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Stainless Steel Flat Flange

DIN 2576 Stainless Steel Flanges PN 10 are high-quality, slip-on flanges manufactured from corrosion-resistant stainless steel, designed for use in low to medium-pressure piping systems. Produced according to the DIN 2576 standard, these flanges offer reliable sealing, ease of installation, and long-term durability in environments involving water, steam, air, oil, and chemical fluids. The slip-on design allows the flange to slide over the pipe and be welded into place, ensuring accurate alignment and structural integrity in a wide range of industrial applications. Ladhani Metal Corporation is a recognized manufacturer and global exporter of stainless steel flanges, delivering products that meet international quality, dimensional, and performance standards. DIN 2576 flanges provide excellent mechanical strength and corrosion resistance, making them ideal for use in chemical plants, water treatment systems, and general process industries. Pressure Rating: • PN 10 (10 bar / 145 psi): Designed for systems operating under low to moderate pressure, offering dependable performance in industrial fluid and gas transport. Flange Types: • Slip-On Flanges Designed to slip over the pipe and be welded on both the inside and outside, these flanges provide easy installation and solid structural support. • Flat Face (FF) Flanges Used with flat gaskets and flat mating surfaces to ensure even gasket compression and proper load distribution, especially when joining with non-metallic components or cast iron. Stainless Steel Grades and Composition: Stainless Steel 304 (UNS S30400) Composition: • Chromium (Cr): 18.0 – 20.0% • Nickel (Ni): 8.0 – 10.5% • Carbon (C): ≤ 0.08% • Manganese (Mn), Silicon (Si), Phosphorus (P), Sulfur (S): Trace amounts • Iron (Fe): Balance Applications: 304 stainless steel offers good corrosion resistance, formability, and weldability, making it suitable for applications in food processing, water piping, and light chemical handling. Stainless Steel 316 (UNS S31600) Composition: • Chromium (Cr): 16.0 – 18.0% • Nickel (Ni): 10.0 – 14.0% • Molybdenum (Mo): 2.0 – 3.0% • Carbon (C): ≤ 0.08% • Iron (Fe): Balance Applications: 316 stainless steel is ideal for more aggressive environments, offering superior resistance to chlorides, acids, and marine exposure. Common applications include chemical plants, pharmaceutical systems, and marine piping. Stainless Steel 321 (UNS S32100) Composition: • Chromium (Cr): 17.0 – 19.0% • Nickel (Ni): 9.0 – 12.0% • Titanium (Ti): ≥ 5x(C) minimum • Carbon (C): ≤ 0.08% • Iron (Fe): Balance Applications: 321 stainless steel is stabilized with titanium to resist intergranular corrosion after welding. It is commonly used in high-temperature applications such as exhaust systems, heat exchangers, furnace parts, and thermal fluid piping in the chemical and petrochemical industries. Applications of DIN 2576 Stainless Steel Flanges: • Chemical and Petrochemical Industries Used in piping systems that handle corrosive chemicals, acids, and solvents, ensuring safe and long-lasting operation. • Water Treatment and Distribution Widely used in pipelines for potable water, wastewater, and desalination plants due to their corrosion resistance and hygienic properties. • Food and Beverage Processing Ideal for sanitary fluid handling systems, where stainless steel ensures contamination-free and easy-to-clean connections. • Marine and Offshore Applications Suitable for piping exposed to seawater and atmospheric corrosion, especially in deck and ballast systems. • General Industrial Use Used in heating systems, compressed air lines, fire protection networks, and process piping. • High-Temperature Services Grade 321 stainless steel is preferred in applications involving thermal cycling and continuous elevated temperatures, such as refinery piping and power plant components. Key Features: • Manufactured according to DIN 2576 standard • PN 10 pressure rating for low to medium-pressure systems • Excellent corrosion resistance and mechanical strength • Available in stainless steel 304, 316, 321, and other grades • Slip-on design ensures easy welding and alignment • Flat face options available for specific gasket and joint requirements • Suitable for chemical, marine, thermal, and general industrial applications • Available in customized sizes, face types, and surface finishes Conclusion: DIN 2576 Stainless Steel Flanges PN 10 from Ladhani Metal Corporation provide reliable, corrosion-resistant performance for a wide range of industrial systems operating under moderate pressure. For technical support, material selection, or custom orders, contact Ladhani Metal Corporation today. 📞 Contact Ladhani Metal Corporation Website: https://www.ladhanimetal.in/ https://www.ladhanimetal.com/ Email: info@ladhanimetals.com Request a Quote: Custom dimensions, materials, and finishes available upon request.

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Carbon Steel Flanges

DIN 2573 Carbon Steel Flanges PN 6 are robust, low-pressure plate flanges manufactured from high-quality carbon steel, specifically developed for general-purpose applications in non-corrosive to mildly corrosive environments. These flanges are designed in accordance with the DIN 2573 standard and are widely used in industrial piping systems where moderate strength and affordability are key requirements. Their simple design and ease of installation make them suitable for low-pressure fluid transfer, air, steam, and water systems across various industries. Ladhani Metal Corporation is a reputable manufacturer and exporter of carbon steel flanges, offering products that adhere to strict international quality and dimensional standards. The DIN 2573 plate flange configuration provides a secure, gasket-sealed connection, ensuring reliable performance even in basic utility and mechanical piping systems. Pressure Rating: • PN 6 (6 bar / 87 psi): Suitable for low-pressure applications involving air, water, oil, and non-aggressive fluids in industrial or mechanical systems. Flange Types: • Plate Flanges Flat flanges designed for easy bolting and gasket sealing, offering a reliable connection in low-pressure systems. • Flat Face (FF) Flanges Ideal for systems using cast iron or non-metallic components, these flanges provide uniform gasket compression and reduce the risk of flange distortion. • Slip-On Flanges These flanges slide over the pipe and are welded on both sides, ensuring secure attachment and proper alignment in basic fluid and gas systems. • Custom-Machined Flanges Available in a variety of sizes and finishes, custom carbon steel flanges can be tailored to meet project-specific requirements. Carbon Steel Grades and Composition: Carbon Steel A105 (Forged) Composition: • Carbon (C): 0.35% max • Manganese (Mn): 0.60 – 1.05% • Phosphorus (P): 0.035% max • Sulfur (S): 0.040% max • Silicon (Si): 0.10 – 0.35% • Iron (Fe): Balance Applications: A105 carbon steel is commonly used for flanges in ambient and elevated temperature service, especially in oil and gas, water transmission, and mechanical systems. Its good machinability and weldability make it a cost-effective choice for general use. Carbon Steel ST37 / S235JR Composition: • Carbon (C): 0.17 – 0.20% • Manganese (Mn): ≤ 1.4% • Phosphorus (P) and Sulfur (S): ≤ 0.045% • Iron (Fe): Balance Applications: Used in structural piping, water distribution, fire protection systems, and low-pressure industrial piping. ST37/S235JR flanges offer reliable performance in applications where corrosion is minimal and pressure requirements are moderate. Applications of DIN 2573 Carbon Steel Flanges: • Water Distribution Systems: Used in water pipelines, treatment plants, and municipal systems where pressure ratings are low and material strength is sufficient. • HVAC and Utility Systems: Ideal for heating, ventilation, and cooling systems that operate under low pressure with non-corrosive fluids. • Oil and Gas (Low Pressure Segments): Applicable in low-pressure oil pipelines, tank farms, and non-critical utility lines. • General Industrial Piping: Widely used in manufacturing facilities for compressed air, inert gas lines, and general fluid handling. • Fire Protection Systems: Carbon steel flanges are commonly used in fire sprinkler systems and standpipe installations. Key Features: • Manufactured according to DIN 2573 specifications • PN 6 pressure rating for low-pressure fluid and utility applications • Excellent strength, machinability, and weldability • Cost-effective solution for non-aggressive environments • Available in A105, ST37, S235JR, and other carbon steel grades • Suitable for mechanical systems, utilities, and water transmission • Custom face finishes, drilling, and dimensions available Conclusion: DIN 2573 Carbon Steel Flanges PN 6 from Ladhani Metal Corporation offer a durable and economical choice for a wide range of low-pressure applications. Combining structural strength with manufacturing precision, these flanges are ideal for utility piping, water distribution, and general industrial use. For detailed technical support, custom dimensions, or pricing inquiries, contact Ladhani Metal Corporation today. 📞 Contact Ladhani Metal Corporation Website: https://www.ladhanimetal.in/ https://www.ladhanimetal.com/ Email: info@ladhanimetals.com Request a Quote: Custom dimensions, materials, and finishes available upon request

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Super Duplex Flange

DIN 2573 Super Duplex Flanges PN 6 are high-performance, low-pressure flanges engineered from Super Duplex stainless steels, specifically designed for highly corrosive and mechanically demanding environments. These flanges conform to DIN 2573 standards and offer a superior combination of corrosion resistance and tensile strength, making them suitable for critical applications exposed to aggressive chemicals, seawater, and high-pressure fluids. With enhanced resistance to pitting, crevice corrosion, and stress corrosion cracking, Super Duplex flanges are the material of choice for industries requiring durability under extreme service conditions. Ladhani Metal Corporation is a dependable manufacturer and global supplier of Super Duplex flanges, delivering components that meet international quality and performance standards. The DIN 2573 flat flange design ensures ease of installation and reliable sealing in low-pressure systems, even when operating in harsh chemical or marine environments. Pressure Rating: • PN 6 (6 bar / 87 psi): Designed for low-pressure systems where both exceptional corrosion resistance and superior mechanical strength are critical for long-term reliability and safety. Flange Types: • Plate Flanges Flat disc-type flanges used to join piping systems with bolted connections and gasket seals, ensuring tight, leak-free joints in low-pressure operations. • Flat Face (FF) Flanges Provide even load distribution across the sealing surface, ideal for applications involving non-metallic or cast components where flat gaskets are used. • Slip-On Flanges These flanges slip over the pipe and are welded on both the inside and outside, offering simple alignment and reduced fabrication cost for moderate-stress systems. • Custom-Machined Flanges Engineered to specific client requirements, available in a range of Super Duplex grades, with optional face types, dimensions, and surface finishes. Super Duplex Grades and Composition: Super Duplex 2507 (UNS S32750) Composition: • Chromium (Cr): 24.0 – 26.0% • Nickel (Ni): 6.0 – 8.0% • Molybdenum (Mo): 3.0 – 5.0% • Nitrogen (N): 0.24 – 0.32% • Iron (Fe): Balance Applications: Super Duplex 2507 is used in highly corrosive applications requiring high strength and fatigue resistance. Common industries include offshore oil and gas, marine systems, desalination plants, and chemical processing where exposure to chloride-rich and high-pressure environments is prevalent. Super Duplex 32760 (UNS S32760) Composition: • Chromium (Cr): 24.0 – 26.0% • Nickel (Ni): 6.0 – 8.0% • Molybdenum (Mo): 3.0 – 4.0% • Tungsten (W): 0.5 – 1.0% • Copper (Cu): 0.5 – 1.0% • Nitrogen (N): 0.2 – 0.3% • Iron (Fe): Balance Applications: This grade is widely used in oil and gas platforms, subsea pipelines, pressure vessels, and pump components, offering excellent corrosion resistance under fluctuating pressures and temperatures, particularly in seawater and acidic environments. Applications of DIN 2573 Super Duplex Flanges: • Offshore and Subsea Engineering: Ideal for pipelines, risers, and manifolds exposed to saltwater, high pressure, and dynamic stresses. • Chemical Processing Plants: Used in systems handling aggressive chemical media like chlorides, sulfides, and acids, where high corrosion resistance is required. • Oil and Gas Industry: Common in wellhead systems, separators, and refinery units where high mechanical strength and resistance to sulfide stress corrosion are essential. • Power Generation: Used in high-pressure steam systems, flue gas scrubbers, and cooling water systems for their strength and corrosion resistance at elevated temperatures. Key Features: • Compliant with DIN 2573 standard for low-pressure flange systems • Superior resistance to pitting, crevice corrosion, and chloride stress corrosion cracking • Excellent mechanical strength, fatigue resistance, and weldability • Available in Super Duplex 2507, 32760, and other high-alloy grades • Long-lasting performance in aggressive and marine service conditions • Custom sizes, face types, and surface finishes available upon request • Ideal for offshore, oil and gas, power, and chemical process industries Conclusion: DIN 2573 Super Duplex Flanges PN 6 from Ladhani Metal Corporation combine superior corrosion resistance with high mechanical integrity, providing a dependable solution for critical systems operating in aggressive and corrosive environments. Designed in accordance with international standards and backed by expert manufacturing, these flanges offer long-term, leak-free performance in demanding industrial sectors. For customized flange solutions, material selection, or technical assistance, reach out to Ladhani Metal Corporation today. 📞 Contact Ladhani Metal Corporation Website: https://www.ladhanimetal.in/ https://www.ladhanimetal.com/ Email: info@ladhanimetals.com Request a Quote: Custom dimensions, materials, and finishes available upon request.

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bar/rod

A Molybdenum Bar is a solid, rectangular or cylindrical piece of molybdenum metal, often used in industrial applications that require high strength, heat resistance, and durability. Molybdenum is a transition metal known for its excellent properties, including a high melting point, resistance to corrosion, and mechanical strength, which make it ideal for use in demanding environments. Key Features of Molybdenum Bar: o High Melting Point: Molybdenum bars can withstand extremely high temperatures (up to around 2,623°C or 4,753°F) without losing their structural integrity, making them perfect for high-temperature applications such as aerospace and industrial furnaces. o Strength and Durability: Molybdenum bars exhibit superior tensile strength and resistance to deformation, ensuring long-lasting performance under mechanical stress. o Corrosion Resistance: Molybdenum bars are highly resistant to oxidation and corrosion, even at high temperatures, which is crucial for use in harsh environments like chemical processing and high-temperature furnaces. o Electrical and Thermal Conductivity: Molybdenum has good electrical and thermal conductivity, making it suitable for specialized applications in electronics, including filaments, electrodes, and thermocouples. o Ductility and Workability: Although molybdenum is a hard and brittle metal at room temperature, it can be processed into various shapes and sizes, including bars, rods, and wires, through specialized manufacturing techniques. Common Applications: o Aerospace: Molybdenum bars are used in turbine blades, rocket nozzles, and heat shields for spacecraft due to their ability to perform under extreme heat. o Electronics and Electrical: Molybdenum bars are used in filaments, cathodes, and electrodes in electronic devices due to their excellent electrical conductivity and high melting point. o Metallurgy and Manufacturing: Molybdenum is a key component in high-strength steel alloys, making it useful in manufacturing tools, cutting equipment, and industrial machinery. o Chemical Processing: Due to its resistance to corrosive environments, molybdenum bars are used in the construction of reactors, heat exchangers, and other chemical processing equipment. Ladhani Metal Corporation's molybdenum bars are manufactured with strict quality controls and adhere to international standards to ensure optimal performance in demanding application

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Block

A tungsten alloy block is a solid piece of tungsten metal alloy, typically made by combining tungsten with other metals like nickel, iron, or copper to enhance its properties. These blocks are known for their exceptional density, strength, and high resistance to heat, corrosion, and wear. Due to these characteristics, tungsten alloy blocks are widely used in industries that require durable materials capable of withstanding extreme conditions. Tungsten alloy blocks are commonly used in aerospace, defense, medical, and manufacturing applications. They are often used for producing high-performance components such as counterweights, radiation shielding, military projectiles, and components for heavy machinery. The material's high density also makes it ideal for applications like ballast and vibration damping. Characteristics: High Density and Strength: Tungsten alloy blocks are notably dense, with densities ranging from 16 to 19 grams per cubic centimeter (g/cm³), making them among the heaviest materials available. This makes them ideal for applications requiring heavy, compact materials. High Melting Point: Tungsten has one of the highest melting points of any metal, around 3422°C (6192°F), which ensures that tungsten alloy blocks maintain their structural integrity even under extreme temperatures. This property makes them highly suitable for applications in aerospace and defense sectors where high heat resistance is critical. Excellent Wear and Corrosion Resistance: The tungsten alloy's resistance to wear, corrosion, and abrasion is enhanced by the alloying elements, especially when the blocks are used in harsh environments or for high-wear applications. This makes them ideal for parts exposed to friction or high-stress conditions. Machinability: While tungsten itself is quite hard and brittle, alloying it with materials like nickel and iron improves its machinability. Tungsten alloy blocks are typically produced in a variety of forms, including standard sizes and custom shapes, making them suitable for a range of industrial applications.

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sheet/plates

Pure Tungsten Sheets/Plates are flat, solid pieces of pure tungsten metal, typically produced in various thicknesses and sizes to meet specific industrial needs. Tungsten, with its exceptional properties, is highly valued in industries where extreme conditions of temperature, pressure, or corrosion resistance are prevalent. Key Characteristics of Pure Tungsten Sheets/Plates: Material Composition: 99.95% Pure Tungsten (W): These sheets or plates are composed entirely of tungsten, with minimal or no impurities, ensuring the full range of tungsten's beneficial properties. High Density:Tungsten has a very high density of around 19.25 g/cm³, making it one of the heaviest metals. This density is beneficial for applications requiring mass and weight in compact forms. Extremely High Melting Point:With a melting point of 3,422°C (6,192°F), tungsten is the highest-melting metal, making it ideal for applications in extreme temperatures such as aerospace and high-temperature manufacturing. Strength and Durability:Pure tungsten is incredibly strong and durable, with tensile strength that can reach up to 1510 MPa. It is highly resistant to wear, deformation, and damage under stress, even in extreme conditions. Corrosion and Oxidation Resistance:Tungsten exhibits excellent resistance to corrosion, oxidation, and other forms of environmental degradation, even at high temperatures, which makes it ideal for long-lasting, reliable use in harsh conditions. Applications of Pure Tungsten Sheets/Plates: Aerospace and Defense: Tungsten plates are used in aerospace components such as rocket nozzles, satellite shielding, and spacecraft parts, due to their ability to withstand extreme heat and pressure.Armor-piercing projectiles and military-grade materials also benefit from tungsten's high density and strength. High-Temperature Applications: Tungsten sheets are commonly used in high-temperature furnaces and other industrial heating equipment where temperatures may exceed normal metal capabilities, such as in hot zones of steel manufacturing or semiconductor production.

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disc

A tungsten-copper disc is a circular, flat-shaped component made from a composite material that blends the high density and strength of tungsten (W) with the excellent thermal and electrical conductivity of copper (Cu). This alloy is designed to provide a combination of the properties required in high-performance applications, especially where both heat resistance and conductivity are essential. Tungsten-copper discs are commonly used in industries like aerospace, electronics, manufacturing, and medical technologies. Properties: · Density: Tungsten-copper discs have a high density, which lies between the densities of pure tungsten and pure copper. This makes the material suitable for applications requiring high mass or weight, such as counterweights or radiation shielding. · Color and Appearance: Tungsten-copper discs typically have a metallic gray or brownish color, which reflects the tungsten content, while the copper content may give a reddish hue to the surface. The surface can be smooth or finished depending on the manufacturing and machining processes. · Thickness and Diameter: Tungsten-copper discs can be manufactured in a wide range of diameters and thicknesses. Custom sizes can be created to meet specific design and performance requirements. Applications of Tungsten-Copper Disc: · Electrical Contacts: Tungsten-copper discs are used in electrical contacts for high-voltage circuits, commutators, and other components that need to handle high current while effectively managing heat. · Heat Sinks: The high thermal conductivity of tungsten-copper alloys makes these discs ideal for heat dissipation in electronic devices and power electronics that generate large amounts of heat. · Radiation Shielding: Tungsten-copper discs are often used in radiation shielding applications, such as in X-ray machines or CT scanners, where both the high density (for radiation shielding) and heat dissipation properties are essential. · Heat Shields and Components: The high density and heat resistance make tungsten-copper discs ideal for aerospace applications, such as rocket nozzles, heat shields, and re-entry vehicle components.

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bar/rod

A pure tungsten bar rod is a solid, cylindrical piece of tungsten metal, typically used in various high-performance industrial and scientific applications. Tungsten is renowned for its exceptional physical properties, which make it an ideal material for extreme conditions. Here's a more detailed description: Key Characteristics of a Pure Tungsten Bar Rod: Material Composition: 99.95% Tungsten (W): A pure tungsten rod is composed entirely of tungsten, without any alloys or significant impurities. This ensures the rod has the full range of tungsten's advantageous properties. Melting Point: Tungsten's melting point is extremely high at 3,422°C (6,192°F), which makes it ideal for high-temperature applications, such as aerospace and military uses. Strength and Durability: The tungsten rod is extremely strong and wear-resistant. It has a tensile strength of around 1510 MPa, making it suitable for heavy-duty, high-stress applications. Corrosion Resistance: Pure tungsten rods exhibit strong resistance to corrosion, oxidation, and other forms of environmental degradation, even at elevated temperatures. Uses of Pure Tungsten Bar Rods: Aerospace & Defense: Tungsten rods are used in applications like rocket nozzles, spacecraft components, and military hardware. Their high density and ability to withstand extreme temperatures make them valuable in these fields. Medical Applications: Tungsten rods are employed in radiation shielding and in medical imaging devices like X-ray machines, where their high density helps to absorb harmful radiation. Machining & Manufacturing: Tungsten rods are used as tools or as part of tooling systems for machining metals, particularly in high-speed or high-precision operations. Specialty Manufacturing: Tungsten rods are often used in the production of custom components that need to operate in harsh environments, such as semiconductor manufacturing or nuclear reactors.

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Plates

A tungsten plate is a flat, solid piece of tungsten metal, known for its high density, strength, and resistance to extreme temperatures. It is commonly used in industries requiring high-performance materials, such as aerospace, electronics, and radiation shielding. Tungsten plates are highly durable, corrosion-resistant, and can withstand high levels of stress and heat, making them ideal for applications involving high-pressure or high-temperature environments.Tungsten alloy plate is produced by good processing property billets and special cold and hot rolling technology; they can be used to make tungsten target, tungsten heat elements, tungsten radiation shields and tungsten boats for electronics, lightening, electro-vacuum industries. Tungsten alloy plate play important role in manufacturing of collimator for nuclear medicine, nuclear research, geologging and homeland security. These materials provide reliable protection against X-rays and gamma radiation. characteristics of tungsten plates include: High Density: Tungsten has a very high density (19.25 g/cm³), making tungsten plates useful in applications requiring mass and weight, such as radiation shielding, ballast weights, and counterweights. High Melting Point: With a melting point of 3,422°C (6,192°F), tungsten can maintain its integrity at very high temperatures, which makes it ideal for use in environments with extreme heat, such as aerospace and manufacturing processes. Strength and Durability: Tungsten plates are strong and hard, offering excellent resistance to wear, abrasion, and deformation. This makes them suitable for use in heavy-duty applications, such as mining, military armor, and tooling. Corrosion Resistance: Tungsten plates are highly resistant to corrosion, particularly at high temperatures, and are less prone to oxidation when compared to many other metals. Electrical Conductivity: Tungsten has good electrical conductivity, making it useful in electrical applications like electrical contacts and filaments. Application: Aerospace & Defense: Tungsten plates are used in military applications, such as in armor-piercing ammunition, shielding, and components for aircraft. Medical Applications: Tungsten plates are used for radiation shielding in medical imaging and radiotherapy. Manufacturing & Tooling: Tungsten's hardness makes it an excellent material for cutting tools, dies, and machining equipment. Heavy Industry: Used as counterweights, ballast, and in the production of high-performance industrial equipment.

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