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An Anomaly in Creep Property Dependence on Grain Size for Ultrafine Grain Nanocrystalline Nickel at Higher Creep Temperature

机译:在较高蠕变温度下,蠕变性质依赖蠕变性质的异常依赖粒度纳米晶镍

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In this present study, molecular dynamics simulation of creep for ultrafine grain NC Ni specimens with different grain sizes have been carried out under a constant 1 GPa applied load for various creep temperatures to study the dependence of grain growth on creep temperature and grain size during creep process and its influence on creep properties. It is observed that the extent of grain growth in ultrafine grain NC Ni during creep deformation process is more if creep in creep temperature is higher. A noteworthy anomaly, that is NC Ni with smaller grain exhibits better creep property compared to NC Ni with larger grain, is observed in case of higher creep temperatures (i.e. around or greater than 1400K).
机译:在本研究中,在恒定的1GPa施加的载荷下,在各种蠕变温度下进行了不同晶粒尺寸的超细谷物Nc Ni标本的分子动力学模拟,以研究谷粒生长在蠕变期间蠕变温度和晶粒尺寸的依赖性 过程及其对蠕变性质的影响。 观察到,如果蠕变温度下蠕变更高,则在蠕变变形过程中超细谷物NC Ni的晶粒生长程度更高。 值得注意的异常,即具有较小谷物的NC Ni与具有较大颗粒的NC Ni相比表现出更好的蠕变性能,在较高的蠕变温度(即左右或大于1400K)的情况下观察到更大的谷物。

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