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Grade 12 Titanium Plate

Product name:Grade 12 Titanium plate Unit price:$15.5-$36.9/kg Material: Titanium Grade 12 (Ti-0.3Mo-0.8Ni) Standard: ASTM/ASME B265 Demension: Thickness*1000*2000mm Thickness*3000*6000mm (Standard size); Thickness: 0.5mm; 0.8mm; 1.0mm; 1.2mm; 1.5mm; 2.0mm; 3.0mm; 4.0mm ......40mm etc br>Technique : Rolled Status: Annealed(M) GR12 is a titanium alloy containing molybdenum and nickel (Ti-0.3Mo-0.8Ni).Grade 12 titanium plate is high quality and weldability. It is a titanium alloy that has always been very durable, even at high temperatures. In addition, Grade 12 titanium plates have excellent corrosion resistance in reducing and oxidizing environments, and their heat resistance is better than that of pure titanium. Grade 12 titanium sheets generally have few scratches and are not easy to scratch. Product name:Grade 12 Titanium plate Material: Titanium Grade 12 (Ti-0.3Mo-0.8Ni) Standard: ASTM/ASME B265 Demension: Thickness*1000*2000mm Thickness*3000*6000mm (Standard size); Thickness: 0.5mm; 0.8mm; 1.0mm; 1.2mm; 1.5mm; 2.0mm; 3.0mm; 4.0mm ......40mm etc Technique : Rolled Status: Annealed(M) MTC: EN10204.3.1 certificate Applications : Petroleum ,chemical industry, Marine, medical Package:Standard export packaging, inside foam film and pearl cotton protection, outside fumigation-free plywood case. Grade 12 Titanium Plate Equivalent Grades: STANDARD WERKSTOFF NO. UNS Titanium Grade 12 3.7105 R53400 Titanium ASTM B265 Gr 12 Plate Chemical Composition: Fe O C H N Mo Ni ≤0.30 ≤0.18 ≤0.08 ≤0.015 ≤0.03 0.2 - 0.4 0.6 - 0.9 Titanium Grade 12 Plate Mechanical Properties: Material Tensile Strength min Yield Strength Elongation in 2" (%) ksi Mpa Max Min ksi Mpa Ksi Mpa Titanium CP Grade12Annealed Sheet 70 483 50 345 - - 18

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Titanium Gr 5 Flanges

Product Name: Titanium Gr 5 flanges Standard: ASME B16.5 Material: Gr5 Unit Price: $25usd/pc-$85usd/pc Sealing Surface: RF, FF, TG, RJ etc. Size: NPS 1/2 - NPS 24(DN 10 - 2000) Pressure: 150#-2500# Titanium Gr 5 Flanges Product name: Titanium flange,titanium wn flange,titanium blind flange, titanium so flange, titanium alloy flange, titanium flange in stock,ANSI B16.5 titanium flange Material: Gr5 Standard: ANSI B16.5, ASME B16.5, EN1092-1, JIS B2220, DIN2627-2628 Size: 1/2"~ 30"NB, NPS 1/2 - NPS 24 (DN 10 - 2000) . Pressure Clase: PN0.25~32Mpa/ (DIN) PN6,PN10,PN16,PN25 though PN250/ 150LB, 250LB ,300LB, 400 LB,500LB, 600 LB,900LB, 1500LB,2500LB. Sealing Surface: RF, FF, TG, RJ etc. Technique: Forged and CNC Machined Inspection: UT% , PT% Certificate: ISO9001, TUV etc. Chemical composition (Wt%) Grade Ti C Fe H N O Al V Ti Grade5 90 min – 0.25 max – – 0.2 max 6 min 4 min Physical Properties (Min) Element Density Melting Point Tensile Strength Yield Strength (0.2%Offset) Elongation Titanium Gr. 5 4.43 g/cm3 1632 °C (2970 °F) Psi – 138000 , MPa – 950 Psi – 128000 , MPa – 880 14 %

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Titanium Shell And Tube Heat Exchangers

Product name:Titanium Shell and Tube Heat Exchangers Materials: stainless stainll Shell/gr2 titanium shell + Gr2 Pure Titanium Tube Special Use: Cooling, Evaporator Net Weight: Customizable Application: High temperature and pressure corrode fluids,seawater,saltwater,brine water etc. Titanium Shell and Tube Heat Exchangers Shell and tube heat exchanger, It is an inter wall heat exchanger with the wall of the tube bundle enclosed in the shell as the heat transfer surface. This kind of heat exchanger is simple in structure and reliable in operation. It can be made of various structural materials (mainly metal materials)It is composed of tube plate, shell, tube bundle and other parts. and can be used under high temperature and high pressure. It is the most widely used type at present -this is mainly due to their versatility. Applicable Industry: it plays an important role in chemical, petroleum, power, food and many other industrial production. In chemical production, it can be used as heater, cooler, condenser, evaporator and reboiler. Titanium Shell and Tube Heat Exchangers 17 Dimension(L*W*H) Customized Set Tempreture Customized Transport Package Wooden Packing Takeover Diameter Customized Liquid Flow Customized Plate Material Titanium/Stainless steel etc. Plate Thickness Heat exchange tube Customized A heat exchanger system facilitates the transfer of heat energy from one system to another. You can use them for both heating and cooling processes. Although you can make heat exchangers from different metals, these systems are made from titanium metal. Unlike the other predecessors, titanium heat exchangers are totally immune to corrosion. However, to work at full efficiency the device requires more surface area and a higher fluid flow rate. In most cases, you will find coil patterns. This is because they maximize the surface area of the tubes.

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Tube

A pure tungsten tube is a hollow cylindrical shape made from 100% tungsten metal, known for its exceptional physical properties, including high strength, resistance to high temperatures, and high density. These tubes are produced for specific industrial, scientific, and technological applications where extreme conditions are involved. Key Characteristics of a Pure Tungsten Tube 99.95% Pure Tungsten (W): A tungsten tube is made from pure tungsten metal, meaning it contains no significant alloys or impurities, allowing it to retain the full range of tungsten's advantageous properties. High Density:Tungsten has one of the highest densities of any metal, at 19.25 g/cm³, making tungsten tubes compact and heavy, which is beneficial in applications that require high mass in a small volume. Extremely High Melting Point: Tungsten has the highest melting point of any metal, at 3,422°C (6,192°F), which makes it ideal for high-temperature applications, such as in aerospace or certain high-performance industrial processes. Strength and Durability: Pure tungsten tubes are incredibly strong, with a high tensile strength around 1510 MPa, meaning they can endure extreme mechanical stresses without deforming or failing. Tungsten also exhibits high wear resistance, which makes the tube durable in harsh, abrasive environments. Corrosion Resistance: Tungsten is highly resistant to corrosion, oxidation, and environmental degradation, even under extreme conditions, including at high temperatures, making tungsten tubes suitable for long-term, reliable use. Applications of Pure Tungsten Tubes: Aerospace and Defense: Rocket nozzles, satellite components, and spacecraft parts benefit from tungsten tubes due to their ability to withstand extreme temperatures and mechanical stresses. Armor-piercing projectiles and military components can also be made from tungsten due to its high density and strength. High-Temperature and High-Pressure Applications: Tungsten tubes are often used in high-temperature environments like furnaces, industrial heating elements, and thermal processing chambers where metals with high melting points are required. Gas turbines and jet engines can also incorporate tungsten tubing for high-temperature stability and strength.

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pipe/tube

A tungsten tube or pipe is a cylindrical hollow structure made from tungsten, a metal known for its exceptional hardness, high melting point, and excellent resistance to heat, corrosion, and wear. Tungsten tubes are typically created from tungsten metal or tungsten alloys and are used in a variety of industrial applications that require materials capable of withstanding extreme conditions. These tubes are commonly used in industries such as aerospace, electronics, manufacturing, and medical equipment. Tungsten tubes can be employed for purposes like radiation shielding, high-temperature environments (such as furnace components), and as structural elements in aerospace or military applications. Their high density and resistance to thermal expansion make them suitable for use in applications requiring stable and reliable performance under stress and heat. Features of Tungsten Tubes: High Temperature Resistance: Tungsten tubes can withstand extremely high temperatures without deforming or losing strength, making them suitable for high-heat environments like vacuum furnaces and aerospace applications. Corrosion and Wear Resistance: Tungsten’s natural resistance to chemical attack ensures that the tubes maintain their integrity and performance even in challenging environments. High Density: Tungsten tubes provide significant weight and mass, which makes them ideal for uses in counterweights, radiation shielding, and other applications requiring heavy, dense materials. Superior Strength: With one of the highest tensile strengths among metals, tungsten tubes maintain their form under pressure, making them durable and reliable in demanding conditions. Tungsten tubes can be precision-manufactured to various lengths, diameters, and thicknesses, with high machining capabilities that allow for customized sizes. They are often used in vacuum systems, heating elements, and components that require durability, strength, and the ability to resist wear and corrosion over long periods of use.

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bar/rod

A tungsten alloy bar is a dense, strong, and high-melting-point metal product made primarily from tungsten combined with other metals like nickel, iron, or copper. These bars are known for their exceptional durability, resistance to heat and wear, and high density, making them ideal for applications in aerospace, defence, medical devices, and manufacturing processes. Tungsten alloy rods are commonly used for radiation shielding, electrical contacts, counterweights, and as tooling components in high-stress environments. It is produced by pressing and sintering into billets, which are worked by rolling or swaging into rod. Specific length can be supplied upon request. Key Features of Tungsten Bars: High Density: Tungsten bars are extremely dense, making them ideal for applications that require weight and mass, such as counterweights and ballast. Superior Strength: Tungsten exhibits one of the highest melting points and tensile strengths of any metal, making the bars suitable for high-stress environments. Wear and Corrosion Resistance: Tungsten's resistance to corrosion and wear ensures long-lasting performance, even in harsh industrial conditions. Heat Resistance: With its high melting point, tungsten is capable of maintaining its integrity in extreme temperature environments. We also manufacture in following grades: Type Density (g/cm³) 85W-10.5Ni-4.5Fe 15.8-16.0 90W-7NI-3FE 16.9-17.1 90W-6Ni-4Fe 16.7-17.0 91W-6Ni-3FE 17.1-17.3 92W-5Ni-3FE 17.3-17.5 92.5W-5Ni-2.5Fe 17.4-17.6 93W-4 NI-3FE 17.5-17.6 93W-4.9Ni-2.1Fe 17.5-17.6 93W-5Ni-2Fe 17.5-17.6 95W-3Ni-2Fe 17.9-18.1 95W-3.5Ni-1.5Fe 17.9-18.1 96W-3Ni-1FE 18.2-18.3 97W-2Ni-1FE 18.4-18.5 98W-1Ni-1FE 18.4-18.6 90W-6Ni-4CU 17.0-17.2 93W-5Ni-2CU 17.5-17.6

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bar/rod

A tungsten alloy bar is a dense, strong, and high-melting-point metal product made primarily from tungsten combined with other metals like nickel, iron, or copper. These bars are known for their exceptional durability, resistance to heat and wear, and high density, making them ideal for applications in aerospace, defence, medical devices, and manufacturing processes. Tungsten alloy rods are commonly used for radiation shielding, electrical contacts, counterweights, and as tooling components in high-stress environments. It is produced by pressing and sintering into billets, which are worked by rolling or swaging into rod. Specific length can be supplied upon request. Key Features of Tungsten Bars: High Density: Tungsten bars are extremely dense, making them ideal for applications that require weight and mass, such as counterweights and ballast. Superior Strength: Tungsten exhibits one of the highest melting points and tensile strengths of any metal, making the bars suitable for high-stress environments. Wear and Corrosion Resistance: Tungsten's resistance to corrosion and wear ensures long-lasting performance, even in harsh industrial conditions. Heat Resistance: With its high melting point, tungsten is capable of maintaining its integrity in extreme temperature environments. We also manufacture in following grades: Type Density (g/cm³) 85W-10.5Ni-4.5Fe 15.8-16.0 90W-7NI-3FE 16.9-17.1 90W-6Ni-4Fe 16.7-17.0 91W-6Ni-3FE 17.1-17.3 92W-5Ni-3FE 17.3-17.5 92.5W-5Ni-2.5Fe 17.4-17.6 93W-4 NI-3FE 17.5-17.6 93W-4.9Ni-2.1Fe 17.5-17.6 93W-5Ni-2Fe 17.5-17.6 95W-3Ni-2Fe 17.9-18.1 95W-3.5Ni-1.5Fe 17.9-18.1 96W-3Ni-1FE 18.2-18.3 97W-2Ni-1FE 18.4-18.5 98W-1Ni-1FE 18.4-18.6 90W-6Ni-4CU 17.0-17.2 93W-5Ni-2CU 17.5-17.6

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bar/rod

A tungsten alloy bar is a dense, strong, and high-melting-point metal product made primarily from tungsten combined with other metals like nickel, iron, or copper. These bars are known for their exceptional durability, resistance to heat and wear, and high density, making them ideal for applications in aerospace, defence, medical devices, and manufacturing processes. Tungsten alloy rods are commonly used for radiation shielding, electrical contacts, counterweights, and as tooling components in high-stress environments. It is produced by pressing and sintering into billets, which are worked by rolling or swaging into rod. Specific length can be supplied upon request. Key Features of Tungsten Bars: High Density: Tungsten bars are extremely dense, making them ideal for applications that require weight and mass, such as counterweights and ballast. Superior Strength: Tungsten exhibits one of the highest melting points and tensile strengths of any metal, making the bars suitable for high-stress environments. Wear and Corrosion Resistance: Tungsten's resistance to corrosion and wear ensures long-lasting performance, even in harsh industrial conditions. Heat Resistance: With its high melting point, tungsten is capable of maintaining its integrity in extreme temperature environments. We also manufacture in following grades: Type Density (g/cm³) 85W-10.5Ni-4.5Fe 15.8-16.0 90W-7NI-3FE 16.9-17.1 90W-6Ni-4Fe 16.7-17.0 91W-6Ni-3FE 17.1-17.3 92W-5Ni-3FE 17.3-17.5 92.5W-5Ni-2.5Fe 17.4-17.6 93W-4 NI-3FE 17.5-17.6 93W-4.9Ni-2.1Fe 17.5-17.6 93W-5Ni-2Fe 17.5-17.6 95W-3Ni-2Fe 17.9-18.1 95W-3.5Ni-1.5Fe 17.9-18.1 96W-3Ni-1FE 18.2-18.3 97W-2Ni-1FE 18.4-18.5 98W-1Ni-1FE 18.4-18.6 90W-6Ni-4CU 17.0-17.2 93W-5Ni-2CU 17.5-17.6

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