Titanium Material

Material Introduction
Titanium is a chemical element with an atomic number of 22 and the chemical symbol Ti. It is a metal with excellent performance, widely used in industries, aerospace, medical, chemical and other fields. The following is a detailed introduction and popularization of titanium materials:
Features and performance:
1.Lightweight: Titanium is a lightweight metal with a density of about 4.5 grams per cubic centimeter, about half that of iron, and its strength is much higher than that of metals with a higher weight ratio, such as steel and nickel.
2.High strength: Titanium alloy has excellent strength, which is higher than many traditional structural materials such as steel and aluminum. Its tensile strength can even reach a very high level, while also having excellent specific strength, which is the strength per unit weight.
3.Corrosion resistance: Titanium has excellent corrosion resistance and can be used stably for a long time in many harsh environments. It has good corrosion resistance to seawater, chloride, acid-base and other media, and is therefore widely used in marine engineering, chemical equipment and other fields.
4.Biocompatibility: Titanium has good biocompatibility and extremely high compatibility with human tissues, making it widely used in the medical field, such as artificial joints, dental implants, internal implants, etc.
5.High temperature performance: Titanium alloys have excellent high-temperature performance and can maintain stable mechanical properties at high temperatures, making them important applications in the aerospace field.
Application field:
1.Aerospace: Titanium alloys are widely used in the aerospace industry to manufacture aircraft structural components, spacecraft components, engine components, etc. Their lightweight, high strength, and corrosion resistance can meet the strict requirements for materials in the aerospace industry.
2.Medical field: Titanium alloy has important applications in the medical field, used for manufacturing artificial joints, dental implants, orthopedic implants, etc. Its excellent biocompatibility and corrosion resistance make it an ideal medical material.
3.Chemical industry: Titanium alloys have good corrosion resistance in the chemical industry and are commonly used in the manufacturing of chemical equipment, marine engineering equipment, seawater desalination equipment, etc. They can be used stably in corrosive media for a long time.
4.Automotive field: Titanium alloy is used in the automotive industry to manufacture lightweight components, which can reduce the overall quality of the car, improve fuel efficiency and performance.
5.Sports equipment: Titanium alloy is also used in sports equipment manufacturing, such as golf clubs, bicycle frames, etc. Its lightweight and high strength can improve product performance.
In summary, titanium alloys have excellent performance and a wide range of applications, playing an important role in modern industry. They are of great significance in improving product performance, reducing costs, and promoting technological progress.
Comparison table of titanium material grades
| Chinese standards | American Standard | Russian standard | |
| TAD | Grade 1 | BT1-00 | |
| TA1 | Grade 2 | BT1-0 | |
| TA2 | Grade 3 | 0T4-0 Ti-0.8A1-0.7Sn | |
| TA3 | Grade 4 | 0T4-1 Ti-2Al-1.5Mn | |
| TA4 Ti-3AI | Grade 5 Ti-6A1-4V | OT4 Ti-3A1-1.5Mn | |
| TA5 Ti-4A1-0.005B | Grade 6 Ti-5A1-2.5V | BT5 Ti-5A1 | |
| TA6 Ti-5A1 | Grade 7 Ti-0.2Pd | BT5-1 Ti-5A1-2.5Sn | |
| TA7 Ti-5A1-2.5Sn | Grade 9 Ti-3A1-2.5V | BT6 Ti-6A1-4V | |
| TA8 Ti-5A1-2.5Sn-3Cu-1.5Zr | Grade 10 Ti-11.5Mo-4.5Sn-6Zr | BT6c Ti-6A1-4V | |
| TC1 Ti-2A1-1.5Mn | Gradel 11 Ti-0.2Pd | BT3-1 Ti-6A1-1.5Cr-2.5Mo-0.5Fe-0.3Si | |
| TC2 Ti-3A1-1.5Mn | Grade 12 Ti-0.3Mo-0.75Ni | BT9 Ti-6.5A1-3.5Mo-0.3Si | |
| TC3 Ti-4A1-4V | A-1 Ti-5A1-2.5Sn | BT/4 Ti-5A1-3Mo-1.5V | |
| TC4 Ti-6A1-4V | A-3 Ti-6A1-2Nb-1Ta | BT16 Ti-2.8A1-5Mo-5V | |
| TC6 Ti-6A1-1.5Cr-2.5Mo-0.5Fe-0.3Si | A-4 Ti-8A1-1Mo-1V | BT18 Ti-8A₁-0.6Mo-11Zr-1Nb | |
| TC7 Ti-6A1-0.6Cr-0.4Fe-0.4Si-0.01B | AB-1 Ti-6A1-4V | BT19 Ti-3A1-5.5Mo-3.5V-5.5Cr-1Zr | |
| TC9 Ti-6.5A1-3.5Mo-2.5Sn-0.3Si | AB-3 Ti-6A1-6V-2Sn | BT20 Ti-6A1-1.5Ma-1.5V | |
| TC10 Ti-6A1-6V-2Sn-0.5Cu-0.5Fe | AB-4 Ti-6A1-2Sn-4Zr-2Mo | BT22 Ti-5.5A1-5V-5Mo-1.5Cr-1.0Fe | |
Material characteristics
| Density: | The density of titanium is about 4.5 grams per cubic centimeter, making it one of the lightweight metal materials and of great significance for applications that require lightweight design. |
| Melting point: | The melting point of titanium is about 1668 degrees Celsius (3034 degrees Fahrenheit), which makes it stable in high-temperature environments and suitable for high-temperature processes and applications. |
| Conductivity: | The conductivity of titanium is about 3.0 × 10 ^ 6 Siemens/meter, which is equivalent to the conductivity of aluminum but slightly lower than that of copper. This enables titanium to be competent in applications that require conductivity, such as the casing and connectors of electronic devices. |
| Thermal conductivity: | Titanium has a thermal conductivity of approximately 21.9 watts per (meter Kelvin), which is not as good as copper and aluminum, but still has good thermal conductivity, making it suitable for high-temperature heat transfer and heat dissipation applications. |
| Hardness: | The hardness of titanium is usually between HB150 and HB300, which makes it relatively soft, but its hardness can be significantly improved through methods such as alloying and heat treatment to meet specific application requirements. |
| Tensile strength: | The common Ti-6Al-4V alloy has a tensile strength of over 1000 MPa, making titanium alloy one of the important structural materials in aerospace and other fields, capable of withstanding stress and loads under high strength requirements. |
| Corrosion resistance: | Titanium has high corrosion resistance to oxidizing media, seawater, acid and alkali, etc. Its corrosion resistance in marine engineering, chemical equipment and other fields is excellent, for example, its corrosion rate in 5% saline water is only 0.001 millimeters per year. |
The application of titanium
Titanium material has important applications in metal casting, aircraft components, ship components, and other fields, and its excellent performance makes it one of the ideal materials in these fields. The following is an introduction and popularization of science for these fields:
- In the field of metal casting:
1.Mold materials: Titanium and titanium alloys are widely used as mold materials in the field of metal casting. Due to its excellent high-temperature resistance, corrosion resistance, and thermal conductivity, titanium materials are suitable for mold manufacturing in casting high-temperature alloys, aluminum alloys, and other metals.
2.Casting molds: Titanium alloy can be used to make wear-resistant, heat-resistant, and corrosion-resistant casting molds, which are used to manufacture high demand castings such as aviation components, automotive engine components, and engineering machinery components.
- In the field of aircraft components:
1.Structural component manufacturing: Titanium alloy is used in the aviation industry to manufacture structural components of aircraft, such as fuselage, wings, engine casings, etc. Titanium alloy has excellent specific strength and corrosion resistance, which can meet the requirements of aircraft components for lightweight, high strength, and durability.
2.Engine components: Aircraft engine components, such as turbine blades, turbine discs, compressor blades, etc., are often made of titanium alloy. Titanium alloy has excellent high-temperature performance and wear resistance, making it suitable for working environments of engine components under high temperature and high-speed operation.
- In the field of ship components:
1.Hull structure: Titanium alloy is used in shipbuilding to manufacture ship structural components, such as hull frames, shells, etc. Due to its excellent corrosion resistance and high strength, titanium alloys can extend the service life of ships and reduce maintenance costs.
2.Marine Engineering: Titanium alloys are also commonly used in the manufacturing of marine engineering equipment and components, such as submarine pipelines, offshore platforms, seawater desalination equipment, etc. It has excellent corrosion resistance in seawater and can operate stably for a long time.
Processing of titanium
Titanium materials can be processed through various methods to produce products with different shapes and uses. The following are common processing methods for titanium materials and their corresponding products:
- Machining: Titanium materials can be processed into various shapes of parts and components through traditional mechanical methods such as turning, milling, drilling, cutting, etc., such as bearings, bolts, nuts, connectors, etc.
- Welding: Titanium materials can be welded into structural components such as pipes, containers, frames, etc. through various welding methods such as TIG welding, MIG welding, electron beam welding, etc.
- Forging: Titanium materials can be heated to a certain temperature through forging technology, and then undergo plastic deformation to produce various shapes of parts, such as aircraft parts, automotive parts, medical devices, etc.
- Pressure forming: Titanium materials can be made into various shapes of parts, such as containers, shells, cans, etc., through pressure forming processes such as deep drawing, stretching, extrusion, etc.
- Powder metallurgy: Titanium powder can be produced into various shapes of parts through powder metallurgy technology, such as powder metallurgy gears, powder metallurgy connectors, etc.
- 3D printing: Titanium powder can be stacked layer by layer using 3D printing technology to form three-dimensional structures, manufacturing complex shaped parts and components such as aviation components, medical implants, industrial models, etc.
- Die casting: Titanium alloy can be injected into molds through the die casting process to produce various shaped parts, such as engine parts, ship parts, engineering machinery parts, etc.
- Injection molding: Titanium powder can be mixed with polymers to produce composite parts of various shapes through injection molding technology, such as automotive parts, electronic product casings, etc.
In summary, titanium materials can be processed into products of various shapes and uses through various processing methods, and applied in fields such as aerospace, medical, automotive, electronics, and chemical engineering.

As one of the top ten titanium suppliers in China with over 20 years manufacturing experience. We are mainly engaged in titanium raw materials, such as titanium rods, titanium plates, titanium wires and so on.
There are some advantages about our company as follows:
- Our tolerance can reach 0.004mm
- Support OEM customization service.
- Alibaba credit guarantee: $530,000.00 Authorized by Alibaba to guarantee your money and business safe.
- Certificate: ISO9001, ISO14001, CE, EAC, TUV, SGS, SABER, TS16949.
- More than 40+ exporting countries and More than 300+ abroad customers.
Packaging and delivery
|
Packaging Details |
Foam+Plywooden case+Filler |
|
Selling Units: |
Single item |
|
Single package size: |
Customized |
Lead time
| Quantity (pieces) | 1-3 | > 3 |
| Lead time (days) | 30 | To be negotiate |
Samples
Maximum order quantity: 1 piece
Sample price:$500.00/piece
Customization
- Customized logo : Min. order: 1000
- Customized packaging : Min. order: 1000
- Graphic customization : Min. order: 1000
For more customization details, message supplier
| Tolerance | CNC Machining ±0.004mm/Casting ±0.1mm |
| Processing Craft | Sand Casting/Lost Wax Casting/Investment Casting/Vacuum Casting/Forging/CNC Machining/etc |
| Surface Treatment | A variety of surface treatments and coatings can be produced and customized according to your requirements. |
| Type | OEM; Customized |
| Certification | ISO9001:2015 Certified, UL Certification,GE,SGS,TUV,etc |
| Inspection | 1.Foundry in-house: 100% inspection on critical dimension; 100% on appea rance. |
| 2.Third Party inspection available upon requirement. | |
| 3.Optional X-ray detection | |
| 4.Fluorescence detection | |
| Service | Drawing Custom |
| Mainly Testing Facility | Spectrometer,CMM, Tensile testing machine, Impact tester,Hardness tester,X-Ray,Salt spray test box, Pneumatic detection,UV accelerated weathering tester,dynamic balancing, high-temperature tensile testing,fluorescence test,room temperature mechanical property testing and other testing. |
| Quality Guarantee | 2 Years |
| Features & Advantage |
1.High machining accuracy, the flatness within 0.001mm |
| 2.High finish appearance, smooth surface roughness is Ra0.6 after machining. | |
| 3.The machining precision is high and the assembly structure is seamless. | |
| 4.Smooth appearance, corrosion resistance. | |
| 5.Pass Salt Spray Test with 144 Hours. | |
| Standard | ISO , DIN, AISI, ASTM, BS, JIS, etc. |
| ISO , DIN, AISI, ASTM, BS, JIS, etc. | |
| Payment | L/C,D/A,D/P,T/T,Western Union,Money Gram |

Company Profile
Why Choose us
As one of the largest casting factories in China, we have 20 + years of experience. I'd like to introduce our factory in detail for you:
- Adopt technology: lost wax investment casting, sand casting, shell mold casting, lost foam casting, vacuum casting and CNC machining, etc.
- Credit insurance: USD 1,110,000.00. Authorized by Alibaba to guarantee your money and business safe.
- Certificate: ISO9001, ISO14001, CE, EAC, TUV, SGS, SABER, TS16949, CE, EAC, SGS
- More than 40 + exporting countries and More than 300 + abroad customers.
FAQ
Q1.Are you trading company or manufacturer?
A:OBT was established In 2003,speclallzing in the production of casting, CNC machining, forged titanlum alloys, high temperature alloys, brass products and one-stop technical solutions for more than 20 years.
Q2. Do you customize products according to our design drawings ?
A:Yes, we are a professional metal manufacturing factory with an experlenced engineering team that can make customized products according to customer drawings. We can also reverse-engineer drawings based on samples to produce large quantitles of goods.
Q3. WIll my design drawings be safe when you get It?
A:Yes, we will not publish your design to a third party unless your permission Is obtalned. We can sign NDA before you send the drawings.
Q4:How to avold mass order quality problems?
A:Strengthen prior prevention and Inspection of the production and processing process, regard Important processes as the focus of quallty control, and track Inspection and defense throughout the process. It can provide Spectrometer,MM, Tensile testing machine, Impact tester, Hardness tester, X-Ray,Salt spray test box, Pneumatic detection, UV accelerated weathering tester,dynamic balancing, high-temperature tensile testing, fluorescence test,room temperature mechanical property testing and other testing.
Q5.What's your dellvery time?
A:In general, the dellvery time Is within 15-90 days after payment. Q6.What Is the speed of the Impeller? What's the highest temperature It can withstand? A:The Impeller speed can reach 12,000 pm, and the high temperature resistance can reach 1,200 degrees Celslus. Depending on the material, the high temperature resistance of the product Is different.

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