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Welded Circular Steel Tubes

EN 10296-1 Welded Circular Steel Tubes

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Description

EN 10296-1 specifies welded circular steel tubes made of non-alloy and alloy steels for mechanical and general engineering purposes. These tubes are designed for applications requiring reliable mechanical strength, dimensional accuracy, weld quality, and consistent performance in fabricated components and engineering structures. Manufactured in accordance with EN 10296-1, welded circular steel tubes are supplied with specified requirements for chemical composition, mechanical properties, dimensional tolerances, surface condition, testing, and inspection. The standard covers tubes manufactured from a range of steel grades selected according to the required mechanical and service conditions. Ladhani Metal Corporation supplies EN 10296-1 welded circular steel tubes in various outside diameters, wall thicknesses, lengths, and finishes for mechanical and engineering requirements. Forms of Supply: • Welded Circular Steel Tubes | Welded Steel Tubes | Mechanical Tubes | Precision Tubes | Structural Tubes | Engineering Tubes | ERW Tubes | Longitudinally Welded Tubes | Cut-to-Length Tubes | Custom Size Tubes Available Grades: E155 | E195 | E235 | E275 | E355 | E420 | E460 Steel Types: • E155 | E195 | E235 – Non-Alloy Steel • E275 | E355 – Non-Alloy Engineering Steel • E420 | E460 – High Strength Engineering Steel Chemical Composition (E355 Example): • Carbon (C): Max. 0.22% • Silicon (Si): Max. 0.55% • Manganese (Mn): Max. 1.60% • Phosphorus (P): Max. 0.025% • Sulfur (S): Max. 0.025% • Chromium (Cr): Max. 0.30% • Nickel (Ni): Max. 0.30% • Copper (Cu): Max. 0.30% Mechanical Properties: • E155: Yield Strength ≥ 155 MPa | Tensile Strength 290–430 MPa • E195: Yield Strength ≥ 195 MPa | Tensile Strength 320–480 MPa • E235: Yield Strength ≥ 235 MPa | Tensile Strength 360–510 MPa • E275: Yield Strength ≥ 275 MPa | Tensile Strength 430–580 MPa • E355: Yield Strength ≥ 355 MPa | Tensile Strength 490–630 MPa • E420: Yield Strength ≥ 420 MPa | Tensile Strength according to product thickness and grade requirements • E460: Yield Strength ≥ 460 MPa | Tensile Strength according to product thickness and grade requirements Key Features: • Welded circular construction • Good mechanical strength • Consistent dimensional accuracy • Reliable weld quality • Good surface finish • Suitable for mechanical engineering • Available in different diameters and wall thicknesses • Suitable for fabrication and machining • Good weldability in applicable grades • Available in custom sizes and lengths Material Characteristics: EN 10296-1 welded circular steel tubes provide a practical combination of mechanical strength, dimensional precision, and fabrication performance. The range of grades allows selection of suitable material according to required strength and engineering conditions. Their circular welded construction makes them suitable for fabricated mechanical and general engineering components. Applications: • Mechanical Engineering • General Engineering • Automotive Components • Machinery Manufacturing • Structural Components • Industrial Equipment • Fabricated Assemblies • Transportation Equipment • Machine Frames • Mechanical Components • Construction Equipment Conclusion: EN 10296-1 Welded Circular Steel Tubes provide reliable solutions for mechanical and general engineering applications requiring controlled dimensions, mechanical strength, and consistent weld quality. To place an order or make an enquiry for EN 10296-1 Welded Circular Steel Tubes, contact Ladhani Metal Corporation for your required grade, size, wall thickness, finish, and specification. #EN10296.1 #EN10296.1Tubes #EN10296.1SteelTubes #EN10296.1WeldedTubes #WeldedSteelTubes #WeldedSteelPipe #MechanicalTubes #StructuralSteelTubes #CarbonSteelTubes #NonAlloySteelTubes #AlloySteelTubes #CircularSteelTubes #PrecisionSteelTubes #IndustrialSteelTubes #EngineeringSteelTubes #MachineTubes #AutomotiveSteelTubes #MechanicalSteelTubes #SteelTubeSupplier #SteelTubeManufacturer #WeldedTubeSupplier #WeldedPipeSupplier #SteelTubeExporter #EuropeanSteelStandard #ENSteelStandard #IndustrialSteelProducts #SteelTubesIndia #SteelPipeIndia #LadhaniMetals #SteelTubeSolutions #Mumbai #Delhi #Chennai #Kolkata #Bengaluru #Hyderabad #Ahmedabad #Pune #Surat #Jaipur #Lucknow #Kanpur #Nagpur #Indore #Srinagar #Aurangabad #Dhanbad #Amritsar #NaviMumbai #Allahabad #Ranchi #Howrah #Jabalpur #Gwalior #Vijayawada #Jodhpur #Raipur #Kota #Guwahati #Chandigarh #Solapur #Hubli #Mysuru #Tiruchirappalli

Manufactured / Supplied by Ladhani Metal Corporation
Thickness / Diameter Range 3 mm to 300 mm
material alloy steel and non alloy steel
form of supply tubes
standard EN 10296-1

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Welded Circular Steel Tubes

EN 10296-1 specifies welded circular steel tubes made of non-alloy and alloy steels for mechanical and general engineering purposes. These tubes are designed for applications requiring reliable mechanical strength, dimensional accuracy, weld quality, and consistent performance in fabricated components and engineering structures. Manufactured in accordance with EN 10296-1, welded circular steel tubes are supplied with specified requirements for chemical composition, mechanical properties, dimensional tolerances, surface condition, testing, and inspection. The standard covers tubes manufactured from a range of steel grades selected according to the required mechanical and service conditions. Ladhani Metal Corporation supplies EN 10296-1 welded circular steel tubes in various outside diameters, wall thicknesses, lengths, and finishes for mechanical and engineering requirements. Forms of Supply: • Welded Circular Steel Tubes | Welded Steel Tubes | Mechanical Tubes | Precision Tubes | Structural Tubes | Engineering Tubes | ERW Tubes | Longitudinally Welded Tubes | Cut-to-Length Tubes | Custom Size Tubes Available Grades: E155 | E195 | E235 | E275 | E355 | E420 | E460 Steel Types: • E155 | E195 | E235 – Non-Alloy Steel • E275 | E355 – Non-Alloy Engineering Steel • E420 | E460 – High Strength Engineering Steel Chemical Composition (E355 Example): • Carbon (C): Max. 0.22% • Silicon (Si): Max. 0.55% • Manganese (Mn): Max. 1.60% • Phosphorus (P): Max. 0.025% • Sulfur (S): Max. 0.025% • Chromium (Cr): Max. 0.30% • Nickel (Ni): Max. 0.30% • Copper (Cu): Max. 0.30% Mechanical Properties: • E155: Yield Strength ≥ 155 MPa | Tensile Strength 290–430 MPa • E195: Yield Strength ≥ 195 MPa | Tensile Strength 320–480 MPa • E235: Yield Strength ≥ 235 MPa | Tensile Strength 360–510 MPa • E275: Yield Strength ≥ 275 MPa | Tensile Strength 430–580 MPa • E355: Yield Strength ≥ 355 MPa | Tensile Strength 490–630 MPa • E420: Yield Strength ≥ 420 MPa | Tensile Strength according to product thickness and grade requirements • E460: Yield Strength ≥ 460 MPa | Tensile Strength according to product thickness and grade requirements Key Features: • Welded circular construction • Good mechanical strength • Consistent dimensional accuracy • Reliable weld quality • Good surface finish • Suitable for mechanical engineering • Available in different diameters and wall thicknesses • Suitable for fabrication and machining • Good weldability in applicable grades • Available in custom sizes and lengths Material Characteristics: EN 10296-1 welded circular steel tubes provide a practical combination of mechanical strength, dimensional precision, and fabrication performance. The range of grades allows selection of suitable material according to required strength and engineering conditions. Their circular welded construction makes them suitable for fabricated mechanical and general engineering components. Applications: • Mechanical Engineering • General Engineering • Automotive Components • Machinery Manufacturing • Structural Components • Industrial Equipment • Fabricated Assemblies • Transportation Equipment • Machine Frames • Mechanical Components • Construction Equipment Conclusion: EN 10296-1 Welded Circular Steel Tubes provide reliable solutions for mechanical and general engineering applications requiring controlled dimensions, mechanical strength, and consistent weld quality. To place an order or make an enquiry for EN 10296-1 Welded Circular Steel Tubes, contact Ladhani Metal Corporation for your required grade, size, wall thickness, finish, and specification. #EN10296.1 #EN10296.1Tubes #EN10296.1SteelTubes #EN10296.1WeldedTubes #WeldedSteelTubes #WeldedSteelPipe #MechanicalTubes #StructuralSteelTubes #CarbonSteelTubes #NonAlloySteelTubes #AlloySteelTubes #CircularSteelTubes #PrecisionSteelTubes #IndustrialSteelTubes #EngineeringSteelTubes #MachineTubes #AutomotiveSteelTubes #MechanicalSteelTubes #SteelTubeSupplier #SteelTubeManufacturer #WeldedTubeSupplier #WeldedPipeSupplier #SteelTubeExporter #EuropeanSteelStandard #ENSteelStandard #IndustrialSteelProducts #SteelTubesIndia #SteelPipeIndia #LadhaniMetals #SteelTubeSolutions #Mumbai #Delhi #Chennai #Kolkata #Bengaluru #Hyderabad #Ahmedabad #Pune #Surat #Jaipur #Lucknow #Kanpur #Nagpur #Indore #Srinagar #Aurangabad #Dhanbad #Amritsar #NaviMumbai #Allahabad #Ranchi #Howrah #Jabalpur #Gwalior #Vijayawada #Jodhpur #Raipur #Kota #Guwahati #Chandigarh #Solapur #Hubli #Mysuru #Tiruchirappalli

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Stainless Steel Spring Wire

EN 10270-3 specifies stainless steel spring wire manufactured for applications requiring high strength, spring properties, corrosion resistance, and reliable performance under demanding service conditions. The standard covers stainless spring wire suitable for the production of springs and other components where resistance to corrosion and fatigue is important. Manufactured in accordance with EN 10270-3, stainless steel spring wire is supplied with controlled chemical composition, mechanical properties, surface quality, dimensional tolerances, and spring performance requirements. Austenitic and precipitation-hardening stainless steel grades are commonly selected according to the required strength, corrosion resistance, and operating environment. Ladhani Metal Corporation supplies EN 10270-3 stainless steel spring wire in different diameters, finishes, coils, and delivery conditions to meet industrial and engineering requirements. Forms of Supply: • Stainless Steel Spring Wire | Stainless Steel Wire | Spring Wire Coils | Cold Drawn Wire | Precision Spring Wire | Straightened Wire | Cut Length Wire | Custom Diameter Wire Available Grades: X10CrNi18-8 | X5CrNi18-10 | X7CrNiAl17-7 Chemical Composition (X10CrNi18-8 Example): • Carbon (C): Max. 0.10% • Silicon (Si): Max. 1.00% • Manganese (Mn): Max. 2.00% • Phosphorus (P): Max. 0.045% • Sulfur (S): Max. 0.015% • Chromium (Cr): 17.0–19.0% • Nickel (Ni): 7.5–9.5% • Nitrogen (N): Max. 0.10% Mechanical Properties: • X10CrNi18-8: Tensile Strength according to wire diameter and delivery condition • X5CrNi18-10: Tensile Strength according to wire diameter and delivery condition • X7CrNiAl17-7: Tensile Strength according to wire diameter and heat-treatment condition Key Features: • High tensile strength • Excellent spring properties • Good fatigue resistance • Excellent corrosion resistance • Good dimensional stability • Smooth and consistent surface finish • Suitable for precision spring manufacturing • Good resistance to demanding industrial environments • Available in different wire diameters Material Characteristics: EN 10270-3 stainless steel spring wire combines the elastic properties required for spring manufacturing with the corrosion resistance of stainless steel. Austenitic grades provide excellent corrosion resistance and ductility, while precipitation-hardening grades can provide higher strength after suitable heat treatment. Applications: • Compression Springs • Extension Springs • Torsion Springs • Precision Springs • Automotive Components • Electrical Components • Instrumentation • Industrial Machinery • Medical Equipment • Chemical Processing Equipment • Corrosion-Resistant Spring Components Conclusion: EN 10270-3 Stainless Steel Spring Wire provides high-strength and corrosion-resistant wire solutions for precision spring and engineering applications. The available stainless steel grades can be selected according to strength, corrosion resistance, spring performance, and operating conditions. To place an order or make an enquiry for EN 10270-3 Stainless Steel Spring Wire, contact Ladhani Metal Corporation for your required grade, diameter, finish, and specification. #EN10270.3 #EN10270.3SteelWire #EN10270.3SpringWire #EN10270.3StainlessSteelWire #EN10270.3Wire #StainlessSteelSpringWire #StainlessSpringWire #SpringSteelWire #StainlessSteelWire #ColdDrawnWire #SpringWireSupplier #SpringWireManufacturer #SpringWireExporter #StainlessSteelWireSupplier #StainlessSteelWireManufacturer #StainlessSteelWireExporter #HighStrengthWire #CorrosionResistantWire #PrecisionWire #IndustrialSpringWire #MechanicalSpringWire #EuropeanSteelStandard #ENSteelStandard #IndustrialSteelWire #SteelWireSupplier #SteelWireManufacturer #SteelWireExporter #SteelWireIndia #LadhaniMetals #SpringWireSolutions #Mumbai #Delhi #Chennai #Kolkata #Bengaluru #Hyderabad #Ahmedabad #Pune #Surat #Jaipur #Lucknow #Kanpur #Nagpur #Indore #Srinagar #Aurangabad #Dhanbad #Amritsar #NaviMumbai #Allahabad #Ranchi #Howrah #Jabalpur #Gwalior #Vijayawada #Jodhpur #Raipur #Kota #Guwahati #Chandigarh #Solapur

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steel forgings

EN 10222 specifies steel forgings for pressure purposes. The standard covers forged steel components manufactured from non-alloy and alloy steels for use in pressure equipment. These forgings are selected for their mechanical strength, toughness, pressure resistance, and suitability for demanding industrial service conditions. Manufactured in accordance with EN 10222, the forgings are covered by requirements for chemical composition, mechanical properties, heat treatment, testing, inspection, dimensions, and surface condition. The EN 10222 series is divided into different parts according to the type of steel and required service properties. Ladhani Metal Corporation supplies EN 10222 steel forgings in various shapes, sizes, grades, and dimensions for pressure equipment and heavy engineering requirements. Parts Covered: • EN 10222-1 – Open Die Forgings of Carbon and Carbon-Manganese Steels • EN 10222-2 – Ferritic and Martensitic Steels with Specified Elevated Temperature Properties • EN 10222-3 – Nickel Steels with Specified Toughness Properties • EN 10222-4 – Weldable Fine Grain Steels with High Yield Strength • EN 10222-5 – Martensitic, Austenitic and Austenitic-Ferritic Stainless Steels Forms of Supply: • Forged Rings | Forged Discs | Forged Blocks | Forged Bars | Forged Flanges | Forged Nozzles | Forged Components | Open Die Forgings | Pressure Vessel Forgings | Custom Forgings Available Grades: • EN 10222-1: C22.8 | P250GH | P280GH • EN 10222-2: 16Mo3 | 13CrMo4-5 | 10CrMo5-5 | 11CrMo9-10 | 12CrMo9-10 • EN 10222-3: 12Ni14 | 14Ni6 | 16Ni6 • EN 10222-4: P275NH | P355NH | P460NH | P620QH | P690QH • EN 10222-5: X5CrNi18-10 | X2CrNi18-9 | X5CrNiMo17-12-2 | X2CrNiMo17-12-2 | X6CrNiMoTi17-12-2 | X2CrNiMoN17-13-3 | X6CrNiTi18-10 Steel Types: • EN 10222-1 – Carbon and Carbon-Manganese Steel • EN 10222-2 – Ferritic and Martensitic Alloy Steel • EN 10222-3 – Nickel Alloy Steel • EN 10222-4 – Fine Grain High Yield Strength Steel • EN 10222-5 – Stainless Steel Chemical Composition (P250GH Example): • Carbon (C): Max. 0.20% • Silicon (Si): Max. 0.40% • Manganese (Mn): 0.80–1.60% • Phosphorus (P): Max. 0.025% • Sulfur (S): Max. 0.025% • Chromium (Cr): Max. 0.30% • Nickel (Ni): Max. 0.30% • Molybdenum (Mo): Max. 0.10% • Copper (Cu): Max. 0.30% Mechanical Properties: • C22.8: Yield Strength ≥ 185 MPa | Tensile Strength 360–490 MPa • P250GH: Yield Strength ≥ 250 MPa | Tensile Strength 470–590 MPa • P280GH: Yield Strength ≥ 280 MPa | Tensile Strength 530–650 MPa • 16Mo3: Yield Strength ≥ 275 MPa | Tensile Strength 440–590 MPa • 13CrMo4-5: Yield Strength ≥ 280 MPa | Tensile Strength 450–600 MPa • P275NH: Yield Strength ≥ 275 MPa | Tensile Strength 390–550 MPa • P355NH: Yield Strength ≥ 355 MPa | Tensile Strength 490–630 MPa • P460NH: Yield Strength ≥ 460 MPa | Tensile Strength 570–720 MPa Key Features: • High mechanical strength • Reliable pressure resistance • Good toughness • Controlled chemical composition • Heat-treated condition • Good dimensional stability • Suitable for elevated-temperature service in applicable grades • Good corrosion resistance in stainless steel grades • Suitable for demanding pressure equipment • Available in various forged forms Material Characteristics: EN 10222 steel forgings provide reliable performance in pressure equipment where forged construction, controlled metallurgical properties, and mechanical strength are important. The different parts of the standard allow selection of carbon, alloy, nickel, fine grain, and stainless steel forgings according to service temperature, toughness, strength, and corrosion-resistance requirements. Applications: • Pressure Vessels • Boilers • Power Generation Equipment • Petrochemical Equipment • Refinery Equipment • Heat Exchanger Components • Pressure Equipment • Industrial Piping Components • Valves and Pressure Components • Heavy Engineering Equipment Conclusion: EN 10222 Steel Forgings for Pressure Purposes provide forged material solutions for demanding pressure equipment and industrial applications. Parts EN 10222-1 through EN 10222-5 cover carbon, alloy, nickel, fine grain, and stainless steel forgings with different mechanical, toughness, temperature, and corrosion-resistance characteristics. #EN10222 #EN10222Steel #EN10222Forgings #EN10222SteelForgings #PressurePurposeForgings #SteelForgings #AlloySteelForgings #CarbonSteelForgings #StainlessSteelForgings #PressureVesselForgings #PressureEquipmentForgings #ForgedSteelComponents #IndustrialForgings #EngineeringForgings #SteelForgingSupplier #SteelForgingManufacturer #ForgedSteelSupplier #ForgedSteelExporter #PressureForgings #HeavyForgings #CustomSteelForgings #EuropeanSteelStandard #ENSteelStandard #IndustrialSteelProducts #SteelForgingsIndia #ForgingsIndia #PressureVesselSteel #AlloySteelForgingsSupplier #Mumbai #Delhi #Chennai #Kolkata #Bengaluru #Hyderabad #Ahmedabad #Pune #Surat #Jaipur #Lucknow #Kanpur #Nagpur #Indore