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Showing posts from February, 2023

Role of Nickel Wire Mesh in New Energy Industry

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The new energy industry is rapidly evolving, and nickel wire mesh is playing an increasingly significant role in driving innovation and progress. As the world shifts towards more sustainable and renewable energy sources, the demand for new technologies is growing, and nickel mesh is an essential component in many of these innovations. What is the application of Nickel Wire Mesh in Fuel Cell? One of the primary applications of nickel wire mesh in the new energy industry is in fuel cells. Fuel cells generate electricity through an electrochemical reaction between hydrogen and oxygen, and nickel mesh is used in the electrodes to facilitate this reaction. The mesh's high conductivity and resistance to corrosion make it an effective catalyst for the reaction, and its low cost and wide availability make it an attractive option for mass production.   Nickel mesh's unique properties also make it a suitable material for use in solar panels. The mesh creates a conductive layer tha

Role of Copper Wire Mesh in Lightning Strike in Aerospace

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  Copper wire mesh is a material that is widely employed as wire cloth in aerospace industry for lightning strike protection. This is because lightning strikes can pose a serious danger to aircraft, potentially damaging critical systems and jeopardizing the safety of passengers and crew. As a result, effective lightning protection systems are essential for aircraft design. Copper wire mesh is highly conductive and can effectively dissipate the electrical energy of a lightning strike. During a lightning strike, a large amount of electrical current with high voltage and current levels can be produced, which can be harmful to the aircraft structure. However, copper wire mesh can safely conduct the current away from the aircraft structure, thereby reducing the risk of damage and ensuring the aircraft's safety. One of the advantages of copper wire mesh is its high conductivity. This means that it can conduct a large amount of electrical current without overheating or melting. Copper w