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轧制织构对纳米梯度铝塑性变形的影响

The Effect of Rolling Texture on the Plastic Deformation of Nano-Gradient Aluminum.

作者信息

Zhang Yaxin, Lyu Hao

机构信息

College of Transportation Engineering, Dalian Maritime University, Dalian 116026, China.

出版信息

Nanomaterials (Basel). 2023 Jul 30;13(15):2214. doi: 10.3390/nano13152214.

Abstract

Creating alloys with a gradient microstructure in grain size has been shown to be a potential method to resolve the trade-off dilemma between strength and ductility. However, different textures developed with various processing methods cannot be fully eliminated, which can significantly affect the mechanical behavior of alloys. In this study, we use a multiscale framework based on dislocation theory to investigate how the combination of rolling texture and gradient in grain size affects the plastic deformation of nano-gradient aluminum during a tensile test. We found that specific rolling textures, such as {110} texture, can significantly enhance the strength and ductility of nano-gradient aluminum. This improvement is the result of the grain being reoriented and the redistribution of stress and strain, which are caused by the combined influence of texture and variation in grain size. These results provide new insights into developing high-performance aluminum by mediating texture and grain size gradient.

摘要

已证明创建具有晶粒尺寸梯度微观结构的合金是解决强度与延展性之间权衡困境的一种潜在方法。然而,通过各种加工方法产生的不同织构无法完全消除,这会显著影响合金的力学行为。在本研究中,我们使用基于位错理论的多尺度框架来研究轧制织构和晶粒尺寸梯度的组合如何在拉伸试验中影响纳米梯度铝的塑性变形。我们发现特定的轧制织构,如{110}织构,可显著提高纳米梯度铝的强度和延展性。这种改善是晶粒重新取向以及应力和应变重新分布的结果,这是由织构和晶粒尺寸变化的综合影响引起的。这些结果为通过调节织构和晶粒尺寸梯度来开发高性能铝提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20d1/10421004/a45229b709b1/nanomaterials-13-02214-g0A1.jpg

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