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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/25623
Title: Microstructure evolution and strain rate sensitivity of ductile Hf20Nb10Ti35Zr35 medium-entropy alloy after thermal cycling
Authors: Wang, Shing-Hoa 
Liu, Chia-Heng
Yeh, Jien-Wei
Tsao, Tzu-Ching
Li, Chia-Lin
Chang, Horng-Yi 
Yang, Jer-Ren
Hsueh, Chun-Hway
Chang, Liu-Wen
Zheng, Xue-Qian
Lee, Yuan-Tzu
Yang, Ya-Ching
Keywords: Electron backscattering diffraction;Medium-entropy alloy;Precipitate;Misorientation angle;Strain rate sensitivity;Composite phase
Issue Date: 2024
Publisher: ELSEVIER SCIENCE SA
Journal Volume: 1010
Source: JOURNAL OF ALLOYS AND COMPOUNDS
Abstract: 
The medium-entropy alloy Hf20Nb10Ti35Zr35 has a ductile BCC structure in the as-solution-treated state and could be age-hardening with fine precipitates. In this study, the thermal stress produced by thermal cycling was found to accelerate the precipitation of the alpha and the evolution of omega -> alpha phase of Hf20Nb10Ti35Zr35. The alpha"-martensite phase of Hf20Nb10Ti35Zr35 tended to grow in the (001)beta plane with the misorientation angle being concentrated around 52 degrees after 10 thermal cycles. Moreover the misorientation angle tended to have a bimodal distribution after 50 thermal cycles. Nanomechanical testing was performed to measure the strain rate sensitivity (SRS) at room temperature. The result shows that SRS of Hf20Nb10Ti35Zr35 changed from a small positive value of 0.09247 to a small negative one of either- 0.02125 or- 0.0445. This was mainly attributable to the decrease in the volume of the beta phase or the increase of the alpha" + alpha composite phase. This demonstrates that thermal cycling treatment of the present alloy could induce more precipitation of the second phase for hardening and enhance uniform deformation behavior."
URI: http://scholars.ntou.edu.tw/handle/123456789/25623
ISSN: 0925-8388
DOI: 10.1016/j.jallcom.2024.177726
Appears in Collections:機械與機電工程學系
輪機工程學系

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