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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of creep-aging parameters on aging precipitates of a two-stage creep-aged AleZneMgeCu alloy under the extra compressive stress
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Effects of creep-aging parameters on aging precipitates of a two-stage creep-aged AleZneMgeCu alloy under the extra compressive stress

机译:爬血衰老参数对额外压缩应力下两级蠕变血清合金老化沉淀物的影响

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摘要

Two-stage creep-aging characteristics of an Al-Zn-Mg-Cu alloy under the extra compressive stress are investigated. The effects of the second-stage creep-aging temperature (SSCAT) and compressive stress on precipitates are discussed. It is found that the main precipitates are eta' and eta phases in the two-stage creep-aged alloy. With the increase of SSCAT, the size of intragranular aging precipitates (IAPs) rapidly increases, while its density decreases. Meanwhile, the density of IAPs first increases and then decreases with the increase of compressive stress. Additionally, the grain boundary precipitates (GBPs) discontinuously distribute on grain boundaries. The size of GBPs and the width of precipitate free zones (PFZs) increase with increasing the SSCAT, and the total volume of GBPs increases with the increase of compressive stress. Moreover, the sizes of IAPs under compressive stress are bigger than those under tensile stress, while their density is relatively smaller. Furthermore, the compressive stress can effectively inhibit the growth of GBPs and the broadening of PFZs. Compared with the creep-aged alloys under tensile stress, the sizes of the GBPs are smaller, and the PFZs is narrower in the creep-aged alloys under compressive stress. (c) 2018 Elsevier B.V. All rights reserved.
机译:研究了额外压缩应力下Al-Zn-Mg-Cu合金的两阶段蠕变特性。讨论了第二阶段蠕变衰老温度(SSCAT)和压缩应力对沉淀物的影响。发现主要沉淀物是ETA'和ETA相在两级蠕变老化合金中。随着SSCAT的增加,腔内衰老沉淀物(IAP)的大小迅速增加,而其密度降低。同时,IAP的密度首先增加,然后随着压缩应力的增加而降低。另外,晶界沉淀(Gbps)不连续地分布晶界。随着SSCAT的增加,Gbps的尺寸和沉淀自由区(PFZs)的宽度增加,并且随着压缩应力的增加,Gbps的总体积增加。此外,压缩应力下的IAP的尺寸大于拉伸应力下的尺寸,而它们的密度相对较小。此外,压缩应力可以有效地抑制Gbps的生长和PFZ的扩展。与拉伸应力下的蠕变老化合金相比,Gbps的尺寸较小,并且PFZ在压缩应力下的蠕变老化合金中较窄。 (c)2018年elestvier b.v.保留所有权利。

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