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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >The role of internal stresses on the plastic deformation of the Al-Mg-Si-Cu alloy AA6111
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The role of internal stresses on the plastic deformation of the Al-Mg-Si-Cu alloy AA6111

机译:内应力对Al-Mg-Si-Cu合金A6111塑性变形的作用

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In this work, we have investigated the internal stress contribution to the flow stress for a commercial 6xxx aluminium alloy (AA6111). In contrast to stresses from forest and precipitation hardening, the internal stress cannot be assessed properly with a uniaxial tensile test. Instead, tension-compression tests have been used to measure the Bauschinger stress and produce a comprehensive study which examines its evolution with (i) the precipitation structure, and (ii) a wide range of applied strain. A large set of ageing conditions was investigated to explore the effect of the precipitation state on the development of internal stress within the material. It is shown that the Bauschinger stress generally increases with the applied strain and critically depends on the average radius of the precipitate and is thus linked to the shearableon-shearable transition. Further work in the case of non-shearable particles shows that higher strain eventually leads to particle fracture and the Bauschinger stress then rapidly decreases. Following the seminal work of Brown et al. a physically based approach including plastic relaxation and particle fracture is developed to predict the evolution of the internal stress as a function of the applied strain. Knowing the main characteristics of the precipitation structure-such as the average precipitate radius, length and volume fraction-allows one to estimate accurately the internal stress contribution to the flow stress with this model.
机译:在这项工作中,我们研究了内部应力对商用6xxx铝合金(AA6111)的流动应力的影响。与来自森林和降水硬化的应力相反,内部应力无法通过单轴拉伸试验正确评估。取而代之的是,拉压试验已用于测量鲍辛格应力,并进行了一项全面的研究,以(i)降水结构和(ii)广泛应用的应变来检查其演化。对大量老化条件进行了研究,以探索沉淀状态对材料内部应力发展的影响。结果表明,鲍辛格应力通常随所施加的应变而增加,并且严格取决于析出物的平均半径,因此与可剪切/不可剪切的转变有关。对于不可剪切的颗粒,进一步的研究表明,较高的应变最终会导致颗粒破裂,然后堡辛格应力迅速降低。继布朗等人的开创性工作。人们开发了一种基于物理的方法,包括塑性松弛和颗粒断裂,以预测内部应力随所施加应变的变化。知道了降水结构的主要特征(例如平均沉淀半径,长度和体积分数)后,便可以使用该模型准确估算内部应力对流动应力的贡献。

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