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ASTM B381 Titanium Block
Excellent biocompatibility, Corrosion-resistant: Use for medical implants
High strength-to-weight ratio: Use for aerospace applications
Resistance to high temperatures and harsh corrosive chemicals: Use in the chemical industry
Superior resistance to fatigue and wear: Use in high-stress environments
Description
Products Description
For The titanium block, the material is CP titanium, titanium alloy with Grade of Gr1, Gr2, Gr4, Gr5, Gr7, Gr9, Gr11, Gr12, Gr16, Gr23 etc that accord with the Standard of ASTM B381
Titanium is a versatile and strong material that has become a popular choice for various industrial applications. Its unique properties make it ideal for industries such as aerospace, medical, and military, among others. One of the most common forms of titanium used in these industries is titanium block.
Titanium block is a solid block made of pure titanium or titanium alloy. It is a rectangular or square-shaped block that has a smooth and polished surface. The dimensions of titanium blocks vary, depending on the requirements of a particular application.


Advantage
High Strength-to-Weight Ratio
Titanium is known for its high strength-to-weight ratio. This means that it is lightweight but has a high strength that can withstand extreme conditions. It is stronger than steel, but its weight is about half of steel.
Corrosion Resistance
Titanium block is highly resistant to corrosion, even in aggressive environments. This is due to its ability to naturally form an oxide layer on its surface that protects against corrosion. Therefore, it can be used in areas that are exposed to chlorides, acids, and seawater.
Biocompatibility
Titanium is biocompatible, and it does not react with the human body. This property makes it ideal for medical applications such as dental implants, joint replacement, and bone screws.
Non-Magnetic
Titanium is non-magnetic, which makes it ideal for use in medical implants and other applications where magnetic interference can be an issue.
High Melting Point
Titanium has a high melting point, which makes it suitable for applications where high temperatures are involved. The melting point of titanium is around 1668 degrees Celsius.
Application
Aerospace Industry
Titanium block is extensively used in the aerospace industry due to its high strength, low weight, and corrosion resistance properties. It is used to manufacture aircraft components such as landing gear, engine parts, and structural components.
Medical Industry
Titanium block is biocompatible, which makes it ideal for medical applications such as implants, bone screws, and dental implants. It is used in orthopedic implants and spinal fusion devices due to its strength and biocompatibility properties.
Military Industry
Titanium block is used in military applications due to its strength, non-magnetic, and corrosion-resistant properties. It is used to manufacture missiles, rockets, and various military aircraft components.
Chemical Industry
Titanium block is used in the chemical industry due to its corrosion-resistant properties. It is used to manufacture chemical processing equipment such as pumps, valves, and heat exchangers.
Sports Industry
Titanium block is used in the sports industry to manufacture high-quality sports equipment such as tennis rackets, golf clubs, and bicycle frames. Its strength and lightweight properties make it ideal for creating durable and high-performance sports equipment.
How to use
Titanium blocks are versatile tools that have a wide range of applications in fields such as aerospace, dental implants, and orthopedics. These blocks are ideal for creating complex shapes and structures.
Design the blueprint
The first step in using a titanium block is to design the blueprint of the structure you want to create. This can be done using computer-aided design (CAD) software, which allows you to create a 3D model of your design. Once you have the design, you can then transfer it to a computer-aided manufacturing (CAM) software that will generate the tool path to be followed when machining the titanium block.
Set up the CNC machine
After designing the blueprint and generating the tool path, the next step is to set up the CNC (Computer Numerical Control) machine. The CNC machine is used in the milling process to cut the titanium block into the desired shape. The titanium block must be clamped securely onto the machine to ensure it does not move during the cutting process.
Cut the titanium block
Once the CNC machine is set up, the titanium block can then be cut into the desired shape. The machine follows the tool path generated by the CAM software and cuts the titanium block using a blade. The blade used will depend on the structure being created and the type of titanium block being used.
Finishing
After the titanium block has been cut into the desired shape, any rough edges or surfaces are smoothed out. This can be done using a variety of tools, such as sandpaper or a polishing wheel. The finishing process is critical as it ensures that the final product is aesthetically pleasing and has the desired surface finish.
Quality control
Finally, the finished product must undergo quality control to ensure that it meets the required standards. This can be done using non-destructive testing (NDT) techniques such as ultrasonic testing or magnetic particle inspection.
Specification
|
Grade |
Status |
Thickness (mm) |
Width(mm) |
Length(mm) |
|
Gr1,Gr2,Gr4,Gr5,Gr7,Gr9,Gr11,Gr12,Gr16,Gr23 |
Annealed (M) |
10~300 |
100~800 |
≤2000 |
|
Giant Metal also can produce products according to customer requirements or drawings |
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FAQ
1.Are you the manufacturing or trading company?
We are manufacturing company and also trade in domestic and overseas market.
2.What kind of test items do you use for your products?
We procedure the test items including the Chemical composition test, Physical properties test, Appearance defects inspection,Ultrasonic detection, and Metallography detection etc.
3.What kind of package do you use?
Cartons or wooden case that are suitable for export.






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