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Sichuan Porous Metal Technology Co., Ltd. xiaoshoubu@scporousmetal.com 86-028-60103957

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Home > products > Titanium Fiber Felt > Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL

Product Details

Place of Origin: Deyang, China

Brand Name: Porous

Certification: ISO9001

Model Number: NPF-1

Payment & Shipping Terms

Minimum Order Quantity: 5 pieces

Price: Negotiable

Delivery Time: 5-8 working days

Payment Terms: T/T

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Product Details
Highlight:

Ultra Thin Titanium Fiber Felt

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Pure Titanium Fiber Felt

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High temperature sintering ti felt

Product Name:
Porous Titanium
Material:
Pure Ti
Production Process:
High Temperature Sintering
Chemical Composition:
Ni+Co≥99.8
Porosity:
30-50 %
Processing Method:
Laser Cutting
Product Name:
Porous Titanium
Material:
Pure Ti
Production Process:
High Temperature Sintering
Chemical Composition:
Ni+Co≥99.8
Porosity:
30-50 %
Processing Method:
Laser Cutting
Product Description

Ultra Thin High Heat Dissipation Titanium Felt Fuel Cell High-Temperature Proton Exchange Membrane Microporous Layer GDL

 

The core material for AEM hydrogen production with completely independent intellectual property rights independently developed by Borsemai.
The main process of its preparation is:

 

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 0

 

Characteristic:


1.  Both pore size and porosity can be controlled;
2.  Gradient pore structure
3.  Large specific surface area;
4.  Resistance to medium corrosion;
5.  Weldable and machinable

 

Specification parameters

 

Parameter Unit Titanium powder felt(TPF)
Material / Pure titanium
Production process / High temperature sintering
Thickness mm 0.15-2.0
Thickness μm ≤40
Surface density g/cm³ 0.6-2.0
Surface roughness μm ≤30
Minimum aperture μm 3-5
Average pore size μm 12-20
Width mm 500-1000
Processing method / Laser Cutting
Application / AEM Hydrogen Production
Chemical Composition % Ti≥99.8
% N≤0.01
% C≤0.01
% H≤0.01
% Fe≤0.01
% Cl≤0.03
% Si≤0.01
% Mn≤0.01
% Mg≤0.01

 

 

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 1

 

Flexible and bendable/Large size and width/Extremely low surface roughness

 

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 2

 

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 3

 

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 4

 

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 5

 

 

Advantages:


1. Reduce surface spikes, prevent puncturing of membrane electrodes, and improve the lifespan of membrane electrodes.
2. Excellent water and gas transmission performance.Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 6

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 7

Application:


AEM nickel powder felt diffusion layer is used to promote the electrochemical reaction of gas. The conductive layer is a layer connecting the catalyst layer and the electrode substrate. It has good conductivity and can effectively transfer electrons to the electrode substrate. The nickel powder felt gas diffusion layer plays the role of transferring gas and liquid, and has good gas diffusion performance and liquid permeability. The nickel powder felt gas diffusion electrode is characterized by a large surface area and high catalytic activity. Due to the presence of the catalyst, the gas diffusion electrode can realize the electrochemical reaction of the gas at a lower temperature and pressure, and improve the efficiency and rate of the reaction. In addition, the nickel powder felt gas diffusion electrode also has good stability and corrosion resistance, and can operate stably for a long time in a complex environment.

 

Ultra Thin Titanium Fiber Felt Fuel Cell Proton Exchange Membrane Microporous Layer GDL 8