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Anelastic Effects of Phase Decomposition in 14-carat AuAgCu alloy

机译:14克拉Auagcu合金中相分解的圆形效应

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A relaxation peak has been observed in the internal friction spectrum of 18-carat AuAgCu yellow gold alloys at about 750K for 0.5Hz. It is related to the presence of grain boundaries, since it is absent in the spectrum of single crystals. For the 14-carat yellow gold alloy (Au38%Ag32%Cu30%), a phase decomposition between silver-rich and copper-rich solid solution occurs in the same temperature range. The effects of the phase decomposition on the internal friction and the dynamic modulus are studied by isochronal and isothermal measurements and correlated with the microstructure evolution. Upon cooling, the phase decomposition starts at grain boundaries at about 840K, producing a fine lamellar structure, and the grain boundary peak amplitude strongly decreases. As the phase decomposition progresses at the interior of the grains upon further cooling, the internal friction background increases. It remains very high in heating until solid solution homogenisation, which occurs above 890K. Such an increase of the internal friction background is observed also in the single crystalline alloy and may be attributed to the interfaces between lamellae of the silver and copper-rich phase.
机译:在18克拉Auagcu黄金合金的内部摩擦光谱下观察到弛豫峰,约750K为0.5Hz。它与晶界的存在有关,因为它在单晶的光谱中不存在。对于14克拉的金黄色合金(Au38%Ag32%Cu30%)之间,富铜的富银和固溶体相的分解发生在相同的温度范围。通过等时和等离性测量研究了相位分解对内部摩擦和动态模量的影响,并与微观结构演化相关。在冷却时,相位分解在约840K的晶界开始,产生细层状结构,并且晶界峰值幅度强烈降低。随着相位分解在进一步冷却时在晶粒的内部进行,内部摩擦背景增加。加热仍然非常高,直至固溶均匀化,其出现在890K以上。在单晶合金中也观察到内部摩擦背景的这种增加,并且可以归因于银和富含铜相之间的薄片之间的界面。

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