Lyu Hao, Zhang Yaxin, Bao Yuan, Zhang Jiahui
College of Transportation Engineering, Dalian Maritime University, Dalian 116026, China.
Information Science and Technology College, Dalian Maritime University, Dalian 116026, China.
Materials (Basel). 2023 Mar 24;16(7):2603. doi: 10.3390/ma16072603.
The effect of specific processing-induced surface textures in gradient aluminum has not yet been investigated. A dislocation-based multi-scale framework is employed to explore the influence of various initial shearing textures and the depth from the surface of the region featuring each texture on the macroscopic behavior of gradient aluminum. By assigning different textures to the same grain size gradient aluminum sample, the initial texture was found to significantly affect the plastic deformation and macroscopic behavior of gradient aluminum. Specifically, the {111} texture can enhance the strength-ductility synergy, and this effect is dependent on the depth from the surface where the texture is located. This texture can lead to a slow stress/strain gradient in the assigned texture region and a sharp stress/strain gradient in the grain size gradient region connecting this region with the coarse grain region. Particularly, the sharp stress/strain gradient can result in extra strengthening by adjusting the stress/strain localization. These findings provide valuable insights for the design and optimization of surface textures in gradient aluminum.
梯度铝中特定加工诱导表面织构的影响尚未得到研究。采用基于位错的多尺度框架,以探究各种初始剪切织构以及具有每种织构的区域距表面的深度对梯度铝宏观行为的影响。通过给相同晶粒尺寸梯度铝样品赋予不同织构,发现初始织构对梯度铝的塑性变形和宏观行为有显著影响。具体而言,{111}织构可增强强度-延展性协同效应,且这种效应取决于该织构所在表面的深度。这种织构会在指定织构区域导致缓慢的应力/应变梯度,并在连接该区域与粗晶粒区域的晶粒尺寸梯度区域产生急剧的应力/应变梯度。特别地,急剧的应力/应变梯度可通过调整应力/应变局部化导致额外强化。这些发现为梯度铝表面织构的设计和优化提供了有价值的见解。