Products

Porous Titanium Plates Customized Porosity
2. Customized shape and size;
3. Environmental sustainability;
4. Applications in energy production.
A porous titanium plate is a type of material made from titanium that has many small holes or pores throughout its surface. These pores can range in size from a few micrometers to several millimeters, depending on the manufacturing process and the intended use of the plate.
Porous titanium plates are commonly used in a variety of applications, including biomedical implants, filtration systems, and catalytic converters. One of their most important properties is their high surface area-to-volume ratio, which allows for efficient mass transfer and gas exchange.
Products Parameters
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Material |
titanium sponge |
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Porosity |
35% |
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Filtration rate |
0.22mm- 100mm |
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Thickness |
above 1mm |
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Size |
square round and customized with the drawing |
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Products Features
Versatile pore structure
The pore structure of porous sintered titanium plates can be varied to achieve different properties. For example, plates with a larger pore size may have a higher permeability, while plates with a smaller pore size may have a higher particle retention.
Customized shape and size
Porous sintered titanium plates can be manufactured in a variety of shapes and sizes to suit specific application requirements. This allows for customized designs that can optimize performance and minimize material waste.

Environmental sustainability
Porous sintered titanium plates can be recycled and reused, making them an environmentally sustainable choice. Additionally, the manufacturing process can be optimized to minimize waste and energy consumption.

Applications in energy production
Porous sintered titanium plates can be used in energy production applications such as fuel cells and batteries. The high surface area-to-volume ratio of the plates allows for efficient gas exchange and can enhance the performance of these devices.
Products Applications
There are numerous uses for sintered porous titanium plates in numerous industries. Sintered porous titanium plates have the following typical applications:
Biological implants In orthopedic and dental surgery, sintered porous titanium plates are frequently utilized as implants due to their biocompatibility and capacity to encourage tissue ingrowth.
Sintered porous titanium plates are utilized as filters in a number of processes, including air and gas filtration, chemical processing, and wastewater treatment.
Catalysis: In a variety of chemical reactions, including hydrogenation and dehydrogenation reactions, sintered porous titanium plates are utilized as catalysts.
Energy production: Fuel cells and batteries use sintered porous titanium plates to improve performance by offering a high surface area-to-volume ratio for effective gas exchange.
Aircraft: Because of their light weight, high strength, and corrosion resistance, sintered porous titanium plates are employed in aircraft applications.
Sintered porous titanium plates are employed in heat exchangers because of their high thermal conductivity and corrosion resistance.
Acoustics: Because of their distinct acoustic characteristics, sintered porous titanium plates are employed in acoustic applications including loudspeakers and microphones.
Chemical processing: Due to its chemical resistance and capacity to bear high temperatures, sintered porous titanium plates are utilized as reactors and separators in chemical processing applications.
Automobile: Due to their corrosion resistance and high temperature resistance, sintered porous titanium plates are employed in automobile applications such as exhaust gas treatment systems.
►How is the porosity of the plate controlled during manufacturing?
The porosity of a porous titanium plate can be controlled during the manufacturing process. In the powder sintering process, titanium powder is compressed and heated to a temperature just below the melting point of titanium. The powder particles then fuse together to form a solid plate with a controlled porosity. The porosity of the plate can be controlled by adjusting the size and shape of the powder particles, the temperature and pressure of the sintering process, and the amount of binder material used.
Contact
tel: 0917-3873009
phone: +86 18992731201
email: zhangjixia@bjygti.com
fax:0917-3873009
address:No. 195, Gaoxin Avenue, High-tech Development Zone, Baoji City, Shaanxi, China
whatsapp: +86 18992731201
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