Customization: | Available |
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Type: | Titanium Sheets |
Application: | Industrial, Medical, Aerospace |
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Bokang Titanium's selection of Titanium Sheet Plates is illustrated below. Titanium sheet plates are used in aerospace, defense, medical, industrial, and oil and gas applications due to their unique combination of high strength, lightweight, corrosion resistance, biocompatibility, and higher temperature performance. They are available in thicknesses from .016" (4.749mm) to 4" (101.6mm).
AVAILABLE SIZES:
titanium sheet is .016″(0.4064mm) up to .187″(4.749mm) thick
titanium plate is .250″(6.35mm) up to 4″ (101.6mm) thick
Titanium Sheet & Plate
Titanium sheets and plates are commonly used in manufacturing today, with the most popular grades being 2 and 5.
Grade 2 Titanium
Grade 2 is the commercially pure titanium used in most of chemical processing plants and is cold-formable. Grade 2 plates and sheets can have ultimate tensile strength at and above 40,000 psi.
Grade 5 Titanium
Grade 5 is the aerospace grade and is not cold-formable, so it is used more often when no forming is needed. Grade 5 aerospace alloy will have ultimate tensile strength at and above 120,000 psi.
Plate is often used with the goal to get really close to the final dimensions of the part being made. The material is worked to the closest size of the desired part and the grain structure of the finished piece is more homogenous. Titanium sheet is often used as a heat barrier because titanium stops the heat and does not transfer to the rest of the assembly. Titanium plate and sheet have ballistic properties making it great for driver protection in racing.
Titanium Sheet Plate Specifications
Grade | Gr1, Gr2, Gr3, Gr4, Gr5, Gr7, Gr9, Gr23, etc. |
Standard | ASTM F67, ASTM F136, AMS 4911, AMS 4916, ASTM B265 |
Thickness | 0.4064mm - 101.6mm |
Width | 10mm-2500mm |
Length | 10mm-8000mm |
Technology | Hot-rolled, cold-rolled, hot forging, machining |
Condition | Cold rolled(Y), hot rolled(R), annealed (M), quenching(C) |
Surface | Pickling surface, polished surface, black surface |
Titanium Sheet & Plate Properties
1. Uniform structure, narrow pore size distribution and high separation efficiency.
2. High porosity, low filtration resistance and high permeability.
3. High-temperature resistance, generally can be used below 280ºC.
4. It has good chemical stability, acid and alkali corrosion resistance and antioxidant properties.
5. Low-pressure difference, small area and large flow.
6. It has a strong antimicrobial ability and does not interact with microorganisms.
7. The forming process is good. The whole length without welding can reach 1000 mm.
Titanium Sheet Plate Production
Titanium and titanium alloy plate/sheet production process:
Hot rolling plates
Titanium sponge -> compacting electrodes -> melting -> slabs -> hot rolling -> hot rolling plates
Hot rolling alloy plates
Titanium sponge -> metal additive -> compacting electrodes -> melting -> slabs -> hot rolling -> hot rolling alloy plates
Cold rolling sheets
Titanium sponge -> compacting electrodes -> melting -> slabs -> hot rolling -> cold rolling -> picking -> cold rolled sheet
Cold-rolling alloy sheets
Titanium sponge -> metal additive -> compacting electrodes -> melting -> slabs -> hot rolling -> cold rolling picking -> cold rolling alloy sheets
Titanium Sheet & Plate Package
Our titanium plates are tagged and labeled externally to ensure efficient identification and quality control. Great care is taken to avoid any damage which might be caused during storage or transportation.
Titanium Sheet/Plate Applications:
1. Medical: Vital in orthopedic implants and surgical tools due to their compatibility with the human body and resistance to corrosion, ensuring long-term patient well-being.
2. Aerospace: Essential for crafting lightweight yet robust aircraft structures, contributing to fuel efficiency and performance.
3. Architecture: Utilized for architectural marvels, titanium sheets offer durability, weather resistance, and aesthetic appeal, enhancing the longevity and visual appeal of buildings.
4. Chemical Processing: In the realm of chemical engineering, titanium sheets play a pivotal role in constructing equipment that can withstand corrosive environments, ensuring safety and efficiency in industrial processes
5. Marine: Withstanding the harsh conditions of marine environments, titanium sheets are instrumental in building ships, offshore platforms, and underwater pipelines, contributing to their longevity and reliability.
6. Automotive: Revolutionizing automotive design, titanium sheets are employed in exhaust systems and structural components, contributing to lighter vehicles and improved fuel economy.
7. Electronics: In the realm of electronics, these sheets offer electromagnetic shielding and durability, making them ideal for critical applications where reliability is paramount.
Chemical Composition
ASTM B265 Chemical Requirements:
Grade | N, max | C, max | H, max | Fe, max | O, max | Al | V | Sn | Ru | Pd | Co | Mo | Cr | Ni | Nb | Zr | Si | Other Elements,,max.each | Other Elements,max total | Ti G |
1 | 0.03 | 0.08 | 0.015 | 0.20 | 0.18 | … | … | … | … | … | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
2 | 0.03 | 0.08 | 0.015 | 0.30 | 0.25 | … | … | … | … | … | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
3 | 0.05 | 0.08 | 0.015 | 0.30 | 0.35 | … | … | … | … | … | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
4 | 0.05 | 0.08 | 0.015 | 0.50 | 0.40 | … | … | … | … | … | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
5 | 0.05 | 0.08 | 0.015 | 0.40 | 0.20 | … | … | … | … | … | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
7 | 0.03 | 0.08 | 0.015 | 0.30 | 0.25 | … | … | … | … | 0.12-0.25 | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
9 | 0.03 | 0.08 | 0.015 | 0.25 | 0.15 | 2.5-3.5 | 2.0-3.0 | … | … | … | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
23 | 0.03 | 0.08 | 0.0125 | 0.25 | 0.13 | 5.5-6.5 | 3.5-4.5 | … | … | … | … | … | … | … | … | … | … | 0.1 | 0.4 | balance |
Mechanical Properties
ASTM B265 Tensile Requirements:
Grade | Tensile Strength, min | Yield Strength, 0.2 % Offset | Elongation in 2 in.or 50 mm, min,% | Bend Test (Radius of Mandrel) | |||||
ksi | MPa | min | max | Under 0.070 in.(1.8mm)in Thickness | 0.070 to 0.187 in.(1.8-4.75 mm) in Thickness | ||||
ksi | MPa | ksi | MPa | ||||||
1 | 35 | 240 | 20 | 138 | 45 | 310 | 24 | 1.5T | 2T |
2 | 50 | 345 | 40 | 275 | 65 | 450 | 20 | 2T | 2.5T |
3 | 65 | 450 | 55 | 380 | 80 | 550 | 18 | 2T | 2.5T |
4 | 80 | 550 | 70 | 483 | 95 | 655 | 15 | 2.5T | 3T |
5 | 130 | 895 | 120 | 828 | … | … | 10 | 4.5T | 5T |
7 | 50 | 345 | 40 | 275 | 65 | 450 | 20 | 2T | 2.5T |
9 | 90 | 620 | 70 | 483 | … | … | 15 | 2.5T | 3T |
23 | 120 | 828 | 110 | 759 | … | … | 10 | 4.5T | 5T |
Tolerance (mm)
ASTM B265 Permissible Variations in Thickness of Titanium Sheet:
Specified Thickness, in. (mm) | Permissible Variations in Thickness, ±in.(mm) |
0.146 -<0.1875(3.71-<4.76 | 0.014(0.36) |
0.131-0.145(3.33-3.68) | 0.012(0.31) |
0.115-0.130(2.92-3.30) | 0.010(0.25) |
0.099-0.114(2.51-2.90) | 0.009(0.23) |
0.084-0.098(2.13-2.49) | 0.008(0.20) |
0.073-0.083(1.85-2.11) | 0.007(0.18) |
0.059-0.072(1.50-1.83) | 0.006(0.15) |
0.041-0.058(1.04-1.47) | 0.005(0.13) |
0.027-0.040(0.69-1.02) | 0.004(0.10) |
0.017-0.026(0.43-0.66) | 0.003(0.08) |
0.008-0.016(0.20-0.41) | 0.002(0.05) |
0.006-0.007(0.15-0.18) | 0.0015(0.04) |
0.005(0.13) | 0.001(0.03) |
ASTM B265 Permissible Variations in Width and Length of Cold Rolled Titanium Sheet
Specified Width, in.(mm), for Thicknesses Under 3/16 in.(mm) |
Permissible Variations in Width, in. (mm) |
24-<48(610-<1220) | +1/16(+1.60),-0 |
³48(1220) | +1/8(+3.20),-0 |
Specified Length, ft (m) | Permissible Variations in Length, in. (mm) |
£10(3) | +1/4(+6.35),-0 |
>10-20(3-6) | +1/2(+12.7),-0 |
ASTM B265 Permissible Variations in Thickness for Titanium Plate
Specified Thickness.in.(mm) | Width,in.(mm) | |||
≤84(≤2134) | >84~120(>2134~3048) | >120~144(>3048~3658) | >144 | |
Tolerances Over Specified Thickness, in. (mm) | ||||
0.1875-<0.375(4.76-<9.52) | 0.045(1.14) | 0.050(1.27) | -- | -- |
0.375-<0.750(9.52-<19.05) | 0.055(1.40) | 0.060(1.52) | 0.075(1.90) | 0.090(2.29) |
0.750-<1.000(19.05-<25.40) | 0.060(1.52) | 0.065(1.65) | 0.085(2.16) | 0.100(2.54) |
1.000-<2.000(25.40-<50.80) | 0.070(1.78) | 0.075(1.90) | 0.095(2.41) | 0.115(2.92) |
2.000-<3.000(50.80-<76.20) | 0.125(3.18) | 0.150(3.81) | 0.175(4.44) | 0.200(5.08) |
3.000-<4.000(76.20-<101.6) | 0.175(4.44) | 0.210(5.33) | 0.245(6.22) | 0.280(7.11) |
4.000-<6.000(101.6-<152.4) | 0.250(6.35) | 0.300(7.62) | 0.350(8.89) | 0.400(10.16) |
6.000-<8.000(152.4-<203.2) | 0.350(8.89) | 0.420(10.67) | 0.490(12.45) | 0.560(14.22) |
8.000-<10.000(203.2-<254.0) | 0.450(11.43) | 0.540(13.72) | 0.630(16.00) | -- |
ASTM B265 Permissible Variations from a Flat Surface for Titanium Plate, Annealed
Specified Thickness, in. (mm) | Permissible Variations from a Flat Surface for Width or Length Given, in. (mm) | ||||||||
≤48(≤1219) | >48~<60(>1219-<1524) | 60~<72(1524-<1829) | 72~<84(1829-<2134) | 84~<96(2134-<2438) | 96~<108(2438-<2743) | 108-<120(2743-<3048) | 120~<144(3048-<3658) | ≥144(≥3658) | |
3/16~<1/4(4.76-6.35) | 3/4(19.05) | 1-1/16(26.99) | 1-1/4(31.75) | 1-3/8(34.92) | 1-5/8(41.28) | 1-5/8(41.28) | - | - | - |
1/4~<3/8(6.35-9.54) | 11/16(17.46) | 3/4(19.05) | 15/16(23.81) | 1-1/8(28.58) | 1-3/8(34.92) | 1-7/16(36.51) | 1-9/16(36.69) | 1-7/8(47.62) | - |
3/8~<1/2(9.54-12.70) | 1/2(12.70) | 9/16(14.29) | 11/16(17.46) | 3/4(19.05) | 15/16(23.81) | 1-1/8(28.58) | 1-1/4(31.75) | 1-7/16(36.51) | 1-3/4(44.45) |
1/2~<3/4(12.70-19.05) | 1/2(12.70) | 9/16(14.29) | 5/8(15.88) | 5/8(15.88) | 13/16(20.64) | 1-1/8(28.58) | 1-1/8(28.58) | 1-1/8(28.58) | 1-3/8(34.92) |
3/4~<1(19.05-<25.40) | 1/2(12.70) | 9/16(14.29) | 5/8(15.88) | 5/8(15.88) | 3/4(19.05) | 13/16(20.64) | 15/16(23.81) | 1(25.4) | 1-1/8(28.58) |
1~<1-1/2(25.40-<38.40) | 1/2(12.70) | 9/16(14.29) | 9/16(14.29) | 9/16(14.29) | 11/16(17.46) | 11/16(17.46) | 11/16(17.46) | 3/4(19.05) | 1(25.4) |
1-1/2~4(38.10-<101.6) | 3/16(4.76) | 5/16(7.94) | 3/8(9.54) | 7/16(11.11) | 1/2(12.70) | 9/16(14.29) | 5/8(15.38) | 3/4(19.05) | 7/8(22.22) |
>4~<6(101.6-152.4) | 1/4(6.35) | 3/8(9.54) | 1/2(12.70) | 9/16(14.29) | 5/8(15.38) | 3/4(19.05) | 7/8(22.22) | 1(25.4) | 1-1/8(28.58) |
Titanium Bar/Rod | Titanium Wire | Titanium Disc |
Titanium Ingot | Nitinol/Nickel Titanium | Artificial Joint Castings |
Q: Are you a direct manufacturer or trading company?
A: We're a manufacturer with more than 18 years of professional production experience.
Q: Do you offer free samples?
A: Usually, our sample is free but we need our customer to pay the freight.
Q: What is the minimum quantity per order?
A: 1 kg. For regular standard medical and aerospace materials, based on our production capacity of 20 tons per month for titanium wire and rods. the stock inventory could meet all your requirements.
Q: What products can you offer?
A: We specialize in the production of pure titanium, titanium alloy, titanium rods, wires, discs, nitinol alloy, etc.,
Q: What's the payment term?
A: When we quote for you, we will confirm the way of transaction, FOB, CIF, CNF, etc.
For mass-production goods, you need to pay 30% deposit before producing and 70% balance against a copy of documents. The common way is by T/T. L/C is also acceptable.
Q: What applications do your products relate to?
A: Our titanium and nitinol alloys are widely used in medicine, aerospace, and other industries.
Q: How can we get your price?
A: We need the below information to quote for you:
1). Product Name
2). Standard
3). Material Grade (Chemical Composition)
4). Dimension
5). Quantity
Q: Can you do customized products?
A: Yes, we support customized products according to the customers' drawings or samples.
Q: How do you guarantee the quality of your goods?
A: We ensure quality by inspecting every process and using advanced testing equipment to conduct comprehensive checks, ensuring finished products meet customer and international standards.
Q: How do you deliver the goods to us?
A: We will usually ship the goods by sea and air according to your requirements.