High porosity titanium fiber felt is a versatile material that has gained significant attention in the field of battery research. Its unique properties, such as high porosity, excellent electrical conductivity, and good mechanical strength, make it an ideal material for various battery applications.
Parameters
1. Material : Titanium
2. Thickness : 0.25mm, 0.4mmn 0.6mmn 0.8mm, 1.0mm
3. Porosity : 60% - 70%
4. Shape : Rectangle
Properties
1. High porosity. High porosity titanium fiber felt has a three-dimensional network structure composed of interconnected titanium fibers, resulting in a high porosity that ranges from 60% to 80%. This high porosity provides excellent permeability for electrolytes and gases, which is crucial for battery performance.
2. Excellent electrical conductivity. Titanium fiber felt exhibits high electrical conductivity due to the interconnected network of fine titanium fibers. This property enables efficient charge transfer within the battery, resulting in improved performance and reduced internal resistance.
3. Good mechanical strength. Despite its high porosity, high porosity titanium fiber felt maintains good mechanical strength, making it suitable for use in various battery configurations and applications.
4. Corrosion resistance. High porosity titanium fiber felt is highly resistant to corrosion, ensuring its stability and durability in battery applications involving aggressive electrolytes.
5. Customizable catalyst support. In certain types of batteries (like fuel cells or redox flow batteries), the high porosity titanium fiber felt can serve as a substrate for catalysts, enabling more efficient energy conversion.
Advantages
1 Enhanced battery performance. The high porosity and excellent electrical conductivity of titanium fiber felt can significantly improve battery performance, including increased capacity, higher energy density, and better cycling stability.
2. Cost-effective. High porosity titanium fiber felt is a cost-effective material compared to other advanced materials used in battery research, such as noble metals and advanced ceramics.
3. Versatility. High porosity titanium fiber felt can be used in various battery applications, making it a versatile material for researchers studying different aspects of battery technology.
Applications
1. Electrode support. High porosity titanium fiber felt can be used as a support material for battery electrodes, providing a stable structure and promoting efficient electrolyte diffusion.
2. Electrode current collector. The high electrical conductivity and mechanical strength of high porosity titanium fiber felt make it an ideal material for use as a current collector in battery electrodes.
3. Separator reinforcement. High porosity titanium fiber felt can be used to reinforce battery separators, improving their mechanical strength and reducing the risk of internal short circuits.
4. Electrochemical characterization. High porosity titanium fiber felt can be used as a substrate for electrochemical characterization studies, enabling the investigation of various battery materials and their performance.
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