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首页> 外文期刊>Journal of Multiscale Modelling >A CRYSTAL PLASTICITY STUDY OF THE NECKING OF MICRO-FILMS UNDER TENSION
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A CRYSTAL PLASTICITY STUDY OF THE NECKING OF MICRO-FILMS UNDER TENSION

机译:张力作用下微膜形成的晶体塑性研究

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An integrated crystal viscoplastic modeling process has been developed to account for the effect of microstructure in the mechanical response of polycrystalline materials. Grain distributions, including size, shape and orientation, are generated automatically based on probability theories using VGRAIN software. For each set of control parameters (average, maximum and minimum grain size) used in the micro-film simulations, six grain orientation patterns were generated randomly for a micro-film based on a gamma distribution; a large number of analyses have been carried out to account for statistical variations in the spatial pattern of grain orientations. The simulations are used to investigate the effects of grain size and orientation on necking and flow stress in stainless steel under uniaxial tension, and to quantify the extent that variability in the spatial distribution of orientations affects the predictions. Based on the numerical studies, a map was generated indicating under what circumstances macro-mechanics theory can be used and when Crystal Plasticity (CP) theory must be used to ensure the accuracy of the analysis; if the theories are not used appropriately, huge errors can be expected.
机译:为了解决微结构在多晶材料机械响应中的影响,已经开发了一种集成的晶体粘塑性建模方法。使用VGRAIN软件根据概率理论自动生成包括尺寸,形状和方向在内的晶粒分布。对于在微胶片模拟中使用的每组控制参数(平均,最大和最小晶粒尺寸),基于伽马分布为微胶片随机生成六个晶粒取向图案。已经进行了大量分析以说明晶粒取向的空间图案的统计变化。该模拟用于研究晶粒尺寸和取向对单轴拉伸下不锈钢颈缩和流动应力的影响,并量化取向空间分布的可变性影响预测的程度。在数值研究的基础上,生成了一个图,指示在什么情况下可以使用宏观力学理论,以及何时必须使用晶体可塑性(CP)理论来确保分析的准确性;如果理论使用不当,可能会出现巨大的错误。

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