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- If you have questions, please contact us, all questions will be answered
- WhatsApp : +86 13003860308
- Email : David@tmaxcn.com
- Email : Davidtmaxcn@gmail.com
- Add : No. 39, Xinchang Road, Xinyang, Haicang Dist., Xiamen, Fujian, China (Mainland)
Titanium Wire Mesh for Battery Applications
Model Number:
TMAX-TIM01Compliance:
CE CertifiedDelivery Time:
2 days
- WhatsApp : +86 13003860308
- Email : David@tmaxcn.com
- Email : Davidtmaxcn@gmail.com
- Wechat : 18659217588
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Titanium Mesh in Photocatalytic Redox Flow Batteries
Titanium Wire Mesh for Battery Applications
Overview
Titanium wire mesh, meticulously woven from high-quality titanium wire, emerges as a versatile material catering to the diverse needs of battery applications. Available in both commercial pure titanium and various titanium alloys, this mesh excels in roles such as battery current collection, electrode support, and gas-liquid filtration.
Features
1.Battery Current Collection: Titanium wire mesh serves as an efficient current collector in batteries, ensuring a stable flow of electricity within the system. Its conductivity and corrosion resistance make it an ideal choice for this critical role.
2.Electrode Support: The mesh provides a robust foundation for electrodes in battery systems. Its high-strength and stability contribute to the structural integrity of electrodes, enhancing overall performance.
3.Acidic and Alkaline Compatibility: Designed to operate seamlessly in both acidic and alkaline environments, titanium wire mesh is well-suited for a wide range of battery chemistries. This versatility extends its utility across various battery technologies.
4.Gas-Liquid Filtration: Beyond its role in batteries, titanium mesh finds application in gas-liquid filtration processes. The mesh structure allows for effective separation of media, showcasing its adaptability in different filtration scenarios.
Applications
1.Battery Electrodes: Titanium wire mesh is employed as a supporting material for battery electrodes, contributing to the stability and durability of the electrode structure.
2.Current Collector: In batteries, the mesh acts as a current collector, facilitating the smooth flow of electrons during charging and discharging cycles.
3.Filtering in Aggressive Environments: Its corrosion resistance makes it suitable for use in aggressive environments, particularly in batteries where chemical reactions are integral to the energy storage process.
4.Gas-Liquid Separation: The mesh's fine weave and stability make it effective in gas-liquid filtration applications, showcasing its versatility beyond the realm of batteries.
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