Zobrazeno 1 - 3
of 3
pro vyhledávání: '"Yuebo Wen"'
Autor:
Yi Li, Peijian Shi, Mingyang Wang, Yinpan Yang, Yan Wang, Yiqi Li, Yuebo Wen, Weili Ren, Na Min, Yan Chen, Yifeng Guo, Zhe Shen, Tianxiang Zheng, Ningning Liang, Wenjun Lu, Peter K. Liaw, Yunbo Zhong, Yuntian Zhu
Publikováno v:
Materials Research Letters, Vol 10, Iss 9, Pp 602-610 (2022)
Eutectic high-entropy alloys (EHEAs) feature attractive strength–ductility balance at both ambient and cryogenic temperatures. Nevertheless, microstructural origins underpinning these balanced mechanical properties remain elusive. Here the deformat
Externí odkaz:
https://doaj.org/article/abc8f6ed08394be5bf57131c973bb352
Autor:
Ningning Liang, Yuebo Wen, Zhe Shen, Pengfei Hu, Tianxiang Zheng, Peter K. Liaw, Yi Li, Long Hou, Qingdong Liu, Weili Ren, Peijian Shi, Jianchao Peng, Yifeng Guo, Yiqi Li, Yunbo Zhong, Ying Jiang, Yan Wang
Publikováno v:
Journal of Materials Science & Technology. 89:88-96
Over recent years, eutectic high-entropy alloys (EHEAs) have intrigued substantial research enthusiasms due to their good castability as well as balanced strength–ductility synergy. In this study, a bulk cast Al19.25Co18.86Fe18.36Ni43.53 EHEA is de
Autor:
Zhe Shen, Weili Ren, Peijian Shi, Xue Liang, Pengfei Hu, Yandong Wang, Yuebo Wen, Dierk Raabe, Na Min, Tianxiang Zheng, Yong Zhang, Yi Li, Runguang Li, Yunbo Zhong, Yang Ren, Peter K. Liaw, Jianchao Peng
Publikováno v:
Science. 373:912-918
In human-made malleable materials, microdamage such as cracking usually limits material lifetime. Some biological composites, such as bone, have hierarchical microstructures that tolerate cracks but cannot withstand high elongation. We demonstrate a