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Sintered metal filters are a type of porous filter made by sintering metal powder particles together. Sintering is a process that involves heating metal powder to a temperature just below its melting point, allowing the particles to fuse together and form a solid structure. The resulting filter material is highly porous with a controlled pore size distribution that can filter out particles of a specific size. The pore size of sintered metal filters can range from a few microns to several hundred microns, depending on the required filtration level. The pore size is controlled during the manufacturing process to ensure consistent and precise filtration. Sintered metal filters provide high filtration efficiency due to their precise pore size distribution. They can filter out particles and contaminants of a specific size, making them suitable for a wide range of applications where filtration accuracy is critical. Additionally, sintered metal filters are easy to clean and can be reused multiple times, making them a cost-effective solution in many applications. Products Features Highly porous structure: Sintered metal filters have a highly porous structure that allows for efficient filtration of liquids and gases. The porosity is controlled during the manufacturing process to ensure consistent and precise filtration. Precise pore size distribution: Sintered metal filters offer a precise pore size distribution, which allows for accurate filtration of particles and contaminants of a specific size. This makes them suitable for a wide range of applications where filtration accuracy is critical. High strength and durability: Sintered metal filters are made from metal powders that are sintered at high temperatures, resulting in a strong and durable filter material. They can withstand high temperatures, corrosive environments, and high-pressure applications. Chemical resistance: Sintered metal filters are available in various metals, each with different chemical properties. This allows for customization of the filter material to suit specific chemical environments and applications. Easy to clean and maintain: Sintered metal filters can be easily cleaned and reused multiple times, making them a cost-effective filtration solution. They can be cleaned by backwashing, ultrasonic cleaning, or chemical cleaning, depending on the application requirements. Products Applications Sintered metal filters are used in a wide range of industries and applications, including oil and gas, chemical processing, pharmaceuticals, food and beverage, and water treatment. They are often used to filter out impurities, contaminants, and solids from liquids and gases. The filters can be made from various metals, including stainless steel, bronze, nickel, and titanium, depending on the specific application requirements.
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Product Introduction The stainless steel filter is a type of metal porous filter element made from industrial metal powder, typically 304 or 316L. The raw material is formed through cold isostatic pressing and sintered under high temperature and vacuum conditions. The resulting filter element contains countless micropores that are curved, crisscrossed, and highly precise, allowing for deep-level precision filtration through pressurization. The stainless steel filter is a highly advanced type of metal porous filter element that is widely used across many industries, including petrochemical, coal chemical, pharmaceutical, water treatment, food, metallurgical, and gas purification industries. Product parameters Outer diameter: 20~100mm Length: 100 1500mm (more than 1500mm can be welded) Filtration accuracy: 0.5um 50um Porosity: 35-45% Features Here are four key features of the stainless steel filter: 1. Precise and uniform porosity 2. Excellent mechanical properties 3. High-temperature resistance 4. Easy to regenerate Application With its unique porous technology, stainless steel filters are widely used across a range of industries, including the petrochemical, coal chemical, pharmaceutical, water treatment, food, metallurgical, and gas purification fields. The filter is a new type of filtration and separation technology material that can be used for various applications, such as terminal filtration of petroleum products, fly ash filtration in the coal chemical industry, impurity removal and filtration of raw materials in the pharmaceutical and chemical industry, water purification, and filtration after ozone sterilization in the water treatment industry, and clarification and filtration of milk, beverages, beer, mineral water, and vegetable oil in the food industry.
Ready available CRCA Scrap - 50,000 tons Interested parties please contact
All the profucts can process by customization. Please send me the 2D and 3D drawings with size and tolerance. We will evaluate the drawings for you and process according to the drawings. And we will keep the drawings strictly confidential. Customers can also choose processing methods With over 20 years experience, ShenZhen YuJiaXin Hardware Products Co., Ltd. is a leading manufacturer of precision metal parts in China, we provide products to consumer electronics, automotive, medical, and industrial. Metal Injection Molding,or MIM,is a new Powder Metallurgy process that can produce sintered componects with high densety and complicated shapes without the need for machining. With its unique characteristics, MIM is capable of producing precise metal parts for a wide range of products, including automobiles, cellular phones,hand tools,dental instruments,pneumatic tools, power hand tools, surgical instruments,sporting goods, and laptop computers. The common materials used in MIM range from stainless steels and alloy steels to soft magnetic matericals. Metal injection molding (MIM) is an effective way to produce complex and precision-shaped parts from a variety of materials. This process produces parts for 50% less than the cost of CNC machining or casting. MIM is able to produce parts with complex shapes, superior strength and excellent surface finish with high volume manufacturing.High volumes are attained through multi-cavity tooling. From design and tooling to production and quality engineering with in-depth technical and engineering expertise. Our business model is designed to meet the portfolio of parts that global OEMs will source in China. Our facility is growing rapidly, and adding new capabilities in a very short span of time. Please contact us to understand our current state of completion and new capabilities that we plan to add.
Commodity: Railroad Ferrous Scrap (specification attached) Destination: FOB Saudi Arabia Price: FOB $375 Per Metric Ton Quantity: 100,000 MT monthly x 12 months One shipment: 100 000 MT Packing: Bundles according to attached dimensions. Important: The supplier can prepare rails cut to the dimensions expected by the Recipient (the price for this additional service is to be agreed in the contract) Inspection: SGS Payment: DLC Transferable (Payment after BL, after SGS loading port). PROCEDURE: 1. The buyer should sign this fco and issue the icpo with bcl to the seller company. 2. Within (5) working days the seller will send spa to the buyer with the bank verbiages ( lc) - according to the negotiations. 3. The buyer and within five working days should fill and sign the spa. 4. The seller will seller sign the spa, the seller and within five working days will send to the buyer commercial invoice. 5. The buyer and according to the commercial invoice (ci) will open revolving letter of credit (mt700) to the seller bank and send a copy of swift to the seller bank. 6. The seller and within 12 working days will issue to the buyer: a. Sgs test report (fresh date) b. 2% performance bond (for fob deal) c. Ppop d. Bill of loading e. Iicense to export the scrap metal 7. Within three working days the seller will issue all documents of the metal (vessel) to the buyer, and the buyer will instruct his bank to release the payment of shipment. 8. Arrange new shipment for the next month shipment. SPECIFICATION R(P65): R65 GOST 8165.75 WEIGHT 64,75 KG/METER â?? C = 0,54%_0,82% â?? SI = 0,18_0,40% â?? MN = 0,60_1,05% â?? S = ),04%_MAX â?? P = 0,035 AS-0,01 MIX OF MASS SHARE
The wear castings are usually made by metling the wear resistance materials and formed in a mould. The wear plates are always heatment treated to obtain the best performance for wear and impact resistance to suit the working conditions in different applications. Wear Casting Plates Bimetal Wear Plates
shredded municipal scrap 200t monthly
Overview Ideal for basement, attic and garage remodels Easy to install Meets or exceeds EN1495 standards Will not warp or twist Lightweight Fewer nail pops Pest and fire proof Mold and mildew proof Not to be immersed in water Are steel studs galvanized Production of metal studs involves forming the studs from strips of galvanized steel in cold rolling machines. Metal studs used for structural building components utilize heavier gauge metals than the metal studs for non-load bearing walls. Do galvanized steel studs rust Yes, galvanized steel resistance to rust corrosion depends largely on the type and thickness of the protective galvanized zinc coating, but the type of corrosive environment is also a critical factor. Factors that rust and corrode galvanized steel: Relative humidity above 60% Sodium chloride (salt) in water or air. What are the different types of metal studs Conventional metal studs� are available in 25, 22, 20, 18, and 16 gauge steel for your convenience (1-5/8 available in 20, 22 and 25 gauge only). Structural studs are also available. What are the disadvantages of galvanized steel As with any kind of steel finishing, galvanized steel has its cons, which include: There can be a high cost associated with galvanization, especially in large-scale projects. ... Although resistant to red rust, galvanized steel can develop white rust over time if exposed to moisture. Product Name Size(mm) Thickness(mm) Length(m) Metal C- Stud 50 50x30/35/45 0.4-1.2 Standard: 3m 1-6m 60 60x30/35 75 75x35/40/45 90 90x35/45 100 100x35/45 Metal U-Track 50 50x25/30/40 0.4-1.2 Standard: 1-6m 60 60x35/45 75 75x40/45/50 90 90x30/40 100 100x30/40
Insulation joints (or isolation couplings or isolation joints) provide electrical isolation and cathodic protection in pipelines, tanks and pump stations where oil, gas and water are the carrier fluids. Insulation fittings are available in sizes ranging from 2 to 48 and pressures ranging from ANSI 150 to ANSI 900. Three features ensure electrical isolation. 1. insulating gaskets prevent metal-to-metal contact at the joints 2. Internal cavities are filled with a special dielectric compound 3. Inner and outer surfaces are coated with two (2) coats of non-conductive epoxy paint, or according to customer specifications. The welded end hubs of our insulated joints are supplied according to the customer's pipe specifications. Optional extra-long stubs (supplied by the customer) can be included in the completed joint. Features of insulating joints: 1. Non-conductive material: The primary feature of an insulating joint is that it is made of a non-conductive material, which prevents the transfer of electrical current. 2. Easy to install: Insulating joints are typically easy to install, as they do not require any special tools or equipment. 3. Wide temperature range: Many insulating joints are designed to withstand a wide range of temperatures, making them suitable for use in a variety of applications. 4. Chemical resistance: Some insulating joints are made of materials that are resistant to chemical corrosion, which makes them suitable for use in chemical processing plants or other environments where chemicals are present. The primary advantage of an insulating joint is that it provides electrical isolation between two sections of pipe, which can help to prevent electrical accidents and protect personnel. Insulating joints are commonly used in a variety of applications, including: 1. Chemical processing plants: In chemical processing plants, insulating joints are used to prevent the transfer of electrical current between pipes, which can help to prevent explosions or other accidents. 2. Oil and gas pipelines: Insulating joints are used in oil and gas pipelines to prevent the transfer of electrical current between pipes, which can help to prevent fires or other accidents. 3. Power plants: Insulating joints are used in power plants to prevent the transfer of electrical current between pipes, which can help to prevent electrical accidents and protect personnel. 4. Water treatment plants: Insulating joints are used in water treatment plants to prevent the transfer of electrical current between pipes, which can help to prevent electrical accidents and protect personnel.