Abrasion-resisting aluminum silicon alloy
An aluminum-silicon alloy, mass percentage technology, applied in the field of aluminum alloys, can solve the problems of increased alloy hardness and wear resistance, difficult control of processing quality, increased silicon particles, etc., to achieve improved alkali corrosion resistance, increased hardness, and improved mechanical properties. performance effect
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Embodiment 1
[0015] This embodiment provides a wear-resistant aluminum-silicon alloy, which is composed of the following elements in mass percentage: 12% silicon, 3.5% copper, 2% magnesium, 0.7% zinc, 0.4% manganese, 0.5% antimony, 0.37% osmium, iridium 0.25%, the balance is aluminum and impurities, and the impurity content is 0.1%.
[0016] The above-mentioned wear-resistant aluminum-silicon alloy provided in this embodiment is prepared by melting all the above-mentioned metal elements in proportion at a temperature of about 750° C., and casting into a shape at a casting temperature of about 720° C.
Embodiment 2
[0018] This embodiment provides a wear-resistant aluminum-silicon alloy, which is composed of the following elements in mass percentage: 13% silicon, 1.5% copper, 2.2% magnesium, 0.67% zinc, 0.63% manganese, 0.71% antimony, 0.29% osmium, iridium 0.19%, the balance is aluminum and impurities, and the impurity content is 0.14%.
[0019] The above-mentioned wear-resistant aluminum-silicon alloy provided in this embodiment is prepared by melting all the above-mentioned metal elements in proportion at a temperature of about 760° C., and casting into a shape at a casting temperature of about 725° C.
Embodiment 3
[0021] This embodiment provides a wear-resistant aluminum-silicon alloy, which is composed of the following elements in mass percentage: 13% silicon, 2% copper, 3.8% magnesium, 0.6% zinc, 0.7% manganese, 0.75% antimony, 0.34% osmium, iridium 0.18%, the balance is aluminum and impurities, and the impurity content is 0.13%.
[0022] The above-mentioned wear-resistant aluminum-silicon alloy provided in this embodiment is prepared by melting all the above-mentioned metal elements in proportion at a temperature of about 765° C., and casting them into shapes at a casting temperature of about 730° C.
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