,Effect of elastic strain energy on grain growth and texture in AZ31 magnesium alloy by phase-field

来源 :中国物理B(英文版) | 被引量 : 0次 | 上传用户:jc85858958
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
A phase-field model is modified to investigate the grain growth and texture evolution in AZ31 magnesium alloy during stressing at elevated temperatures.The order parameters are defined to represent a physical variable of grain orientation in terms of three angles in spatial coordinates so that the grain volume of different order parameters can be used to indicate the texture of the alloy.The stiffness tensors for different grains are different because of elastic anisotropy of the magnesium lattice.The tensor is defined by transforming the standard stiffness tensor according to the angle between the (0001) plane of a grain and the direction of applied stress.Therefore,different grains contribute to different amounts of work under applied stress.The simulation results are well-explained by using the limited experimental data available,and the texture results are in good agreement with the experimental observations.The simulation results reveal that the applied stress strongly influences AZ31 alloy grain growth and that the grain-growth rate increases with the applied stress increasing,particularly when the stress is less than 400 MPa.A parameter (Ad) is introduced to characterize the degree of grain-size variation due to abnormal grain growth;the △d increases with applied stress increasing and becomes considerably large only when the stress is greater than 800 MPa.Moreover,the applied stress also results in an intensive texture of the axis parallel to the direction of compressive stress in AZ31 alloy after growing at elevated temperatures,only when the applied stress is greater than 500 MPa.
其他文献
Search for the development of a reliable mathematical model for understanding bubble dynamics behavior is an ongoing endeavor. A long list of complex phenomena
The nonlinear propagation of quantum ion acoustic wave (QIAW) is investigated in a four-component plasma com-posed of warm classical positive ions and negative
本研究主要是将蔬菜栽培学的有关问题与信息科学相结合,用信息科学的技术及一些科学处理方法,对蔬菜在田间所表现的生长问题加以分析、提炼、总结。结合现代信息科学技术,使传统
以20个品种的枣实生苗为试材,对其植物学性状、生物学习性以及部分品种的枝条、叶片的解剖结构等进行了研究,分析其遗传动态。主要研究结果如下: 1.枣实生后代在枝干、叶片、
The coupling effect of air-bridges on broadband spiral inductors in SiC-based MMIC technology has been investigated deeply.The fabricated 1-nH spiral inductor o
To promote the future quantum information technologies,we demonstrate an electrically driven optical switch based on quantum interference in a hybrid opto-elect
本试验以‘津优35号’黄瓜品种作为试验材料,探究了在长期CO2加富的条件下黄瓜叶片光合作用、碳水化合物代谢及其相关酶活性的变化,以期为温室黄瓜优质高产提供理论依据。研