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纳米多晶Al/Mg层复合材料中的塑料变形机制:一个分子动力学研究
Zhou Li1,2, Tong Shen1,2, Xiao Hu1,2
1College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.
Nanomaterials (Basel, Switzerland)
|January 11, 2024
概括
分子动力学模拟揭示了颗粒大小,应变速率和间层厚度如何影响纳米多晶Al/Mg复合材料中的塑料变形. 最佳的间层厚度增强了强度,而颗粒大小的影响则取决于延展率.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术纳米技术
- 计算材料科学科学 计算材料科学
背景情况:
- 优化纳米多晶层复合材料的机械性能需要了解塑料变形.
- 纳米多晶Al/Mg分层复合材料是先进应用的有希望的材料.
研究的目的:
- 研究粒度大小,延展率和间层厚度对纳米多晶Al/Mg层复合材料的塑料变形行为的影响.
- 阐明这些纳米复合材料中塑料变形的机制.
主要方法:
- 使用了分子动力学 (MD) 模拟.
- 在金属间化合物 (IMCs) 中,有系统地变化颗粒大小,延展率和层间厚度.
主要成果:
- 颗粒大小对变形的影响取决于拉伸速率:与低拉伸速率的产应力有逆关系,与高拉伸速率的拉伸应力有正关系.
- 最佳的间层厚度提高了复合材料的强度;过度的厚度通过限制谷物边界以适应脱位而降低了拉伸强度.
- 由于有限的应变适应,IMCs的增强效应在高应变率下会减弱.
结论:
- 对粒度大小,延展率和间层厚度效应的洞察力使得纳米复合材料的定制开发成为可能.
- 了解这些参数对于优化纳米多晶层复合材料的机械特性至关重要.
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