Some features of temperature and strain rate sensitivity dependences of plastic flow of functional magnesium alloys

K. Kudasheva, M. Linderov, A. Brilevsky, A. Danyuk, I. Yasnikov, D. Merson
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Abstract

The paper presents the results of mechanical tests of promising magnesium alloys for medical use of ternary alloying systems Mg-Zn-Ca and Mg-Zn-Y. The temperature and strain rate sensitivity features of the loading curves are discussed, in particular, the simultaneous significant increase in plasticity and a decrease in the interval of stable plastic flow with increasing temperature. The experimentally obtained value of the activation energy of the dislocation annihilation will make it possible to predict the true plastic deformation corresponding to the point of loss of plastic flow stability at various temperatures. The prospects for the possible use of the obtained results in technological processes for the manufacture and operation of medical devices are discussed.
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功能镁合金塑性流动的温度和应变率敏感性特征
本文介绍了有前途的医用镁合金Mg-Zn-Ca和Mg-Zn-Y三元合金体系的力学试验结果。讨论了加载曲线的温度和应变率敏感性特征,特别是随着温度的升高,塑性显著增加,塑性稳定流动区间减小。通过实验得到的位错湮灭活化能值,可以预测在不同温度下塑性流动失稳点对应的真实塑性变形。讨论了在医疗器械制造和操作的工艺过程中可能使用所得结果的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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