商用Cu-Ni-Al-Mn合金的显微组织发展

G. Marshall
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引用次数: 2

摘要

摘要用光学显微镜和透射电镜观察了Cu-Ni-Al-Mn合金微观组织的发展。固溶处理后的水淬不会产生完全随机的固溶体,电子衍射表明可能存在短程有序。等温时效使θ相(Ni3Al, L12组织)在基体中均匀析出,在晶界处不连续析出,在晶界处非均匀析出。均匀成核的θ相从球形到立方体再到片状变粗,因为必须降低与共格相相关的弹性应变能,这也促进了在600℃及以下的粒子排列。在研究的所有温度下都观察到经典的不连续沉淀反应,但受影响的晶界比例随着温度的升高而降低。反应终止后,反应发生得很快,θ棒以两种不同的速率变粗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microstructural development in commercial Cu-Ni-Al-Mn alloy
AbstractThe development of microstructure in a Cu-Ni-Al-Mn alloy has been observed by optical and transmission electron microscopy. Solution treatment followed by water quenching does not produce a completely random solid solution and electron diffraction suggests that there may be short range order. Isothermal aging produces precipitation of θ phase (Ni3Al, L12 structure) homogeneously in the matrix, discontinuously at grain boundaries, and heterogeneously at grain boundaries. The homogeneously nucleated θ phase coarsens from spheres to cubes to plates, because of the necessity to reduce the elastic strain energy associated with the coherent precipitates, which also encourages particle alignment at and below 600°C. A classical discontinuous precipitation reaction is observed at all temperatures studied, but the proportion of affected grain boundaries is reduced as the temperature rises. After termination of the reaction which occurs very rapidly, the θ rods coarsen at two different rates depending on the...
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