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Intergranular Corrosion Susceptibility of Al-Mn-Cu Alloys, Heat Treated After Simulated Brazing

机译:Al-Mn-Cu合金的晶间腐蚀敏感性,在模拟钎焊后进行热处理

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The development of air conditioners using CO{sub}2 refrigerants in place of freon-based refrigerants is underway. In these air conditioners, the temperature of the heat-exchange cycle increases to 453 K. The intergranular corrosion susceptibility of the Al-Mn-Cu alloy was investigated using the anode galvanic dissolution test after performing brazing and heat treatment at 453 K. The intergranular corrosion susceptibility was dependent on the amounts of Mn and Cu, and heat treatment at 453 K resulted in an increase in the intergranular corrosion susceptibility. In the case where brazing was not followed by heat treatment at 453 K, TEM observation revealed Al-Cu intermetallic compounds with Al-Mn precipitates on the grain boundary. On the other hand, when heat treatment was carried out at 453 K, the growth of both Al-Cu intermetallic compounds and their precipitates was observed on the grain boundary with no Al-Mn precipitates. It is believed that the Cu- depleted zone along the grain boundaries increases with the precipitation of Cu on the grain boundary. This is believed to be the reason for an increase in the intergranular corrosion susceptibility with an increase in both the duration of heating at 453 K and the amounts of Mn and Cu.
机译:使用CO {SUB} 2制冷剂的空调的开发代替氟利昂制冷剂。在这些空调中,热交换循环的温度增加到453 k。在进行453k的钎焊和热处理后,使用阳极电流溶解试验研究了Al-Mn-Cu合金的晶间腐蚀敏感性。腐蚀性易感性依赖于Mn和Cu的量,并且453 k处的热处理导致骨间腐蚀敏感性增加。在453 k下的钎焊不会热处理的情况下,TEM观察揭示了Al-Mn沉淀对晶界的Al-Cu金属间化合物。另一方面,当在453 k下进行热处理时,在没有Al-Mn沉淀物的晶界面上观察到Al-Cu金属间化合物的生长及其沉淀物。据信沿着晶界的Cu-耗尽的区域随着晶界沉淀而增加。据信这是跨晶体腐蚀敏感性增加的原因,随着453 k和Mn和Cu的量的加热持续时间增加。

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