617 plate, sheet, and strip; AMS 5888: Standard specification for Haynes 617 rod, wire, and bar; AMS 5889: Standard specification for Haynes 617 seamless or welded pipe; ASME SB 166: Standard specification for Haynes 617 rod, wire, and bar; ASME SB 167: Standard specification for Haynes 617 seamless pipe; ASME SB 168: Standard specification for Haynes 617 plate, sheet, and strip; ASME SB 564: Standard specification for Haynes 617 forgings. We can provide the following the products:Haynes 617 alloy coil; Haynes 617 alloy strip;Haynes 617 alloy plate; Haynes 617 alloy sheets; Haynes 617 alloy tube; Haynes 617 alloy pipe;Haynes 617 alloy flat; Haynes 617 alloy bar GB/JIS:NW 6617/UNS:N06617/W.Nr:2.4663
440 steel is a martensitic stainless steel. The carbon content is 1.0%, and the chromium content is 16-18%. Strong anti-rust ability, high-quality stainless steel, 440 is high-strength knife steel, slightly higher carbon content, can obtain higher yield strength after proper heat treatment, hardness can reach 58HRC, belongs to the hardest stainless steel. The most common application example is "razor blades". There are three commonly used models: 440A, 440B, 440C, and 440F (easy to process) 440 stainless steel is a type of high carbon martensitic stainless steel that offers excellent hardness, wear resistance, and corrosion resistance. It belongs to the family of stainless steels that contains a high percentage of carbon (between 0.6% to 0.75%), which contributes to its hardness and strength. Some of the key properties of 440 stainless steel include: Hardness: 440 stainless steel has a high level of hardness, making it ideal for use in applications that require resistance to wear, abrasion, and deformation. Corrosion resistance: 440 stainless steel offers good corrosion resistance, although it is not as corrosion-resistant as austenitic stainless steels. Magnetic properties: 440 stainless steel is magnetic, which makes it suitable for use in applications where magnetic properties are required. Toughness: 440 stainless steel has good toughness, which means that it can withstand impact and shock without cracking or breaking. Some of the common applications for 440 stainless steel include: Cutlery and knives: The high hardness and wear resistance of 440 stainless steel make it ideal for use in cutlery and knives. Bearings and valves: 440 stainless steel is often used to make bearings and valves because of its high strength and resistance to wear and corrosion. Pumps and turbines: The toughness and resistance to wear of 440 stainless steel make it suitable for use in pumps and turbines. Overall, 440 stainless steel is a versatile and high-performance material that offers excellent hardness, wear resistance, and corrosion resistance. It is well-suited for use in applications where these properties are required, such as in cutlery, bearings, valves, pumps, and turbines. Here are some of the most common international standards for 440 stainless steel: ASTM A276: Standard Specification for Stainless Steel Bars and Shapes ASTM A580: Standard Specification for Stainless Steel Wire JIS G4303: Stainless steel bars EN 10088-3: Stainless steels - Part 3: Technical delivery conditions for semi-finished products, bars, rods, wire, sections and bright products of corrosion resisting steels for general purposes GB/T 1220: Stainless steel bars We can provide the following the form:440 stainless steel coil; 440 stainless stee strip;440 stainless stee plate; 440 stainless steel sheets; 440 stainless steel tubes; 440 stainless steel pipe; 440 stainless steel flat; 440 stainless steel bar
Haynes 718 alloy is a precipitation-hardening nickel-chromium alloy that offers high strength, toughness, and resistance to corrosion and high-temperature environments. It was developed in the 1950s for use in gas turbine engine components, and has since found a wide range of applications in other high-stress industries such as aerospace, nuclear, and chemical processing. The alloy is characterized by its excellent mechanical properties, including high tensile and yield strength, good ductility and toughness, and resistance to fatigue, creep, and stress-corrosion cracking. These properties are achieved through a combination of precipitation hardening and solid-solution strengthening, which involve heat treatment processes that cause the formation of fine, uniform precipitates within the metal matrix. Haynes 718 alloy also has good resistance to oxidation and other forms of corrosion, particularly in high-temperature environments. It is capable of maintaining its properties at temperatures up to around 1300�°F (700�°C), making it suitable for use in hot sections of gas turbine engines, nuclear reactor components, and other high-temperature applications. In addition to its mechanical and corrosion resistance properties, Haynes 718 alloy also has good weldability and machinability. It can be readily welded using a range of methods, and can be easily machined using standard metalworking techniques. Overall, Haynes 718 alloy is a versatile and reliable material that has proven itself in a wide range of demanding applications. Its combination of high strength, toughness, and resistance to corrosion and high-temperature environments make it an ideal choice for use in critical components where reliability and performance are paramount. Haynes 718 alloy standards vary by country. Here are some of the common ones: United States Standards: AMS 5596: Standard Specification for Nickel Alloy, Corrosion and Heat-Resistant, Sheet, Strip, and Plate, Haynes 718 AMS 5662: Standard Specification for Nickel Alloy, Bars, Forgings, and Rings, Haynes 718 AMS 5663: Standard Specification for Nickel Alloy, Bars, Forgings, and Rings, Haynes 718 (UNS N07718) AMS 5664: Standard Specification for Nickel Alloy, Bars, Forgings, and Rings, Haynes 718 (UNS N07718) AMS 5832: Standard Specification for Nickel Alloy, Corrosion and Heat-Resistant, Welding Wire, Haynes 718 AMS 5962: Standard Specification for Nickel Alloy, Corrosion and Heat-Resistant, Bars, Forgings, and Rings, Haynes 718 AMS 5838: Standard Specification for Nickel Alloy, Corrosion and Heat-Resistant, Welding Wire, Haynes 718SPF We can provide the following the prodcuts:Haynes 718 alloy coil; Haynes 718 alloy strip;Haynes 718 alloy plate; Haynes 718 alloy sheets; Haynes 718 alloy tube; Haynes 718 alloy pipe;Haynes 718 alloy flat; Haynes 718 alloy bar GB/JIS:NW7718/UNS:NW7718/W.Nr:2.4668
316L stainless steel is a type of austenitic stainless steel alloy with a low carbon content, making it resistant to sensitization, which is the formation of grain boundary carbides at high temperatures, causing intergranular corrosion. The alloy is commonly used in various industries, including chemical, pharmaceutical, and medical, due to its excellent corrosion resistance and good mechanical properties. The chemical composition of 316L stainless steel typically includes 16-18% chromium, 10-14% nickel, 2-3% molybdenum, and less than 0.03% carbon. The addition of molybdenum provides increased corrosion resistance to pitting and crevice corrosion, making it suitable for use in aggressive environments. 316L stainless steel is known for its high corrosion resistance to a wide range of chemicals, acids, and alkalis, and is particularly resistant to chlorides, making it an ideal material for use in marine environments. It is also known for its excellent high-temperature strength, which makes it suitable for use in high-temperature applications such as heat exchangers. In terms of mechanical properties, 316L stainless steel has a minimum tensile strength of 485 MPa (70 ksi), a minimum yield strength of 170 MPa (25 ksi), and a minimum elongation of 40%, making it a strong and ductile material that can be easily formed and welded. Its resistance to high temperatures and thermal expansion make it ideal for use in high-temperature applications. Overall, 316L stainless steel is a versatile and reliable material that offers excellent corrosion resistance, high-temperature strength, and good mechanical properties, making it suitable for a wide range of industrial applications. American Standard: ASTM A240/A240M-20a European Standard: EN 10088-2:2005 Japanese Standard: JIS G4304-2005 Chinese Standard: GB/T 3280-2015 Indian Standard: IS 6911:2017 Here are some of the most common international standards for 316L stainless steel: ASTM A240/A240M: Standard Specification for Chromium and Chromium-Nickel Stainless Steel Plate, Sheet, and Strip for Pressure Vessels and for General Applications ASTM A276/A276M: Standard Specification for Stainless Steel Bars and Shapes ASTM A312/A312M: Standard Specification for Seamless, Welded, and Heavily Cold Worked Austenitic Stainless Steel Pipes ASTM A479/A479M: Standard Specification for Stainless Steel Bars and Shapes for Use in Boilers and Other Pressure Vessels EN 10088-2: Stainless steels - Part 2: Technical delivery conditions for sheet/plate and strip of corrosion resisting steels for general purposes JIS G4304: Hot-rolled stainless steel plate, sheet and strip GB/T 3280: Cold rolled stainless steel plate, sheet and strip We can provide the following form:316L stainless steel coil; 316L stainless stee strip:316L stainless stee plate; 316L stainless steel sheets; 316L stainless steel tubes 316L stainless steel pipe; 316L stainless steel flat; 316L stainless steel bar
Haynes 718 Alloy is a high-temperature, high-strength nickel-based alloy developed by Haynes International. It has excellent oxidation resistance, corrosion resistance, and high-temperature strength, and is widely used in high-temperature and high-pressure environments in aerospace, energy, chemical, petroleum, and natural gas industries. The chemical composition of Haynes 718 Alloy includes approximately 52% nickel, 19% chromium, 3% titanium, 5% aluminum, about 0.9% iron, and trace amounts of carbon, sulfur, phosphorus, copper, and tantalum. This combination of elements gives Haynes 718 Alloy its excellent high-temperature performance. In addition, Haynes 718 Alloy uses advanced heat treatment processes, which can further improve its high-temperature strength and oxidation resistance. Haynes 718 Alloy can be made into various shapes of products, such as sheets, rods, pipes, forgings, castings, and welding materials, etc. Its mechanical properties improve with increasing temperature, and it can maintain high strength and toughness at high temperatures ranging from 600�°C to 980�°C. In addition, Haynes 718 Alloy has excellent oxidation resistance and can withstand high-temperature oxidation environments for a long time. Haynes 718 alloy is an important nickel-based superalloy used in high-temperature applications such as gas turbine engines. Below are the standards for Haynes 718 alloy in various countries: United States: AMS 5596, AMS 5662, AMS 5663, AMS 5664, AMS 5832, AMS 5962, AMS 5665, AMS 5666, AMS 5667, AMS 5668, AMS 5669, AMS 5670, AMS 5671, AMS 5758, AMS 5759, AMS 5660, AMS 5661, AMS 5677, AMS 5909, AMS 5927, AMS 5947, AMS 5950, AMS 5963, AMS 5964, AMS 5966, AMS 5967, AMS 5968, AMS 5969, AMS 5970, AMS 5971, AMS 5972, AMS 5973, AMS 5974, AMS 5975, AMS 5976, AMS 5977, AMS 5978, AMS 5979, AMS 5980, AMS 5981, ASTM B637, ASTM B670, UNS N07718 Europe: EN 2.4668 Germany: DIN 17744, VdT�?V 718 France: AFNOR NC 19 Fe Nb United Kingdom: BS HR 201, BS HR 401, BS HR 501 Japan: JIS NW 0771 We can provide the following the form:Haynes 718 Alloy coil; Haynes 718 Alloy strip;Haynes 718 Alloy plate; Haynes 718 Alloy sheets; Haynes 718 Alloy tube; Haynes 718 Alloy pipe;Haynes 718 Alloy flat; Haynes 718 Alloy bar BS:HR 201/JIS:NC19FeNb/UNS:N07718/W.Nr:2.4669 Haynes 718 is a nickel-chromium alloy that is known for its high strength and excellent corrosion resistance. It is commonly used in a wide range of applications, including: Aerospace industry: Haynes 718 is widely used in the aerospace industry due to its high strength, excellent fatigue resistance, and good weldability. It is used for components such as gas turbine engine parts, thrust reversers, and exhaust systems.
430 stainless steel is a general-purpose steel with good corrosion resistance. Its thermal conductivity is better than that of austenite, its coefficient of thermal expansion is smaller than that of austenite, it is resistant to thermal fatigue, and it is added with stabilizing element titanium, so the mechanical properties of the weld are good. 430 stainless steel is used for architectural decoration, fuel burner parts, household appliances, and home appliance parts. 430F is a steel grade with easy-cutting properties added to 430 steel, and is mainly used for automatic lathes, bolts and nuts, etc. 430LX adds Ti or Nb to 430 steel, reduces C content, improves processability and welding performance. We can provide the following form:430 stainless steel coil; 430 stainless stee strip;430 stainless stee plate; 430 stainless steel sheets; 430 stainless steel tubes; 430 stainless steel pipe; 430 stainless steel flat; 430 stainless steel bar Hot water tanks, hot water supply systems, sanitary appliances, household durable appliances, bicycle flywheels, etc.
Incoloy is a nickel-chromium-iron alloy, which is a nickel-iron-chromium iron-nickel-based corrosion-resistant alloy designed for anti-oxidation and carbonization when the temperature rises. This alloy is used in high-temperature water vapor, including steam-air-CO2 In mixed gas, it has good corrosion resistance. In some high-temperature and high-pressure water media, its stress corrosion resistance is significantly better than 18-8 stainless steel and Inconel600; it also has good corrosion resistance in H2+H2S media. In the alkaline medium containing NaOH, its stress corrosion resistance is better than high-nickel alloys such as Inconel600.
Incoloy alloy 925 is a precipitation-hardenable nickel-iron-chromium alloy that contains additions of molybdenum, copper, titanium, and aluminum. The alloy has excellent mechanical properties at both ambient and elevated temperatures, making it suitable for use in a wide range of applications, including sour gas and oil production, aerospace, chemical processing, and marine engineering. Incoloy alloy 925 is known for its high strength, which is achieved through a combination of solid solution strengthening and precipitation hardening. It also exhibits excellent resistance to corrosion and oxidation in a variety of environments, including those containing sulfides and chlorides. The addition of molybdenum and copper to the alloy improves its resistance to pitting and crevice corrosion, while the titanium and aluminum additions enhance its resistance to intergranular attack. The combination of these elements makes Incoloy alloy 925 highly resistant to stress corrosion cracking and hydrogen embrittlement. The alloy is typically supplied in the solution annealed condition, and can be easily fabricated using common techniques such as welding, brazing, and machining. After fabrication, the alloy can be precipitation hardened to achieve its maximum strength. Incoloy alloy 925 is available in a range of forms, including round bars, flat bars, forgings, and wire. It is also available in various sizes and dimensions to meet the specific needs of different applications. Overall, Incoloy alloy 925 is a versatile and high-performance alloy that offers excellent strength, corrosion resistance, and durability in demanding applications. The international standard designations for Incoloy alloy 925 include UNS N09925 and W.Nr. 2.4858. There are also corresponding standards and specifications in different countries and regions, such as AMS and ASTM standards in the United States, EN standards in Europe, and JIS and JPI standards in Japan. Here are the specific standards and designations for Incoloy alloy 925 in different countries: United States: AMS 5660, AMS 5661, AMS 5662, AMS 5663, AMS 5664, AMS 5672, AMS 5872, ASTM B408, ASTM B805, UNS N09925 Germany: DIN 17742, DIN 17753, DIN 17754, W.Nr. 2.4858 United Kingdom: BS 3076, BS HR 6 Europe: EN 10095, EN 10204-3.1 Japan: JIS G4902, JPI-SB46 We can provide the following the form:Incoloy alloy925 coil; Incoloy alloy925 strip;Incoloy alloy925 plate; Incoloy alloy925 sheets; Incoloy alloy925 tube; Incoloy alloy925 pipe;Incoloy alloy925 flat; Incoloy alloy925 bar Incoloy alloy 925 has a wide range of applications in various industries, including: Oil and Gas Industry: Incoloy alloy 925 is widely used in oil and gas industry due to its high strength, excellent corrosion resistance, and resistance to sulfide stress cracking in sour environments. It is used in various components of downhole tools, such as subsurface safety valves, tubing hangers, and packers.
Hastelloy C-276 is a nickel-molybdenum-chromium superalloy with exceptional corrosion resistance in a variety of aggressive media. It was developed by Haynes International in the 1960s as a more versatile alternative to other nickel alloys such as Hastelloy B-2 and Hastelloy C-4. The high chromium content in Hastelloy C-276 provides superior resistance to oxidizing environments, while the molybdenum and tungsten enhance resistance to reducing media. The nickel content also makes Hastelloy C-276 highly resistant to chloride-induced stress corrosion cracking. Hastelloy C-276 has a wide range of applications in industries such as chemical processing, pulp and paper production, waste treatment, and pollution control. Its resistance to hot sulfuric acid and chlorine environments makes it suitable for use in scrubbers, ducting, and piping systems. It is also used in flue gas desulfurization systems and in the production of organic chemicals such as acetic acid and acetic anhydride. Hastelloy C-276 is a versatile alloy that can be easily fabricated using traditional techniques such as hot and cold forming, welding, and machining. It can also be heat treated to optimize its properties for specific applications. For example, annealing at temperatures between 2050�°F and 2150�°F can improve resistance to intergranular attack, while solution annealing at 2150�°F followed by rapid quenching can enhance resistance to localized corrosion. Overall, Hastelloy C-276 is an excellent choice for applications that require superior corrosion resistance and high strength in aggressive environments. Its versatility, ease of fabrication, and excellent mechanical properties make it a popular choice in a variety of industries. The following are the various national standards for Hastelloy C-276 alloy: United States: AMS 5750, AMS 5751, AMS 5796, AMS 5587, ASTM B366, ASTM B462, ASTM B574, ASTM B575, ASTM B619, ASTM B622, ASTM B626, UNS N10276 Europe: EN 2.4819 Germany: DIN 17744 France: AFNOR NC 17 D United Kingdom: BS HR 202, BS HR 403 Japan: JIS NW 0276 We can offer the following products:Hastelloy C-276 coil; Hastelloy C-276 strip;Hastelloy C-276 plate; Hastelloy C-276 sheets; Hastelloy C-276 tube; Hastelloy C-276 pipe;Hastelloy C-276 flat; Hastelloy C-276 bar GB:GH2761/JIS:NW 0276/UNS :N10276/W.Nr:2.4819 Hastelloy C-276 has a wide range of applications in industries such as: Chemical processing Pulp and paper production Waste treatment Pollution control Scrubbers, ducting, and piping systems in sulfuric acid and chlorine environments Flue gas desulfurization systems Production of organic chemicals such as acetic acid and acetic anhydride. It is also used in various other applications where corrosion resistance and high strength are critical.
Incoloy Alloy 926 is a super-austenitic nickel-based alloy with high levels of molybdenum, nitrogen, and chromium. It is known for its excellent corrosion resistance in a variety of challenging environments, including sulfuric acid, hydrochloric acid, and seawater. Here is a detailed introduction to Incoloy Alloy 926 and its applications: Incoloy alloy 926 is a super-austenitic nickel-based alloy with high corrosion resistance and excellent mechanical properties at high temperatures. It has a chemical composition of 22% chromium, 25% molybdenum, 6% tungsten, and 0.5% nitrogen, with nickel and iron making up the balance. The alloy also contains small amounts of copper and titanium. Incoloy alloy 926 is known for its excellent resistance to a wide range of corrosive environments, including chloride ion stress-corrosion cracking and pitting and crevice corrosion. It also has good resistance to sulfuric acid and phosphoric acid, as well as seawater and brine solutions. The alloy's high nickel and molybdenum content provides excellent resistance to reducing environments, while its chromium content enhances its resistance to oxidizing environments. In terms of mechanical properties, Incoloy alloy 926 exhibits high strength and toughness, along with excellent weldability and formability. It can be fabricated using a variety of techniques, including hot and cold working, machining, and welding. Due to its excellent corrosion resistance and mechanical properties, Incoloy alloy 926 is commonly used in a variety of industries, including chemical processing, oil and gas, nuclear, marine, and desalination. It is often used in applications involving sour gas environments, such as in the production of oil and gas, as well as in heat exchangers, pressure vessels, and piping systems. The international standards and specifications for Incoloy alloy 926 are as follows: United States: ASTM B649, AMS 5737, AMS 5853, UNS N08926 Europe: EN 1.4529, SEW 400 Germany: DIN 17752, DIN 17754, DIN 17750, W.Nr. 1.4529 We can provide the following the form:Incoloy alloy926 coil; Incoloy alloy926 strip;Incoloy alloy926 plate; Incoloy alloy926 sheets; Incoloy alloy926 tube; Incoloy alloy926 pipe;Incoloy alloy926 flat; Incoloy alloy926 bar BS:NA 25/JIS:SUS 890L/UNS:N08925/W.Nr:1.4529
INCOLOY ALLOY 800HT is a high-temperature alloy that is highly resistant to corrosion and oxidation. It is composed primarily of iron, nickel, and chromium, and also contains small amounts of copper, titanium, and aluminum. This alloy has excellent mechanical properties and is highly durable, making it ideal for use in high-temperature and high-stress environments.INCOLOY ALLOY 800HT is a highly versatile alloy that is used in various industries due to its excellent mechanical properties, high strength, and corrosion resistance. Its applications range from chemical and petrochemical industries to aerospace and power generation, making it an essential material in modern technology. Incoloy alloy 800HT is a high-temperature nickel-iron-chromium alloy, also known as UNS N08811. Some international standards and specifications for Incoloy alloy 800HT include: American standards: ASTM B407, ASTM B163, ASTM B515, ASTM B514, ASTM B407, ASTM B408, ASTM B409, ASTM B564, ASME SB-407, ASME SB-163, ASME SB-515, ASME SB-514, ASME SB-407, ASME SB-408, ASME SB-409, ASME SB-564 European standards: EN 1.4876, EN 1.4959, EN 10216-5, EN 10217-7, EN 10222-5, EN 10269, EN 10272, EN 10296-2, EN 10028-7, EN 10095, EN 10204-3.1 Japanese standards: JIS G3456, JIS G3459, JIS G3463, JIS G3448 Chinese standards: GB/T 14992, GB/T 14994, GB/T 15001, GB/T 15003, GB/T 15007, GB/T 15009, GB/T 15011, GB/T 15013, GB/T 15014, GB/T 15021, GB/T 15023, GB/T 15025, GB/T 15027, GB/T 15029, GB/T 15031, GB/T 15033, GB/T 15037, GB/T 15039, GB/T 15041, GB/T 15043, GB/T 15045, GB/T 15047, GB/T 15049, GB/T 15051, GB/T 15053, GB/T 15055, GB/T 15057, GB/T 15059, GB/T 15061, GB/T 15063, GB/T 15065, GB/T 15067, GB/T 15069, GB/T 15071, GB/T 15073, GB/T 15075, GB/T 15077, GB/T 15079, GB/T 15081, GB/T 15083, GB/T 15085, GB/T 15087, GB/T 15089, GB/T 15091, GB/T 15093, GB/T 15095, GB/T 15097, GB/T 15099, GB/T 15101, GB/T 15103, GB/T 15105, GB/T 15107, GB/T 15109, GB/T 15111, GB/T 15113, GB/T 15115, GB/T 15117, GB/T 15119, GB/T 15121. BS:3072/JIS:NCF800H/UNS:N08811/W.Nr:1.4876 We can provide the following the form:Incoloy alloy800HT coil; Incoloy alloy 800HT strip;Incoloy alloy 800HT plate; Incoloy alloy 800HT sheets; Incoloy alloy 800HT tube; Incoloyalloy 800HT pipe;Incoloy alloy 800HT flat; Incoloy alloy 800HT bar INCOLOY ALLOY 800HT is widely used in various industries, including the chemical, petrochemical, and aerospace industries. Here are some specific applications of this alloy: Chemical Industry: This alloy is commonly used in the production of chemicals such as sulfuric acid, nitric acid, and acetic acid. It is also used in the manufacturing of heat exchangers and reactors.
403 stainless steel pipe is a brand of stainless steel produced according to the American ASTM standard 403 is equivalent to 1Cr12 stainless steel pipe, containing 0.01% carbon and 12% chromium 403 stainless steel pipes belong to the international stainless steel labeling method. 403 stainless steel pipe--S40300 (American AISI, ASTM) 403 corresponds to the Chinese grade is 1Cr12 403 stainless steel is a martensitic stainless steel that contains chromium, which provides it with excellent corrosion resistance properties. It is a heat-treatable alloy that can be hardened to achieve high strength and hardness levels. However, its corrosion resistance is lower compared to other stainless steel grades such as 304 and 316. Some of the key properties of 403 stainless steel include: Corrosion resistance: 403 stainless steel offers good corrosion resistance in mild environments, but its corrosion resistance is not as good as other austenitic stainless steel grades. Heat resistance: 403 stainless steel has good heat resistance and can be used at temperatures up to 649�°C (1200�°F). Hardness and strength: 403 can be heat treated to achieve high levels of hardness and strength. Machinability: 403 has good machinability in the annealed condition, but it can be difficult to machine in its hardened state. Some of the common applications for 403 stainless steel include: Pump shafts Valve parts Cutlery Surgical instruments Machine parts Overall, 403 stainless steel is a heat-treatable alloy that offers good corrosion resistance in mild environments and is well-suited for applications that require high strength and hardness. However, it is not recommended for use in corrosive environments or applications that require high resistance to pitting and crevice corrosion. Here are some of the most common international standards for 403 stainless steel: ASTM A240/A240M: Standard Specification for Chromium and Chromium-Nickel Stainless Steel Plate, Sheet, and Strip for Pressure Vessels and for General Applications. ASTM A276: Standard Specification for Stainless Steel Bars and Shapes. ASTM A479/A479M: Standard Specification for Stainless Steel Bars and Shapes for Use in Boilers and Other Pressure Vessels. EN 10088-2: Stainless steels - Part 2: Technical delivery conditions for sheet/plate and strip of corrosion resisting steels for general purposes. JIS G4304: Hot-rolled stainless steel plate, sheet and strip. GB/T 3280: Cold rolled stainless steel plate, sheet and strip. We can provide the following the form:403 stainless steel coil; 403 stainless stee strip;403 stainless stee plate; 403 stainless steel sheets; 403 stainless steel tubes; 403 stainless steel pipe; Good stainless and heat-resistant steel for steam turbine blades and high-stress components.
Hastelloy N is a nickel-based corrosion-resistant alloy that is known for its excellent high-temperature and high-stress properties. This alloy is composed of nickel, molybdenum, iron, chromium, cobalt, and trace amounts of other elements such as copper, aluminum, and titanium. The chemical composition of Hastelloy N typically includes 65-70% nickel, 4.0-6.0% molybdenum, 2.0-4.0% iron, 1.0-3.0% chromium, and 1.0-3.0% cobalt. These elements work together to provide a combination of strength and corrosion resistance, making Hastelloy N suitable for use in harsh environments. In terms of mechanical properties, Hastelloy N has a minimum tensile strength of 690 MPa, a minimum yield strength of 310 MPa, and a minimum elongation of 40%. Its hardness, as measured by the Brinell hardness scale (HB), is typically no greater than 241. These properties make it a reliable and durable material for use in various applications. One of the major advantages of Hastelloy N is its excellent resistance to corrosion in a wide range of environments, including high-temperature and high-stress situations. This makes it a popular choice for use in applications such as chemical processing, petrochemical production, pollution control, and nuclear fuel processing, where exposure to corrosive environments is common. Hastelloy N is produced according to various international standards, including ASTM B619, ASTM B626, ASME SB619, ASME SB626, DIN 17744, WERKSTOFF Nr. 2.4648, and JIS NW4400. These standards specify the chemical composition, mechanical properties, processing methods, and testing procedures for Hastelloy N, ensuring consistent quality and reliability. Overall, Hastelloy N is a high-performance alloy that is valued for its exceptional corrosion resistance, strength, and durability in harsh environments. Here are the international standards for Hastelloy N: American Standards: AMS 5870: Hastelloy N sheet, strip, and plate standard specification; AMS 5886: Hastelloy N rod, bar, and wire standard specification; AMS 5887: Hastelloy N seamless or welded pipe and tube standard specification. We can provide the following the products:Hastelloy N coil; Hastelloy N strip;Hastelloy N plate; Hastelloy N sheets; Hastelloy N tube; Hastelloy N pipe;Hastelloy N flat; Hastelloy N bar GB/JIS:NW6693/UNS:N10003/W.Nr:2.4648
Haynes 230 is a nickel-based superalloy that is known for its high strength, excellent resistance to oxidation and corrosion, and good thermal stability. It was developed by Haynes International, Inc., and is commonly used in high-temperature applications, such as gas turbine engines, aerospace, and chemical processing industries. Chemical Composition: Haynes 230 is composed of a range of elements, including nickel (Ni), chromium (Cr), molybdenum (Mo), iron (Fe), cobalt (Co), manganese (Mn), silicon (Si), carbon (C), and aluminum (Al). The chemical composition of Haynes 230 can be adjusted within certain ranges to meet specific application requirements. Mechanical Properties: Haynes 230 has excellent mechanical properties, including high strength, good ductility, and toughness. Its yield strength is 685 MPa and its tensile strength is 1025 MPa. It also has a 42% elongation rate. Thermal Properties: Haynes 230 exhibits good thermal stability, making it an excellent choice for high-temperature applications. Its melting point is 1305�°C (2381�°F), and it has a thermal expansion coefficient of 13.7 �µm/m�·K (7.6 �µin/in�·�°F). Corrosion and Oxidation Resistance: Haynes 230 has excellent resistance to oxidation and corrosion in high-temperature and high-stress environments. It has a good resistance to sulfur-bearing gases, such as hydrogen sulfide (H2S) and sulfur dioxide (SO2), and can withstand harsh chemical environments. Weldability: Haynes 230 can be welded using a variety of methods, including gas tungsten arc welding (GTAW), gas metal arc welding (GMAW), and resistance welding. However, special precautions need to be taken during welding to avoid cracking and other defects. Here are the country standards for Haynes 230 alloy: USA: AMS 5878, AMS 5879, AMS 5962, AMS 5963, AMS 5964, AMS 5965, AMS 5966, AMS 5967, AMS 5968, AMS 5969, AMS 5970, AMS 5971, AMS 5972, AMS 5973, AMS 5974, AMS 5975, AMS 5976, AMS 5977, AMS 5978, AMS 5979, AMS 5980, AMS 5981, AMS 5998, AMS 5999, AMS 5877, ASTM B366, ASTM B435, ASTM B572, ASTM B619, ASTM B622, ASTM B626, ASTM B366, UNS N06230 Europe: EN 2.4733 Germany: DIN 17742, VdT�?V 546 UK: BS HR 201 Japan: JIS NW 6230 We can provide the following the form:Haynes 230 coil; Haynes230 strip;Haynes 230 plate; Haynes 230 sheets; Haynes 230 tube; Haynes 230 pipe;Haynes 230 flat; Haynes 230 bar GB/JIS:NW 6230/UNS:R06230/W.Nr:2.4733 Haynes 230 is widely used in high-temperature applications, such as gas turbine engines, aerospace, and chemical processing industries. It is also used in heat exchangers, industrial furnaces, and in the production of petroleum and natural gas. Its excellent mechanical properties, corrosion and oxidation resistance, and good weldability make it a popular choice for a wide range of applications.
J series of 201 stainless steel | J1, J2, J3, J4, J5 J1: The carbon content is slightly higher than J4, and the copper content is lower than J4. Its processing performance is not as good as J4 material. It is suitable for ordinary shallow deep drawing and large angle deep drawing products such as decorative panels, bathroom products, sinks, and product pipes. J2, J5: Decorative tubes are easy to process, high hardness (both above 96�°), polished and beautiful, but they are easy to burst when used for square tubes or curved tubes (90�°). In terms of flat panel, due to its high hardness, the surface of the panel is more beautiful, and surface treatment such as frosting, polishing, and color plating can be carried out. But the biggest problem is bending, bending is easy to break, planing is easy to burst, so the ductility is not good. J3: High carbon, low chromium and low copper, but because of its high carbon content and low copper content, the material is slightly harder, so it is not suitable for bending with a slightly stronger strength. Compared with 201 stainless steel J1 material, the ductility is not so good, and it is easier to rust in the same environment. 201 stainless steel coil In the field of narrow bands, the emergence of 201 stainless steel J3 can better meet the requirements of pipe manufacturers for corrosion resistance and deformation. Because it can reduce the cost of raw materials for pipe manufacturers, it is sought after by pipe manufacturers in the narrowband field. J3 material is easy to process in veneer, but not difficult. The master of the processing factory said that he used J3 material to bend the board, and there would be an inner seam after it was broken (for black titanium, color board series, sanding board, when it is broken apart, there will be an inner seam when folding). The material of the sink has been bent 90 degrees, and it will not work if it continues. J4: The material of J4 is a relatively high-end variety in the J series of 201 stainless steel. It is suitable for deep drawing products with small angles. Most of the products that need deep drawing and salt spray test will choose it. Such as sinks, kitchen utensils, bathroom products, kettles, thermos cups, door hinges, pots, etc.
Hastelloy C is a nickel-chromium-molybdenum alloy that provides excellent corrosion resistance in a variety of harsh environments. It is commonly used in the chemical processing, petrochemical, and power generation industries for its high resistance to a wide range of corrosive media, including strong oxidizing agents, reducing environments, and hot contaminated solutions. Hastelloy C also exhibits good thermal stability, making it suitable for use in high-temperature environments. Its thermal conductivity is 67 Btu�·in/(hr�·ft�²�·�°F) (9.7 W/(m�·K)), and its coefficient of thermal expansion is 7.7 �? 10^-6 in/in/�°F (13.9 �? 10^-6 m/m/�°C). In addition to its excellent corrosion resistance and mechanical properties, Hastelloy C is also weldable and easily fabricated into a variety of shapes and forms. It can be cold worked, hot worked, and annealed for optimal performance. Overall, Hastelloy C is a versatile alloy that offers exceptional performance in a wide range of harsh environments. Its combination of corrosion resistance, mechanical properties, and thermal stability make it a popular choice for demanding applications in the chemical processing, petrochemical, and power generation industries. US Standards: AMS 5750: Standard specification for Hastelloy C steel bars and shapes; AMS 5786: Standard specification for Hastelloy C welding wire; AMS 5771: Standard specification for Hastelloy C plate, sheet, and strip; AMS 5757: Standard specification for Hastelloy C seamless pipe and tube; ASME SB 574: Standard specification for Hastelloy C forged fittings. European Standards: EN 2.4819: Standard specification for Hastelloy C steel bars, wire, and forgings; EN 10095: Standard specification for Hastelloy C plate, sheet, and strip; EN 10216-5: Standard specification for Hastelloy C seamless steel tubes; EN 10217-5: Standard specification for Hastelloy C welded steel tubes. Japanese Standards: JIS NW 6222: Standard specification for Hastelloy C plate, sheet, and strip; JIS NW 6022: Standard specification for Hastelloy C rods and wires; JIS NW 6220: Standard specification for Hastelloy C seamless pipes and tubes; JIS NW 6221: Standard specification for Hastelloy C welded pipes and tubes. Chinese Standards: GB/T 15006: Standard specification for Hastelloy C bars, wires, and profiles; GB/T 15008: Standard specification for Hastelloy C plate, sheet, and strip; GB/T 15011: Standard specification for Hastelloy C seamless pipes and tubes; GB/T 15012: Standard specification for Hastelloy C welded pipes and tubes. We can provide the following the products:Hastelloy C coil; Hastelloy C strip;Hastelloy C plate; Hastelloy C sheets; Hastelloy C tube; Hastelloy C pipe;Hastelloy N flat; Hastelloy C bar GBï¼?NA1002/JIS ï¼?NW6022/UNSï¼?N06455/W.Nrï¼?2.4819
430 stainless steel is a type of ferritic stainless steel that is commonly used in a variety of industrial applications. It contains chromium, which provides corrosion resistance, as well as other elements such as nickel and molybdenum. Some key properties of 430 stainless steel include: Corrosion resistance: 430 stainless steel offers good corrosion resistance in mildly corrosive environments, such as those found in food processing and indoor applications. However, it is not recommended for use in highly corrosive environments. Heat resistance: 430 stainless steel can withstand high temperatures up to 815�°C (1500�°F) without losing its strength or corrosion resistance properties. Formability: 430 stainless steel is easily formable, making it a popular choice for applications that require forming or bending. Magnetic properties: 430 stainless steel is magnetic, which makes it a popular choice for applications that require magnetic properties, such as solenoid valves and transformers. Some common applications for 430 stainless steel include: Automotive trim and molding Kitchen appliances such as refrigerators, dishwashers, and ranges Indoor and outdoor architectural trim Heat exchangers Solenoid valves and transformers Overall, 430 stainless steel is a versatile material that offers good corrosion resistance, heat resistance, and formability, making it a popular choice for a variety of industrial applications. Here are some of the most common international standards for 430 stainless steel: ASTM A240/A240M: Standard Specification for Chromium and Chromium-Nickel Stainless Steel Plate, Sheet, and Strip for Pressure Vessels and for General Applications ASTM A268/A268M: Standard Specification for Seamless and Welded Ferritic and Martensitic Stainless Steel Tubing for General Service ASTM A276/A276M: Standard Specification for Stainless Steel Bars and Shapes EN 10088-2: Stainless steels - Part 2: Technical delivery conditions for sheet/plate and strip of corrosion resisting steels for general purposes JIS G4304: Hot-rolled stainless steel plate, sheet and strip GB/T 3280: Cold rolled stainless steel plate, sheet and strip We can provide the following form:430 stainless steel coil; 430 stainless stee strip;430 stainless stee plate; 430 stainless steel sheets; 430 stainless steel tubes; 430 stainless steel pipe; 430 stainless steel flat; 430 stainless steel bar
Inconel 718 alloy is a precipitation-hardening nickel-chromium-iron alloy containing niobium and molybdenum. It has high strength at 700 C, good toughness and corrosion resistance in high and low temperature environments. The delivery condition can be solution treated or precipitation hardened. No matter in high temperature or low temperature environment, Inconel718 alloy has excellent resistance to stress corrosion cracking and pitting corrosion. Inconel718 alloy is especially excellent in oxidation resistance at high temperature. Inconel 718 is a high-temperature alloy with excellent corrosion resistance and high-temperature strength, commonly used in aerospace, energy, chemical, and marine engineering fields. The following are the common national standard designations for Inconel 718: US standard designation: UNS N07718, AMS 5662, AMS 5663, AMS 5664, AMS 5832, AMS 5962, AMS 5596, ASTM B637, ASTM B670, ASTM B906, ASTM B983, ASTM B655, ASTM B751, ASME SB637, ASME SB670, GE B50TF15, GE B50TF14, GE B50TF14E, GE B50A714, SEW 555. European standard designation: EN 2.4668, EN 10216-5, EN 10250-4, EN 10263-4, EN 10269, EN 10302, EN 10305-1, EN 10308, EN 10312, EN 10314, EN 12266-1, EN 13480-5, EN 13544-2, EN 14456. German standard designation: DIN NiCr19NbMo, DIN 2.4668, DIN 17742, DIN 17754. French standard designation: AFNOR NC19FeNb, AFNOR NC 19 Fe Nb. British standard designation: BS HR 51, BS HR 52, BS HR 601, BS HR 602, BS HR 605, BS HR 506. Russian standard designation: Ã�?Ã�?Ã�¡Ã�¢ Ã�ÂÃ�?678, Ã�?Ã�?Ã�¡Ã�¢ 5632-72, Ã�?Ã�?Ã�¡Ã�¢ 9940-81, Ã�?Ã�?Ã�¡Ã�¢ 14955-77, Ã�?Ã�?Ã�¡Ã�¢ 22897-86. Note: Standard designations may vary depending on the different standard organizations or countries. We can provide the following the form:Inconel718 alloy coil; Inconel718 alloy strip;Inconel718 alloy plate; Inconel718 alloy sheets; Inconel718 alloy tube; Inconel718 alloy pipe; Inconel718 alloy flat; Inconel718 alloy bar BS:HR 51;DIN:NiCr19NbMo;UNS:N07718;W.Nr:2.4668 1. Steam turbine 2. Liquid fuel rockets 3. Low temperature engineering 4. Acid environment 5. Nuclear engineering.
Inconel 622 is a nickel-based superalloy composed of nickel, molybdenum, cobalt, tungsten and other elements. The nickel content is about 60%. It is a general-purpose Ni-Cr-Mo-W alloy with overall corrosion resistance superior to other existing Ni-Cr-Mo alloys, including Hastelloy C-276, C4 alloy, and 625 alloy. Inconel622 has good resistance to pitting corrosion, crevice corrosion and stress corrosion cracking. It has excellent oxidation resistance in aqueous media, including wet chlorine, nitric acid or mixed acids containing chloride ions. Standard grades and specifications for Inconel 622: US standard grade: UNS N06622 Specifications: AMS 5540: Inconel 622 plates, sheets, and strips produced by hot rolling, cold drawing, and hot forming. AMS 5713: Inconel 622 bars and profiles. AMS 5714: Inconel 622 seamless and welded tubes. ASTM B168: Standard specification for nickel-chromium-iron alloys (UNS N066xx) plate, sheet, and strip. ASME SB-168: Same as above. European standard grade: NiCr21Mo14W (2.4856) Specifications: EN 10095: Technical delivery conditions for hot rolled and forged stainless steels and heat-resisting materials. EN 10269: Technical delivery conditions for steel alloys intended for use in high temperature and corrosive environments. EN 10204: Standard specification for type, batch, and quality certificates for metal products. EN 10302: Technical delivery conditions for hot rolled, forged, and cold worked nickel alloy bars. Japanese standard grade: NCF 622 Specifications: JIS G4902: Standard specification for seamless and welded nickel alloy tubes. JIS G4903: Standard specification for seamless and welded nickel alloy tubes. Chinese standard grade: GH3622 Specifications: GB/T 14992: Standard specification for seamless and welded nickel alloy tubes. GB/T 14995: Standard specification for hot rolled, forged, and cold worked nickel alloy plates, sheets, and strips. GB/T 14996: Standard specification for nickel alloy bars and profiles. These specifications define the technical requirements for the chemical composition, physical properties, processing, and testing of Inconel 622 material to ensure its quality and performance meet the specified standards. We can provide the following the form:Inconel622 alloy coil; Inconel622 alloy strip;Inconel622alloy plate; Inconel622 alloy sheets; Inconel622alloy tube; Inconel622 alloy pipe;Inconel622 alloy flat; Inconel622 alloy bar EN:NiCr21Mo14W;JIS:NAS NM22;UNS:N06022;W.Nr:2.4602