在周期性无热准静态变形下,合体多晶体的可逆变为不可逆转的转变
Khushika1, Lasse Laurson2, Pritam Kumar Jana1
1Department of Chemistry, Birla Institute of Technology and Science, Pilani, Pilani Campus, Rajasthan 333031, India.
在循环负荷下,合性多晶体从弹性转变为塑性行为. 剪切应变需要比拉伸压缩应变更高的振幅来诱导这种不可逆转性过渡.
科学领域:
- 材料科学 材料科学 材料科学
- 凝聚物质物理学 凝聚物质物理学
- 软物质物理学 软物质物理学
背景情况:
- 颗粒材料和无形介质的循环加载显示了从弹性向塑性行为的过渡.
- 了解这种过渡对于预测动态应力下的材料反应至关重要.
研究的目的:
- 为了比较合性多晶体在拉伸压缩和剪切应变下的不可逆转转变和微观行为.
- 阐明变形模式对多晶体产量和结构演化的作用.
主要方法:
- 振荡式拉伸压缩和剪切应变应用于合体多晶体.
- 动态性质的分析:移动性和原子应变 (Von Mises剪切应变,体积应变).
- 使用六进制顺序参数量化结构变化的量化.
主要成果:
- 拉力压缩和剪切应变都会诱导可逆向不可逆转的过渡.
- 与拉伸压缩负荷相比,在剪切下过渡发生在更大的应变幅度下.
- 在微观上,突变和粒度边界消失,形成单晶,拉伸压缩中斜面积累应变,剪切时沿轴积累应变.
结论:
- 循环变形的模式显著影响了合性多晶体中不可逆转性的应变幅度值.
- 结构演变,包括单晶和应变局部化模式的形成,在剪切和拉伸压缩模式之间有所不同.
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