Effects of laser shock processing, solid solution and aging, and cryogenic treatments on microstructure and thermal fatigue performance of ZCuAl10Fe3Mn2 alloy

Author:

Liu Guang-lei,Cao Yu-hao,Shi Lu-xin,Zhang Meng-jie,Ye Zhi-qiang,Zhao Ling,Zhou Jian-zhong,Si Nai-chao

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys

Reference20 articles.

1. Wu J H, Zhang S H, Chen Y, et al. Microstructure and properties of TP2 copper tube with La microalloying by horizontal continuous casting. China foundry, 2018, 15(1): 31–36.

2. Zhao L, Liu G L, Zhang S Y, et al. Effect of compound cryogenic treatment on microstructure and thermal fatigue properties of ZCuAl10Fe3Mn2 alloy. Journal of Materials Engineering, 2019, 47(12): 63–70. (In Chinese)

3. Ma Q, Liu G L, Zhang L Y, et al. Effects of solid solution and aging and cryogenic treatment on friction and wear properties of ZQAl10-3-1.5 alloy. Transactions of Materials and Heat Treatment, 2018, 39(2): 32–37. (In Chinese)

4. Zhou J Z, Li J, Xu S Q, et al. Improvement in fatigue properties of 2024-T351 aluminum alloy subjected to cryogenic treatment and laser peening. Surface and Coating Technology, 2018, 345: 31–39.

5. Chen X, Wang Z S, Li Y X, et al. Effects of carbon content on high-temperature mechanical and thermal fatigue properties of high-boron austenitic steels. China Foundry, 2016, 13(1): 1–8.

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