Products
Titanium Fiber Felt For LGDL Electrode Materials
2. Low thermal expansion;
3. High conductivity;
4. Large surface area;
5. Durability.
Titanium Fiber Felt for LGDL Electrode Materials is a specialized product that plays a vital role in proton exchange membrane (PEM) fuel cells. The LGDL component of the PEM fuel cell is responsible for distributing reactants like hydrogen and oxygen uniformly across the fuel cell's electrode surfaces, thus enabling efficient electrochemical reactions.
Titanium Fiber Felt for LGDL Electrode Materials is an ideal material for use in LGDLs due to its exceptional properties. Its high corrosion resistance, low thermal expansion, and excellent conductivity make it a desirable choice for PEM fuel cells. By using Titanium Fiber Felt in LGDLs, the fuel cell's performance can be improved, resulting in increased longevity and reduced maintenance costs. This can also contribute to the overall sustainability of the fuel cell system, making it a more environmentally friendly energy alternative.
Products Parameters
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Product Name |
Titanium Fiber Felt for LGDL Electrode Materials |
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Material |
Pure Titanium |
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Grade |
GR1 |
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Porosity |
60%-75% |
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Size |
1000MMx1000MM |
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Thickness |
0.25MM |
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Shape |
Can be customized |
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| Filtration accuracy |
1-200um |
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| Working strength |
0.1-30MPa |
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titanium felt

Titanium Felt For LGDL
Products Features
Corrosion resistance
Titanium has a strong corrosion resistance, which is essential for a PEM fuel cell's dependability and endurance.
Low thermal expansion
Titanium's low coefficient of thermal expansion makes it possible for the LGDL to maintain its dimensional stability across a wide temperature range.
High conductivity
Titanium has exceptional electrical conductivity, ensuring effective electron transport throughout the fuel cell's electrochemical operations.
Large surface area
Titanium felt's non-woven, three-dimensional structure offers a significant surface area for distributing reactants evenly across the electrode surfaces.
Durability
High temperatures and corrosive environments found inside a PEM fuel cell can be handled by titanium felt due to its extreme durability.
Customizable
Thickness, porosity, and fiber diameter of titanium felt for LGDLs can be adjusted to match the demands of a fuel cell.
Products Application
PEM fuel cells have various applications across different industries, including transportation, backup power, portable power, and stationary power. In these applications, Titanium Fiber Felt for LGDL Electrode Materials ensures efficient and reliable electrochemical reactions.
In the automotive industry, PEM fuel cells are used to power electric vehicles, buses, and trucks. Titanium Fiber Felt for LGDL Electrode Materials ensures that the fuel cell can operate efficiently, providing a reliable and sustainable power source.
PEM fuel cells also serve as backup power sources for critical infrastructure, such as hospitals and data centers. In this application, Titanium Fiber Felt for LGDL Electrode Materials ensures that the fuel cell can operate efficiently and reliably during power outages, providing a continuous power source.
For portable power applications, such as military operations, camping, and emergency response, PEM fuel cells are a popular choice.Fuel cells are perfect for portable applications since they are lightweight and strong because to the use of Titanium Fiber Felt for LGDL Electrode Materials.
In stationary power applications, such as residential and commercial buildings, PEM fuel cells are used to generate electricity. Titanium Fiber Felt for LGDL Electrode Materials ensures that the fuel cell can operate efficiently and reliably over long periods, providing a sustainable alternative to traditional power sources.
In conclusion, Titanium Fiber Felt for LGDL Electrode Materials plays a crucial role in the LGDL component of PEM fuel cells across various applications, ensuring efficient and reliable electrochemical reactions.
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
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