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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 >Study on tensile/compressive asymmetry in creep ageing behavior of Al-Cu alloy under different stress levels
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Study on tensile/compressive asymmetry in creep ageing behavior of Al-Cu alloy under different stress levels

机译:不同应力水平下Al-Cu合金蠕变衰负不对称的拉伸/压缩不对称性研究

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Creep-ageing behavior of an Al-Cu alloy has been investigated under both tensile and compressive stress ageing conditions, with different stress levels at 165 degrees C for 9 h. The corresponding creep strain and age strengthening of the samples were studied by creep tests and uniaxial tensile tests. Microstructures observations of specimens have been examined by Scanning TEM (STEM) and X-Ray Diffraction (XRD). It has been found that the creep strains after tension creep tests are significantly greater than those after compression creep tests, and the asymmetry of creep strain decreases with increasing stress level. However, the yield strength of the creep aged-samples in compressive stresses are higher than those in tensile stresses, but the asymmetry of yield strength does not change significantly with the stress level. The stress exponents were found to be n = 2.95 and n = 4.21 for tension and compression creep test, respectively. The corresponding variance in dislocation density and the size of precipitates are the main reasons for the asymmetry of creep strain and yield strength, and the decreasing asymmetry in creep ageing behavior with increasing stress level is also related to the above two factors. In addition, the asymmetric creep ageing behavior of the Al-Cu alloy is discussed from both the macro and the micro aspect and a deeper understanding is achieved. (C) 2020 Elsevier B.V. All rights reserved.
机译:在拉伸和压缩应力老化条件下研究了Al-Cu合金的蠕变衰老行为,在165摄氏度下具有不同的应力水平9小时。通过蠕变试验和单轴拉伸试验研究了相应的蠕变菌株和增长的样品。通过扫描TEM(茎)和X射线衍射(XRD)检查了微观结构观察。已经发现,张力蠕变试验后的蠕变菌株明显大于压缩蠕变试验后的蠕变菌株,并且蠕变应变的不对称性随着应力水平的增加而降低。然而,压缩应力中的蠕变老化样品的屈服强度高于拉伸应力的屈服强度,但屈服强度的不对称性不会随压力水平显着变化。对于张力和压缩蠕变试验,发现应力指数是n = 2.95和n = 4.21。位错密度和沉淀物尺寸的相应方差是蠕变应变和屈服强度不对称的主要原因,并且蠕变老化行为中的不对称性的减少与上述两个因素也有关。另外,从宏观和微观方面讨论了Al-Cu合金的不对称蠕变老化行为,实现了更深层次的理解。 (c)2020 Elsevier B.v.保留所有权利。

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