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Influence of grain size and quenching rate on the age-hardening behavior of Cu-2%Be alloy

机译:晶粒度和淬火速率对Cu-2%Be合金时效行为的影响

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摘要

The influence of grain size and quenching-rate on the age-hardening behavior of a Cu-2%Be alloy was investigated at 593 K after water-quenching and air-cooling from 1093 K. In the initial stage of age-hardening of the water-quenched specimen, thegrain size dependence of hardness was observed; namely, the smaller the grain size, the lower the hardness. Moreover, the hardness in the regions adjacent to grain boundaries in a large grain was lower than that at the central region of a grain. Thesephenomena can be explained by the mechanism that the vacancies existing in the regions adjacent to grain boundaries at the solution-treatment temperature move to grain boundaries to disappear during water-quenching, resulting in the retarded G.P. zoneformation in these regions in the subsequent aging. In the case of the low quenching rate(air-cooling), the formation of G.P. zones is suppressed in the whole regions of grains and thus the grain size dependence of hardness was scarcely observed.
机译:研究了从1093 K淬火和空冷后,在593 K时,晶粒尺寸和淬火速率对Cu-2%Be合金时效行为的影响。水淬试样,观察到硬度对晶粒尺寸的依赖性;即,晶粒尺寸越小,硬度越低。此外,大晶粒中与晶界相邻的区域中的硬度低于晶粒的中心区域中的硬度。这些现象可以通过以下机理来解释:在水淬处理期间,在固溶处理温度下与晶界相邻的区域中存在的空位移动至晶界而消失,从而导致G.P降低。这些区域在随后的老化过程中形成带状。在低淬火速率(空冷)的情况下,形成G.P。区域在晶粒的整个区域被抑制,因此几乎没有观察到硬度对晶粒尺寸的依赖性。

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