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Compressive Viscoplastic Response of 6082-T6 and 7075-T6 Aluminium Alloys Under Wide Range of Strain Rate at Room Temperature: Experiments and Modelling

机译:6082-T6和7075-T6铝合金在室温下大应变速率下的压缩粘塑性响应:实验和建模

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摘要

In this work, the viscoplastic behaviour of 6082-T6 and 7075-T6 aluminium alloys is examined over a wide range of strain rates. Three different testing techniques were applied to this investigation: low-rate experiments were performed using a regular servo-hydraulic testing machine, high-rate tests were conducted using a split Hopkinson bar apparatus and very-high-rate experiments were carried out using a miniaturised direct impact test arrangement. The latter testing set-up allowed for the characterisation of material flow at strain rates up to . These experimental results showed a sharp increase in the rate sensitivity of the materials once a threshold loading rate of is exceeded. This behaviour may be attributed to the presence of viscous drag on high-velocity dislocation motion. In addition, the thermo-viscoplastic behaviour of the 6082-T6 and 7075-T6 aluminium alloys was analytically described using the extended RusinekKlepaczko model of viscous drag effects. Satisfactory correlation was observed between the experiments and the constitutive model results over the entire range of strain rates studied,
机译:在这项工作中,在广泛的应变速率范围内检查了6082-T6和7075-T6铝合金的粘塑性行为。三种不同的测试技术应用于该研究:使用常规伺服液压测试机进行低速率实验,使用分体式Hopkinson棒装置进行高速率测试,使用小型化实验进行非常高速率的实验直接冲击试验安排。后者的测试装置可以表征应变率高达的材料流。这些实验结果表明,一旦超过阈值加载速率,材料的速率灵敏度就会急剧增加。此行为可能归因于高速错位运动中存在粘性阻力。此外,使用扩展的RusinekKlepaczko粘性阻力效应模型来分析描述6082-T6和7075-T6铝合金的热粘塑性行为。在所研究的应变速率的整个范围内,实验与本构模型结果之间观察到令人满意的相关性,

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