ProductASME 165 socket weld flanges BrandRenaissance Pipe Fitting Inc SizesRefer the specification ConditionNew Rating48 based on 44 reviews priceStart from 20 USD Relying on our expertise and knowhow in this field we are wellknown as one of the major organization in providing a widespread range of Socket Weld Flanges Well this type of flanges is similar like Slipon flanges in its outline However the bore is counterbored to recognize the pipe The distance across the residual bore is alike as the interior pipe diameter The Socket Weld Flange is close up to the pipe by a clean join around the core of the flange An intended gap weld might be used in high pressure applications In addition the main usage of such flanges is in their premier pressure systems are like hydraulic and steam lines RANGE 15 NB to 60 1500NB in 150 LBS 300 LBS 600 LBS 900 LBS 1500 LBS 2500 LBS ASA 150 ASA 300 PN 6101625 4064100160 ETC available with NACE MR 0175 SIZE 15NB to 60 1500NB CLASS PRESSURE Class Pressure 150 300 600 900 1500 2500 PN6 PN10 PN16 PN25 PN40 PN64 DIMENSION B165 BS4504 EN1092 B1636 B1647 B1648 MSS SP44 STD STD ANSI Flanges ASME Flanges DIN Flanges EN Flanges BS Flanges API JIS NACE etc FEATURES Dimensional accuracy Corrosion resistance High efficiency Excellent finish Durable Stainless Steel Socket Weld Flanges Standard ASTM ASME ASA 182 Grade F 304 304L 304H 309S 309H 310S 310H 316 316TI 316H 316L 316LN 317 317L 321 321H 347 347H 904L Duplex Steel Socket Weld Flanges Standard ASTM ASME ASA 182 Grade F 44 F 45 F51 F 53 F 55 F 60 F 61 Aluminium Socket Weld Flanges Standard ASTM B247 B361 Grade 2024 6061 6063 6101 7075 Titanium Socket Weld Flanges Standard ASTM B381 Grade Grade 1 Grade 2 Grade 4 Grade 5 Grade 6 Grade 7 Grade 9 Grade 19 Grade 23 Carbon Steel Socket Weld Flanges Standard ASTM A 105A694 A350 LF3A350 LF2 Grade F42465256606570 Low Temperature Carbon Steel Socket Weld Flanges Standard ASTM A 350 LF2 A350 LF3 Alloy Steel Socket Weld Flanges Standard ASTM A182 Grade F1F5F9F11F22F91 Copper Alloy Socket Weld Flanges Standard ASTM ASME SB 61 62 151 152 Grade UNS NO C 70600 CU NI 9010 C 71500 CU NI 7030 C 71640 Nickel Alloy Socket Weld Flanges Standard ASTM ASME SB 564 160 472 Nickel 200 UNS N02200   Nickel 201 UNS N02201   Monel 400 UNS N04400 Monel K500 UNS N05500   Inconel K600 UNS N06600   Inconel 601 UNS N06601 Inconel 625 UNS N06625   Inconel 800 UNS N08800   Inconel 800H UNS N08810 Inconel 825 UNS N08825   Hastelloy C276 UNS N10276   Alloy 20 UNS N08020 Test Certificate Manufacturer Test Certificate as per EN 10204 31 nbsp Types Of Socket Weld Flanges SS 310 310S Socket Weld Flanges Duplex Steel UNS S31803 Socket Weld Flanges Stainless Steel 304 304L Socket Weld Flanges Duplex Steel Socket Weld Flanges Stainless Steel 316 316L Socket Weld Flanges Duplex Steel UNS S32205 Socket Weld Flanges Stailess Steel 321 321H Socket Weld Flanges Super Duplex UNS S32750 Socket Weld Flanges Monel 400 Socket Weld Flanges Hastelloy C276 Socket Weld Flanges SS Socket Weld Flanges Steel Socket Weld Flanges Inconel 625 Socket Weld Flanges Alloy 20 Socket Weld Flanges CuNi 7030 C71500 Socket Weld Flanges CuNi 9010 C70600 Socket Weld Flanges ASTM A105 Socket Weld Flanges ASTM A350 LF2 LF3 Socket Weld Flanges Inconel 600 Socket Weld Flanges Hastelloy B2 Socket Weld Flanges SS 317 317L Socket Weld Flanges Super Duplex Socket Weld Flanges SS 347 Socket Weld Flanges Super Duplex UNS S32950 Socket Weld Flanges Monel K500 Socket Weld Flanges Hastelloy C22 Socket Weld Flanges Stainless Steel 446 Socket Weld Flanges ANSI Socket Weld Flanges Inconel 718 Socket Weld Flanges 904L Socket Weld Flanges Incoloy 800 Socket Weld Flanges Titanium Gr 2 Socket Weld Flanges Incoloy 825 Socket Weld Flanges Titanium Gr 5 Socket Weld Flanges
roductASME 165 threaded flanges BrandRenaissance Pipe Fitting Inc SizesRefer the specification ConditionNew Rating46 based on 34 reviews priceStart from 20 USD RFP India is an expert manufacturer of high quality of threaded flanges They are at length used in piping systems by means of having low pressure since no welding is fretful during connecting these flanges to the pipes or other devices Threaded Flanges undoubtedly put a ceiling on its function to moderately low pressure piping systems In a nutshell these Flanges are being used to connect other threaded parts in noncritical and low pressure applications Meanwhile these flanges can be joined to the pipe without any welding and is appropriate in exceptionally quicktempered areas where welding is treacherous nbsp RANGE 15 NB to 60 1500NB in 150 LBS 300 LBS 600 LBS 900 LBS 1500 LBS 2500 LBS ASA 150 ASA 300 PN 6101625 4064100160 ETC available with NACE MR 0175 SIZE 15NB to 60 1500NB CLASS PRESSURE Class Pressure 150 300 600 900 1500 2500 PN6 PN10 PN16 PN25 PN40 PN64 DIMENSION B165 BS4504 EN1092 B1636 B1647 B1648 MSS SP44 STD STD ANSI Flanges ASME Flanges DIN Flanges EN Flanges BS Flanges API JIS NACE etc FEATURES Dimensional accuracy Corrosion resistance High efficiency Excellent finish Durable Stainless Steel Threaded Flanges Standard ASTM ASME ASA 182 Grade F 304 304L 304H 309S 309H 310S 310H 316 316TI 316H 316L 316LN 317 317L 321 321H 347 347H 904L Duplex Steel Threaded Flanges Standard ASTM ASME ASA 182 Grade F 44 F 45 F51 F 53 F 55 F 60 F 61 Aluminium Threaded Flanges Standard ASTM B247 B361 Grade 2024 6061 6063 6101 7075 Titanium Threaded Flanges Standard ASTM B381 Grade Grade 1 Grade 2 Grade 4 Grade 5 Grade 6 Grade 7 Grade 9 Grade 19 Grade 23 Carbon Steel Threaded Flanges Standard ASTM A 105A694 A350 LF3A350 LF2 Grade F42465256606570 Low Temperature Carbon Steel Threaded Flanges Standard ASTM A 350 LF2 A350 LF3 Alloy Steel Threaded Flanges Standard ASTM A182 Grade F1F5F9F11F22F91 Copper Alloy Threaded Flanges Standard ASTM ASME SB 61 62 151 152 Grade UNS NO C 70600 CU NI 9010 C 71500 CU NI 7030 C 71640 Nickel Alloy Threaded Flanges Standard ASTM ASME SB 564 160 472 Nickel 200 UNS N02200   Nickel 201 UNS N02201   Monel 400 UNS N04400 Monel K500 UNS N05500   Inconel K600 UNS N06600   Inconel 601 UNS N06601 Inconel 625 UNS N06625   Inconel 800 UNS N08800   Inconel 800H UNS N08810 Inconel 825 UNS N08825   Hastelloy C276 UNS N10276   Alloy 20 UNS N08020 Test Certificate Manufacturer Test Certificate as per EN 10204 31 nbsp Types Of Threaded Flanges SS 310 310S Threaded Flanges Duplex Steel UNS S31803 Threaded Flanges Stainless Steel 304 304L Threaded Flanges Duplex Steel Threaded Flanges Stainless Steel 316 316L Threaded Flanges Duplex Steel UNS S32205 Threaded Flanges Stailess Steel 321 321H Threaded Flanges Super Duplex UNS S32750 Threaded Flanges Monel 400 Threaded Flanges Hastelloy C276 Threaded Flanges SS Threaded Flanges Steel Threaded Flanges Inconel 625 Threaded Flanges Alloy 20 Threaded Flanges CuNi 7030 C71500 Threaded Flanges CuNi 9010 C70600 Threaded Flanges ASTM A105 Threaded Flanges ASTM A350 LF2 LF3 Threaded Flanges Inconel 600 Threaded Flanges Hastelloy B2 Threaded Flanges SS 317 317L Threaded Flanges Super Duplex Threaded Flanges SS 347 Threaded Flanges Super Duplex UNS S32950 Threaded Flanges Monel K500 Threaded Flanges Hastelloy C22 Threaded Flanges Stainless Steel 446 Threaded Flanges ANSI Threaded Flanges Inconel 718 Threaded Flanges 904L Threaded Flanges Incoloy 800 Threaded Flanges Titanium Gr 2 Threaded Flanges Incoloy 825 Threaded Flanges Titanium Gr 5 Threaded Flanges
ProductASME 165 weld neck flanges BrandRenaissance Pipe Fitting Inc SizesRefer the specification ConditionNew Rating46 based on 50 reviews priceStart from 20 USD RFP India offers a range of Weld Neck Flanges As the name implies it is called as a neck part of the flange which is being welded to the last points of the piping system Weld Neck Flanges has a wideranging tapering focal point and are commonly used for high pressure applications In fact it is being designed to shift the pressure within the pipe in a way to dip the high pressure concentration towards the bottom of the flange Weld Neck Flanges are also quite known from other forms by their wideranging pointed centre and modest development of thickness in the butt weld area by joining them with the pipe RANGE 15 NB to 60 1500NB in 150 LBS 300 LBS 600 LBS 900 LBS 1500 LBS 2500 LBS ASA 150 ASA 300 PN 6101625 4064100160 ETC available with NACE MR 0175 SIZE 15NB to 60 1500NB CLASS PRESSURE Class Pressure 150 300 600 900 1500 2500 PN6 PN10 PN16 PN25 PN40 PN64 DIMENSION B165 BS4504 EN1092 B1636 B1647 B1648 MSS SP44 STD STD ANSI Flanges ASME Flanges DIN Flanges EN Flanges BS Flanges API JIS NACE etc FEATURES Dimensional accuracy Corrosion resistance High efficiency Excellent finish Durable Stainless Steel Weld Neck Flanges Standard ASTM ASME ASA 182 Grade F 304 304L 304H 309S 309H 310S 310H 316 316TI 316H 316L 316LN 317 317L 321 321H 347 347H 904L Duplex Steel Weld Neck Flanges Standard ASTM ASME ASA 182 Grade F 44 F 45 F51 F 53 F 55 F 60 F 61 Aluminium Weld Neck Flanges Standard ASTM B247 B361 Grade 2024 6061 6063 6101 7075 Titanium Weld Neck Flanges Standard ASTM B381 Grade Grade 1 Grade 2 Grade 4 Grade 5 Grade 6 Grade 7 Grade 9 Grade 19 Grade 23 Carbon Steel Weld Neck Flanges Standard ASTM A 105A694 A350 LF3A350 LF2 Grade F42465256606570 Low Temperature Carbon Steel Weld Neck Flanges Standard ASTM A 350 LF2 A350 LF3 Alloy Steel Weld Neck Flanges Standard ASTM A182 Grade F1F5F9F11F22F91 Copper Alloy Weld Neck Flanges Standard ASTM ASME SB 61 62 151 152 Grade UNS NO C 70600 CU NI 9010 C 71500 CU NI 7030 C 71640 Nickel Alloy Weld Neck Flanges Standard ASTM ASME SB 564 160 472 Nickel 200 UNS N02200   Nickel 201 UNS N02201   Monel 400 UNS N04400 Monel K500 UNS N05500   Inconel K600 UNS N06600   Inconel 601 UNS N06601 Inconel 625 UNS N06625   Inconel 800 UNS N08800   Inconel 800H UNS N08810 Inconel 825 UNS N08825   Hastelloy C276 UNS N10276   Alloy 20 UNS N08020 Test Certificate Manufacturer Test Certificate as per EN 10204 31 nbsp Types Of Weld Neck Flanges SS 310 310S Weld Neck Flanges Duplex Steel UNS S31803 Weld Neck Flanges Stainless Steel 304 304L Weld Neck Flanges Duplex Steel Weld Neck Flanges Stainless Steel 316 316L Weld Neck Flanges Duplex Steel UNS S32205 Weld Neck Flanges Stailess Steel 321 321H Weld Neck Flanges Super Duplex UNS S32750 Weld Neck Flanges Monel 400 Weld Neck Flanges Hastelloy C276 Weld Neck Flanges SS Weld Neck Flanges Steel Weld Neck Flanges Inconel 625 Weld Neck Flanges Alloy 20 Weld Neck Flanges CuNi 7030 C71500 Weld Neck Flanges CuNi 9010 C70600 Weld Neck Flanges ASTM A105 Weld Neck Flanges ASTM A350 LF2 LF3 Weld Neck Flanges Inconel 600 Weld Neck Flanges Hastelloy B2 Weld Neck Flanges SS 317 317L Weld Neck Flanges Super Duplex Weld Neck Flanges SS 347 Weld Neck Flanges Super Duplex UNS S32950 Weld Neck Flanges Monel K500 Weld Neck Flanges Hastelloy C22 Weld Neck Flanges Stainless Steel 446 Weld Neck Flanges ANSI Weld Neck Flanges Inconel 718 Weld Neck Flanges 904L Weld Neck Flanges Incoloy 800 Weld Neck Flanges Titanium Gr 2 Weld Neck Flanges Incoloy 825 Weld Neck Flanges Titanium Gr 5 Weld Neck Flanges
Ritlok-flanges
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We present the best quality Stainless Steel Flanges in the national as well as international markets. Stainless Steel Flanges offered by us are accessible in various ranges and specifications as per the requirement of the clients. Flange Types: 1:Slip-On Flanges 2:Threaded Flanges 3:Weld Neck Flanges 4:Blind Flanges 5:Socket Weld Flanges 6:Lap Joint Flanges Grades Austenitic Steel: 301, 304, 304H, 304L, 310, 310S, 316, 316L, 317, 317L, 321, 347 Ferritic Steel: 409, 409M, 410s, 420, 430 Martensitic Steel: 410, 416, 420, 431
C.S. Forged Flanges Grade : SA-105 , LF2 Size For NPT Forged : 1/2" NB to 56" NB 150# , 300# , 600# , 900# , 1500# , 2500# S.S. Forged Flanges Grade : SA-182 F-304, 304L, 316, 316L , 321 , 347 , 347H. Size For NPT Forged : 1/2" NB to 56" NB 150# , 300# , 600# , 900# , 1500# , 2500# A.S. Forged Flanges Grade : SA-182 F-11, 12, 22, 5, 5a , 9 Size For NPT Forged :1/2" NB to 56" NB 150# , 300# , 600# , 900# , 1500# , 2500# Flanges Types :SORF / WNRF / BLRF / SWRF / RTJ / ORIFICE / TOUNGE & GROOVE etc.
Product Description - Stainless Steel: SA 240 TP 304/ 304L/ 304H/ 316/ 3 l 6L/ 316Ti/ 317 I 3 l 7L/ 321 I 309 I 310/ 347I 409 I 410/ 430/ 904L, etc. Key Specifications/Special Features - "Others: Nickel, Monel, lnconel, Hastelloy, Alloy20, lncoloy, Duplex & Super Duplex, 5M06-254, Carbon Steel, Alloy Steel, Copper, Brass, Cupro Nickel, Aluminium, Titanium, erc., Types: Available in All Sizes & Thickness
A pipe flange connects piping and components in a piping system by use of bolted connections and gaskets. Most commonly used flanges are weld neck flange, slip on flange, blind flange, socket weld flange, threaded flange and lap joint flange (RTJ Flange). This type of connection in a pipe flange allows for ease of disassembly and separation for repair and regular maintenance. Most common specification for carbon steel and stainless steel flange is ANSI B16.5 / ASME B16.5.
A slip-on flange is connected to the pipe or the fittings by two fillet welds, one executed inside and one outside the cavity of the flange. The bore size of a slip-on flange is larger than the outside diameter of the connecting pipe, as the pipe has to slide inside the flange to be connected by the execution of a fillet weld. Slip-on flanges are also defined Hubbed Flanges and they are easy to recognize due to their slim and compact shape.
A welding neck flange (WN) features a long tapered hub that can be welded with a pipe. This flange type is used, normally, in high-pressure and high/low temperatures applications that require an unrestricted flow of the fluid conveyed by the piping system (the bore of the flange matches with the bore of the pipe). The absence of pressure drops prevents negative effects as turbulence and erosion/corrosion of the metals in the proximity of the flanged joints. The tapered hub allows a smooth distribution of the mechanical stress between the pipe and the weld neck flange and facilitates the execution of radiographic inspections to detect possible leakages and welding defects. The dimension of the flange (NPS and the pipe schedule) shall match the dimension of the connecting pipe.
Long weld neck flanges (LWN) are similar to weld neck flanges, with the exception that the neck (tapered hub) is extended and acts like a boring extension. Long weld neck flanges are generally used on vessels, columns or barrels. These flange types are available also in the heavy barrel (HB) and equal barrel (E) types
Threaded flanges are joined to pipes by screwing the pipe (which has a male thread, generally NPT per ASME B1.20.1) onto the flange, without seam welds (in certain cases, though, small welds are applied to increase the strength of the connection). Threaded flanges are available in sizes up to 4 inches and multiple pressure ratings, however, they are used, mostly, small size piping in low pressure and low-temperature applications, like water and air utility services. Threaded flanges are also a mandatory requirement in explosive areas, such as gas stations and plants, as the execution of welded connections in such environments would be dangerous.
Blind Pipe Flange is used whenever a line must be capped off at a flange. It is good practice to install blind pipe flange at the end od header or at location where future tie-ins are anticipated. Blind pipe flanges are also used extensively for manways, in which case a davit is recommended for ease in handling the unbolted manway cover. Blind pipe flange is specified by ANSI B16.47. We offers blind pipe flange in A105, A105N, SS316, SS304, A20, High Yield & Nickel Alloys.
Socket weld flanges are connected to pipes using a single fillet weld executed on the outer side of the flange (different from the slip-on flange type that requires two welds). According to ASME B31.1, to execute a flanged connection using a socket weld flange, the pipe shall be at first inserted in the socket of the flange until it reaches the bottom of the flange, then it should be lifted by 1.6 mm and finally welded. This gap shall be left to allow proper positioning of the pipe inside the flange socket after the solidification of the weld. Socket Weld Flanges are used for small-size and high-pressure piping that do not transfer highly corrosive fluids. This due to the fact that these flange types are subject to corrosion in the gap area between the end of the pipe and the shoulder of the socket. Their static strength of socket weld flanges is similar to slip-on flanges, but their fatigue strength is higher due to the presence of a single, instead of double, fillet weld.
Ensures a watertight seal where pipes pass through the walls of any structure below groundwater level. Puddle Flanges are used to seal around the outside of pipes that are required to pass through concrete structures. They are installed during construction. Pipes passing through concrete will not bond to the concrete and water can pass along the external surface of the pipe. Puddle Flanges act as a barrier to this flow. The seal is clamped onto the pipes and stops this direct route. The seal body is compressed during the pouring process and should the concrete shrink during curing the rubber relaxes and maintains a seal against this flow path. Puddle Flanges provide an effective solution against water penetration along the external surface of pipes that pass through concrete structures such as tanks, manhole chambers, shafts, floor slabs and basements.
A split flange is a type of flange that can be easily installed on pre-existing piping. It is made up of two interlocking pieces that fit securely together using nuts and bolts or welding it into place. Because it is made of two parts, split flanges are used to reinforce weakened areas of piping, or to add an attachment in places conventional flanges cannot. Split-flange fittings use rubber O-rings to seal joints and contain pressurized fluid. The O-ring sits in a groove on the flange, and then mates with a port's flat surface. The flange is then attached to the port with four mounting bolts. The bolts tighten downward onto the clamps of the flange, thereby eliminating the need for large wrenches to connect the components of large-diameter tubing.
Lap joint flanges feature a flat face and are always used in conjunction with a stub end. Lap joint flanges resemble, in shape, slip-on flanges except for the radius at the crossing of the flange face and the bore to accommodate the flanged portion of the stub end. A lap joint flange slips over the pipe and seats on the back of the stub end and the two are kept together by the pressure of the bolts. The use of lap joint flanges in combination with stub ends is a cost-effective solution for stainless steel or nickel alloy pipelines, as the material of the lap joint flange can be of a lower grade (generally carbon steel) than the material of the stub end (which has to match the pipe grade, as in contact with the conveyed fluid). This arrangement, therefore, has these two advantages: reduces the overall cost of the pipelines flanged joints, as the use of higher grade materials is minimized; bolting operations are simplified, as the lap joint flange can be rotated around the pipe to help with bolts alignment.
ANSI flanges facilitate the alignment of the bolt holes between the two mating flanges, a feature that is helpful in many circumstances, such as the installation of large diameter pipelines, subsea and offshore pipelines, pipe works in shallow waters and similar environments. ANSI flanges suit oil, gas, hydrocarbons, water, chemical and other demanding fluids in petrochemical and water management applications. In the case of a large diameter pipeline, for instance, the pipe is fitted, at one end, with a standard welding neck flange, and with a swivel flange at the other end: by simply rotating the swivel flange on the pipe, the operators can achieve a perfect alignment of the bolt holes in a way easier and faster way
Reducing flanges, otherwise called reducer flanges, have an opposite function than expander flanges seen above, i.e. they are used to decrease the bore of a pipeline. The bore of the run pipe can be safely reduced by only 1 or 2 sizes (otherwise a solution based on the combination of a butt weld reducer and a standard flange has to be used). Reducing flanges are available in most sizes and material grades, and are not generally available from stock. Reducing flanges follow the same considerations in terms of specifications, sizes and material grades as expander flanges.