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首页> 外文期刊>Materials transactions >Mechanical Properties and Dislocation Substructure of Inconel 690 Alloy Impacted at Cryogenic Temperatures
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Mechanical Properties and Dislocation Substructure of Inconel 690 Alloy Impacted at Cryogenic Temperatures

机译:低温下Inconel 690合金的力学性能和位错亚结构

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The mechanical response and dislocation substructure of Inconel 690 during impact deformation are investigated at strain rates of 2 x 10(3) similar to 6 x 10(3) s(-1) and temperatures of -150 degrees C, 0 degrees C and 25 degrees C using a compressive split-Hopkinson pressure bar system. The results show that the flow stress, work hardening rate and strain rate sensitivity all increase with increasing strain rate or decreasing temperature. By contrast, the activation volume reduces as the strain rate increases or the temperature decreases. Moreover, the temperature sensitivity increases with both increasing strain rate and increasing temperature. Optical microscopy observations show that adiabatic shear bands are formed at the highest strain rate of 6 x 10(3) s(-1) in all of the tested specimens. In addition, it is shown that adiabatic shear localisation is the major cause of specimen failure in every case. The dislocation density increases, and the cell size decreases, as the strain rate is increased or the temperature decreased. The change in the dislocation density and cell size is found to have a significant effect on the flow stress and work hardening behaviour of the Inconel 690 specimens; particularly at high strain rates or low temperatures.
机译:研究了Inconel 690冲击变形过程中的机械响应和位错子结构,其应变率为2 x 10(3),类似于6 x 10(3)s(-1),温度为-150摄氏度,0摄氏度和25摄氏度使用压缩分流式霍普金森压力杆系统在摄氏零下(C)。结果表明,流变应力,加工硬化率和应变率敏感性均随应变率的升高或温度的降低而增加。相反,激活体积随着应变率的增加或温度的降低而减小。而且,温度敏感性随着应变率和温度的增加而增加。光学显微镜观察表明,在所有测试样品中,绝热剪切带均以最高应变速率6 x 10(3)s(-1)形成。此外,表明绝热剪切定位在每种情况下都是导致样品破坏的主要原因。随着应变速率的增加或温度的降低,位错密度增加,晶胞尺寸减小。发现位错密度和晶胞大小的变化对Inconel 690试样的流变应力和加工硬化行为具有显着影响;特别是在高应变率或低温下。

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