材料科学
阻尼能力
微观结构
旋节分解
晶体孪晶
合金
无扩散变换
旋节
位错
冶金
分解
形状记忆合金
深冷处理
马氏体
复合材料
过程(计算)
固溶体
粒度
可塑性
结构材料
作者
Liyan Dong,Qiangsong Wang,Yuan Wu,Haofeng Xie,Junru Gao,Xin‐Sheng Chai,Kexing Song
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2025-09-20
卷期号:18 (18): 4391-4391
被引量:1
摘要
This study investigated the effects of four heat treatment processes on the microstructure, damping capacity, and mechanical properties of Mn-Cu alloys. The results indicated that the alloy did not undergo spinodal decomposition and twinning after solution treatment. After solution and aging treatment, the alloy underwent spinodal decomposition and formed Mn-rich regions, increasing the martensitic transformation temperature (Ms), promoting martensitic transformation, forming twin boundaries, and enhancing damping capacity and mechanical properties. The cryogenic treatment and furnace cooling process facilitated the process, promoted the formation of twin boundaries, and improved damping capacity, and the degree of promotion by furnace cooling process was more significant. In addition, cryogenic treatment promoted grain refinement, increased dislocation density, improved strength, and facilitated the improvement of mechanical properties. This provided a reference for preparing high-damping Mn-Cu alloys with good comprehensive performance.
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