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What is atomic ash used for?


 Atomic gray, commonly known as putty or unsaturated polyester resin putty, is also known as Poly Putty Base in English. It is a rapidly developing new type of filling material, consisting of two parts: the main ash (base ash) and the curing agent. The main components of the main ash are mostly unsaturated polyester resin and fillers, while the components of the curing agent are generally initiators and plasticizers, which play a role in initiating polymerization and enhancing performance. This material can adhere well to the surface of objects and does not produce cracks during the drying process, so it has a wide range of applications in many fields.

Specifically, atomic ash is mainly used to fill and modify defects such as pits, needle shrinkage holes, cracks, and small welds in the substrate, making the surface of the substrate flat and smooth before topcoat. Atomic ash is particularly popular in surface coating applications in industries such as automobiles, ships, and furniture due to its ability to adhere to material surfaces and rapidly form.
In addition, atomic ash is also an important battery material that can be used as a conductive and reinforcing agent to improve the conductivity and mechanical strength of lithium-ion batteries, and prolong battery life. In solar cells, atomic ash is also commonly used as a conductive and reflective layer.
In rubber products, atomic ash, due to its small particle diameter and high specific surface area, can enhance the mechanical and wear resistance of rubber products, and improve anti-aging and weather resistance. Meanwhile, it can also be used as a filler in plastics to improve their mechanical strength, hardness, and wear resistance.
In ink materials, atomic ash, due to its good dispersibility and small particle diameter, can improve the blackness and printing quality of ink, and extend the residence time of ink on paper.
In the field of electronics, due to its low oxidation and high purity, atomic ash is used as a reinforcing agent for semiconductor materials. Doping atomic ash can improve the conductivity and inductance of semiconductor materials.
In the field of metallurgy, atomic ash is mainly used as an additive in metallurgical materials, which can increase the hardness and corrosion resistance of alloys, and improve the comprehensive performance of materials. Meanwhile, it can also be used for surface treatment of metals to enhance their mechanical strength, wear resistance, and corrosion resistance.
In addition, in the field of medicine, atomic ash also has certain application value and can be used as an efficient therapeutic agent.
In summary, atomic ash has a wide range of applications, involving multiple fields such as automobiles, ships, furniture manufacturing, battery manufacturing, rubber products, ink materials, electronics, metallurgy, and medicine.


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