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How to produce and manufacture new processes for beryllium copper alloy materials
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How to produce and manufacture new processes for beryllium copper alloy materials

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Jiangsu Xiongsheng New Materials Co., Ltd
Beryllium copper alloy material is a very important alloy material. Compared with bronze alloy material, glass copper alloy material has the advantages of high strength, strong wear resistance, and long product service life. Moreover, it is widely used, mainly in various fields such as flood control, instruments, meters, electrical, electronics, petroleum, chemical, plastic processing, and mechanical manufacturing, as a special alloy material.
Electrothermal alloy
At present, there are some shortcomings in the production methods of beryllium copper alloy materials. With the development of technology, the production process of glass copper alloy materials has greatly improved. The new industry is a beryllium copper alloy production method with high strength, high hardness, high elasticity, high yield point, high fatigue limit, and good wear resistance, corrosion resistance, cold resistance, non magnetism, and no spark generated during impact.
This beryllium copper alloy contains added elements such as cobalt, nickel, chromium, zirconium, and titanium. The weight percentage content of various elements in the alloy is Be0.4-2.5%, Co1.5-3.0%, Ni1.5-3.0%, Cr1.5-3.0%, Zr0.1-2.0%, Ti0.5-1.5%, and the rest is Cu.
Electrothermal alloy
The production method of a new type of beryllium copper alloy is to co melt copper and beryllium according to their weight percentage content at a temperature of around 1000 ℃. After melting, additional elements such as cobalt, nickel, chromium, zirconium, and titanium are added. The alloy is then melted at a temperature of 1000-1600 ℃, followed by pouring, cooling and forging at room temperature, and then undergoing heat treatment and solid melting at a temperature of 200-500 ℃ for 2-5 hours. When the beryllium content in the beryllium copper alloy is less than 1% during heat treatment, the melting temperature is 750-900 ℃, and the aging temperature is 400-500 ℃; When the beryllium content is higher than 1%, the melting temperature is 600-750 ℃ and the aging temperature is 200-400 ℃.
Electrothermal alloy
Compared to background technology, it has the following advantages: high strength, high hardness, high elasticity, high yield point, high fatigue limit, and good wear resistance. It is corrosion resistant, cold resistant, non magnetic, and does not generate sparks during impact. It has a wide range of applications. Rockwell hardness (HRC) 35-55, tensile strength 112-140KG/MM2, torsional strength 70-90KG/MM2, torsional elasticity 49-70KG/MM2, and elastic limit 77-105KG/MM2.

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