- Name des Produkts: Bleche aus Titan ASTM F67 Grade 3
- Material: GR3
- Standard: BG13810-2007, ASTM F136
- Spezifikation: Beschriftungsschild 1 m x 2 m
- Die Dicke: 0,8 mm bis 20 mm
- Verträglichkeit: Die normale Arbeitstoleranz liegt innerhalb von 5 Gewinden. Dazu gehören Tests wie metallographische Analyse, chemische Eigenschaften und mechanische Eigenschaften. Legen Sie die Originalmaterialliste oder die Baoti-Originalmaterialliste vor.
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- Plate quality: GR5 titanium alloy plate
- Spezifikation: about 1000 length, 2000 width, and plate with thickness *1m*2m
- Exekutiver Standard: AMS4911, etc.
- Titanium plate features: low density, light texture, high temperature resistance, corrosion resistance, high tensile strength of titanium alloy plate, good mechanical properties.
- Application: widely used in electric power, chemical industry, ship, military industry, aviation, medical treatment, electroplating, petroleum exploitation and other fields.
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- STP stage: solid
- Appearance: Silver grey white metal
- Melting point: 194k (1668°C, 3034°F)
- Boiling point: 3560 K (3287°C, 5949°F)
- Density (near room temperature): 4.506 g/cm3
- Liquid time (melting point): 4.11 g/cm3
- Heat of fusion: 14.15 kJ/mol
- Heat of vaporization: 425 kJ/mol
- Molar heat capacity: 25.060 J/(mol·K)
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- Name: GR1 GR2 Reintitanblech
- Material: Gr1 Titanplatte GR2 Titanplatte, 99.5% Reintitanplatte, Titanplatte 0.3mm dick, 0.4-1.0mm dick, 1.00-3.0mm dick, 3.0-18mm dick, 2000 mm breite Titanplatte, 5000 mm lange Titanplatte
- Iso9001: 2000 Zertifizierung des Qualitätssystems nach ASTMB265/ASTM F136 /ASTM F67 Standard.
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- Category: Nonferrous metals
- Brands: GR1, GR2, GR3, GR5, GR7, GR12
- Colour: Matte colour
- Gloss: Metallic luster
- Transparency: Opacity
- Hardness: HB150-HB340
- Weight: 4.51
- Used: aviation, chemical, petroleum, machinery, medical and other industries
- Size: T 0.5-5.0mm x W1000mm x L 2000-3500MMT 6.0-30mm x W1000mm X L 3000-6000MMT 30-80mm x W1000mm x L 2000mm
- Hot working condition (R)
- Cold working state (Y)
- Annealed state (M)
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The company mainly focuses on titanium and titanium alloys for medical use. This includes titanium rods, titanium alloy rods, and titanium wires made for medical applications. They also offer standard titanium parts, titanium plates, titanium tubes, titanium forgings, and titanium rings. Additionally, they provide titanium and titanium alloy materials for industrial use. -
Ti6Al4V Eli Sheets (ASTM F136) are a strong and lightweight titanium alloy. They are commonly used in industries like aerospace, medical devices, and marine because of their high strength and durability. These sheets resist corrosion, making them suitable for harsh environments like seawater. They also perform well in low temperatures. Ti6Al4V Eli Sheets are widely trusted for their toughness and reliability. -
- Standard: GB/T3621-2007, GB/T13810-2007
- American standard: ASTM B265, ASTM F136, ASTM F67, AMS4928
- American standard materials: GR1, GR2, GR3, GR5, GR7, GR12
- Russian standard material: BT1-00, BT1-0, BT1-2
- Supply state: hot working state (R), cold working state (Y), annealed state (M)
- Thickness (mm) : > 4.0-80.0 (hot rolling), 0.3-6.0 (cold rolling)
- Width (mm): 400-3000 (hot rolling), 400-1300 (cold rolling)
- Length (mm): 1000-8000 (hot rolling), 1000-4000 (cold rolling)
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- Implementation standard: GB/T12769-2003
- Grades: ZTA1, TA1 ZTA2, TA2 T1 or T2
- Supply state: R, Y, BM, or BR state
- Manufacturing method: hot extrusion, hot extrusion + stretching, explosion, explosion + rolling
- Section shape: square, rectangle, circle, drum, flat
- Surface status: hot extrusion surface, cold working surface, explosive composite annealing surface, explosive composite hot working surface
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Titanium mesh is mainly used for screening and filtering in acidic and alkaline environments or for separating gases, liquids, and other materials. There are three weaving methods: plain weave, twill weave, and dense weave. Because it’s hard to draw titanium wire, the finest titanium wire currently available can reach 0.05 mm, but it has low flexibility, high strength, and good elasticity. This makes it difficult to produce titanium mesh with a high number of openings (high mesh). -
- The product name: Kundenspezifisch bearbeitete Teile aus Titan
- Material: Titanium and titanium alloy
- Process: Hot forging, CNC machining, turning, milling, rolling thread, laser marking, overall inspection, packaging, delivery.
- Surface treatment: Polishing, sandblasting, combustion, anodic oxidation, PVD, nitriding
- Color: Anodizing: blue, purple, gold, green, rainbow, black
- Physical vapor deposition (PVD)/ Nitrides: black, gold, rainbow,burning blue
- Standard: GB/T, ASTM, ASME, AMS, ISO, JIS, MIL
- Spezifikation: Customized by drawing or sample.
- Verträglichkeit: +/-0.01-0.05 mm
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Titanium screws and nuts are tools used to tighten parts gradually by using the physical principles of circular movement and friction. They include various types like titanium screws, titanium alloy screws, titanium fasteners, titanium standards, titanium nuts, and titanium gaskets.- Products: Titanium screw, titanium bolt, titanium nut, titanium screw
- Materials: TA1, TA2, TC4, Gr1, Gr2, Gr5
- Spezifikation: M4 ~ M25×L
- Standard: GB/T DINISO
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A titanium flange is a part made from titanium or titanium alloy that connects one pipe to another at the end. It has holes where bolts go through to hold two flanges tightly together. Flanges are sealed with liners. When we say "flanged pipe fittings," we mean fittings that have flanged edges or discs. These fittings can be cast, threaded, or welded. Titanium flanges are essential for connecting pressure pipelines. They can also be used to connect the fluid inlets and outlets of pressure vessels, as well as for manholes, pump valves, and connections at the end of shafts. -
Titanium 3D printing is a way to make objects by building them up layer by layer. Titanium alloys are popular in 3D printing because they are strong, can handle high temperatures, resist corrosion, and work well in cold conditions. This technology is used in areas like medicine, aerospace, and making molds, but there are still many challenges to overcome. In the future, efforts will focus on creating new types of powder, improving the machines used, developing better testing methods, and optimizing the overall process. -
Welding Titanium Pipe is made from pure titanium using special techniques like cold bending, welding, and testing methods. The pipe has an even wall thickness, a highly accurate outer diameter, and can be made in any length. It is environmentally friendly and produced efficiently in large quantities with high precision for both titanium and titanium alloy tubes.
