A 10 Micron Ultra-long Microporous Metal Titanium Plate
A 10 micron ultra-long microporous metal titanium plate is a material made from sintered titanium powder, possessing high gas diffusion and electrical conductivity. The manufacturing process involves blending titanium powder, shaping it, and then subjecting it to high-temperature sintering to form a sturdy titanium plate with a specific porous structure.
The 10 micron ultra-long microporous metal titanium plate possesses high gas diffusion performance, high-temperature resistance, and coating capability. It finds wide-ranging potential applications in polymer electrolyte membrane fuel cells, filters for high-temperature and corrosive environments, and as an anode material in fuel cells. By leveraging its exceptional physical and chemical properties, the porous sintered titanium plate can enhance performance and efficiency across various application fields.
Parameters
Filtration precision: 10um
(0.5 um, 1 um, 3 um, 5 um, 10 um, 20 um, 30 um, 50 um)
Porosity: 30%─40%
Pressure: 0.2Mpa/cm2
Temperature resistance: 300 ℃(wet)
Maximum Operating pressure: 0.2Mpa/cm2
Size: 200*1000*1.5mm
Features
1. High gas diffusion performance: The porous sintered titanium plate features a uniform pore structure, enabling efficient gas diffusion. This characteristic makes it suitable as a gas diffusion layer in polymer electrolyte membrane fuel cells (PEMFC), facilitating the effective transport of fuel and oxygen.
2. Excellent high-temperature resistance: Due to titanium's high melting point and excellent corrosion resistance, the porous sintered titanium plate exhibits remarkable stability and durability in high-temperature and corrosive environments. This property makes it an ideal material for filters, capable of effectively removing impurities in harsh conditions.
3. Coating capability: The porous sintered titanium plate can be coated with precious metals such as platinum (Pt) through electrochemical methods, enhancing its catalytic performance at the anode. This feature presents potential for its application as an anode material in fuel cells, improving fuel cell performance and efficiency.
Applications
Polymer electrolyte membrane fuel cells (PEMFC): Utilized as a gas diffusion layer, the porous sintered titanium plate promotes fuel and oxygen transport, providing good current distribution and improving the efficiency and performance of fuel cells.
Filters for high-temperature and corrosive environments: Assembled into titanium filters, the porous sintered titanium plate is suitable for filtering impurities in high-temperature and corrosive environments. For instance, in the chemical industry, it can be used to filter impurities in high-temperature and corrosive liquids or gases, ensuring product quality and safety.
Anode material in fuel cells: The porous sintered titanium plate, with the ability to be coated, can serve as an anode material in fuel cells. Through the coating process, it can achieve excellent gas diffusion and catalytic reactions, contributing to enhanced efficiency and stability of fuel cells.
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