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Stainless steel flanges are a crucial component in various piping systems, providing ease of assembly and strength in connecting pipes, valves, pumps, and other equipment. They serve as a plate for covering or closing the end of a pipe and are commonly used in plumbing, oil and gas, petrochemical, and food industries due to their durability and corrosion resistance. Types and Specifications Stainless steel flanges come in several types to suit different applications: Weld Neck Flanges: Designed to be welded to the pipe. Suitable for high-pressure applications. Slip-On Flanges: Easily slide over the pipe and are welded in place. Socket Weld Flanges: Used for smaller, high-pressure piping. Threaded Flanges: Attached without welding, ideal for low-pressure applications or pipes with a thin wall. Blind Flanges: Used to seal the end of piping systems or pressure vessel openings. Lap Joint Flanges: Used with stub end fittings for applications requiring frequent dismantling.
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High polish stainless steel flanges are not just functional components in piping systems; they also offer a visually appealing finish that is smooth and reflective. This high polish, often achieved through a process called electropolishing, provides several benefits: Electropolishing Process. Electropolishing is an electrochemical process that removes a thin layer of material from the stainless steel surface, resulting in a smooth and mirror-like finish. This process can also improve the corrosion resistance of the stainless steel by removing surface imperfections where corrosive agents could potentially take hold. Advantages of High Polish Finish Improved Corrosion Resistance: The smoother surface reduces the number of crevices where corrosion could start, thus enhancing the flange’s longevity. Easy Cleaning: High polish surfaces are easier to clean and sanitize, which is particularly beneficial in industries like food processing and pharmaceuticals.
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Stainless steel float hollow balls - with slotted seat for flat rod of the PVA PEKI float valve series. The use of different sizes, shapes and materials optimises the use of the PVA float valves in many applications. From the space-saving compact float made of high-quality HDPE plastic to the elaborate stainless steel float like this one with individual fastening options, we can offer the right solution for almost every application.
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Glass tube level indicator for operating pressures up to 25 bar. Made of high Quality stainless steel 1.4571 (AISI316Ti) with flange or male threaded connection. Application: For visual observation of fluid levels in vessels, boilers and silos.
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Designed to be used as filler ports for hydraulic reservoirs, allowing the reservoir to breathe whilst protecting it from contamination found in harsh environments; ideal for applications in which space is limited Features ▪ Cap diameter of Ø70 mm / Ø2.76 in ▪ Screw-in version, equipped with male BSP thread (ISO 228) or male NPT thread (ANSI B1.20.1) ▪ Bayonet version with a six-hole bolt pattern for flange interfaces similar to DIN 24557, part 2 Materials ▪ Body and cap made of glass-fibre reinforced Polyamide (PA) ▪ Socket made of Steel, zinc-plated ▪ Bayonet flange made of Steel, zinc-plated ▪ Basket made of Steel, zinc-plated or Polyamide (PA) ▪ Sealings made of NBR (Buna-N®) Consult STAUFF for alternative materials. Technical Data ▪ Operating temperature range: -40 °C ... +120 °C / -40 °F ... +248 °F ▪ Mounting set including bayonet flange, steel or plastic basket (800 μm), gaskets and bolts ▪ Metal basket ▪ Plastic basket ▪ Pressurisation up to 0,7 bar / 10 PSI ▪ Air...
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Designed to be used as filler ports for hydraulic reservoirs, allowing the reservoir to breathe whilst protecting it from contamination found in harsh environments Types ▪ SMBT-47 (Screw-in version; Cap Ø 47 mm / 1.85 in) ▪ SMBB-47 (Bayonet version; Cap Ø 47 mm / 1.85 in) ▪ SMBT-80 (Screw-in version; Cap Ø 80 mm / 3.15 in) ▪ SMBB-80 (Bayonet version; Cap Ø 80 mm / 3.15 in) ▪ SMBP-80 (Push-on version; Cap Ø 80 mm / 3.15 in) Materials ▪ Breather cap made of Steel, zinc/nickel-plated (Fe/Zn Ni 6) and free of hexavalent chromium CrVI (standard option); chrome-plated and epoxy-coated versions available ▪ Bayonet flange made of Steel, zinc-plated ▪ Basket made of Steel, zinc-plated or Polyamide (PA) ▪ Dipstick adaptor made of Polyamide (PA) ▪ Sealings made of Cork (for filler breathers without pressurisation) or NBR (Buna-N®) (for pressurised filler breathers) ▪ Metal basket ▪ Plastic basket ▪ Pressurisation up to 0,7 bar / 10 PSI ▪ Air filter element ▪ Locking feature ▪ Dipstick...
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Use this temporary anchorage device as a mobile anchor solution. In just a few seconds, the brass clamps of this anchor, which to a large part is manufactured from aluminium, can be clamped to a steel girder. This device, which only weighs 1.85 kg, protects 1 individual from falling. EN 795:2012, B Simply clamped to a steel girder Flange width: 100 - 330 mm Flange depth: max. 33 mm
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When installed on a steel girder (flange depth 6-26 mm) and accordingly countered, this stainless steel anchor offers workers at heights a freely rotating anchorage eyelet. Simply insert the anchorage point, which is suitable for all directions of load, through a pre-drilled hole and counter using the nut supplied. National technical approval ("abZ"): Z-14.9-688 (pls. observe the installation instructions provided in the "abZ") EN 795:2012, A + CEN/TS 16415:2013 EN 50308:2004 (max. 2 persons) GL-certified 360° rotating eyelet Installation materials included Not suitable for recurrent abseiling usage when installed overhead!
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This stainless steel anchorage point - designed to protect 3 individuals from falling - is simply clamped onto the flange of a steel girder without penetrating the surface. It is suitable for all directions of load, can be installed overhead or used as an intermediate bracket in a lifeline system. EN 795:2012, B & DIN CEN/TS 16415:2013 (ABS-Lock T) EN 795:2012, B & DIN CEN/TS 16415:2017 (ABS-Lock T-Max) Simply clamp the device onto a steel girder Flange width: 80-320 mm Flange depth: 8-16 mm Optional: ABS-Lock T-Max for extra-large steel girders (flange width: 270-1370 mm / flange depth: 5-30 mm)
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The incremental encoder with the model designation FOI records the angular position by means of a magnetic sensor and signal processing and generates the corresponding pulse outputs. The robust steel housing with anti-corrosion coating and stainless steel flange (AIMgSi1) ensures versatile use of the incremental encoder for your individual application. The shaft of the FOI is made of stainless steel and the bearings are equipped with a shaft sealing ring.
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The installation system consists of high-quality NiroSan® Gas press fittings with yellow moulded sealing rings made of HNBR (hydrogenated nitrile butadiene rubber) and NiroSan® stainless steel system pipes according to EN 10312, DVGW-Arbeitsblatt GW 541 and EN 10312. All NiroSan® Gas press fittings are made of the material 1.4404 / AISI 316L (for moulded fittings) and 1.4408 (for threaded fittings and stainless steel precision castings). The material contains at a minimum of 2.3 % molybdenum and a lower carbon content than the conventional steel quality 316. Thereby these materials are not only of equal value but in addition, material 1.4404 / 316L stands out on account of its considerably higher corrosion resistance. The NiroSan® Gas press system is certified in accordance with and all important European certification bodies.
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