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首页> 外文期刊>Materials transactions >Mechanical Properties and Dislocation Substructure of 6061-T6 Aluminum Alloy Impacted at Cryogenic Temperatures
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Mechanical Properties and Dislocation Substructure of 6061-T6 Aluminum Alloy Impacted at Cryogenic Temperatures

机译:低温下6061-T6铝合金的力学性能和位错亚结构

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The mechanical properties and dislocation substructure of 6061-T6 aluminum alloy deformed at temperatures of 0 degrees C, -100 degrees C and -196 degrees C and strain rates of 1000 s(-1), 3000 s(-1) and 5000 s(-1) are investigated using a compressive split-Hopkinson pressure bar. It is found that the flow stress and strain rate sensitivity increase with increasing strain rate, but decrease with increasing temperature. In addition, the work hardening rate decreases with increasing strain rate and temperature. The flow stress corresponding to a true strain of 0.6 is modelled using a power law expression with an activation energy of 1.7 kJ/mol and an average strain rate sensitivity of 0.154. The dislocation density increases with increasing strain rate and decreasing temperature, and leads to a greater flow stress. A greater multiplication and tangling of the dislocations occurs at higher strain rates and lower temperatures. The flow stress and square root of the dislocation density are linearly related via the Bailey-Hirsch type relation sigma = sigma(0) + alpha(1)Gb root rho, where alpha(1) has a value of 0.46 for the current 6061-T6 aluminum alloy.
机译:6061-T6铝合金在0摄氏度,-100摄氏度和-196摄氏度的温度,应变率1000 s(-1),3000 s(-1)和5000 s( -1)使用压缩分体式霍普金森压力棒进行研究。发现流动应力和应变率灵敏度随应变率的增加而增加,但随温度的升高而减小。另外,加工硬化率随着应变率和温度的升高而降低。使用幂定律表达式(与1.7 kJ / mol的激活能和0.154的平均应变率敏感度)对幂应力表达式进行建模,得出与真实应变为0.6对应的流应力。位错密度随着应变率的增加和温度的降低而增加,并导致更大的流动应力。在较高的应变速率和较低的温度下,位错发生更大的扩散和纠缠。流应力和位错密度的平方根通过Bailey-Hirsch类型关系sigma = sigma(0)+ alpha(1)Gb根rho线性相关,其中对于当前的6061-,alpha(1)的值为0.46 T6铝合金。

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