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應變比對復合細化超細晶純鈦低周疲勞行為的影響
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西安建筑科技大學

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國家自然科學基金項目(51474170);陜西省自然科學基金(2016JQ5026),


Effect of Strain Ratio on Low Cycle Fatigue Behavior of Ultra-fine Grained Titanium
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Xi’an University of Architecture and Technology

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    摘要:

    采用等徑通道彎曲擠壓(Equal Channel Angular Pressing, ECAP)+旋鍛(Rotary Swaging, RS)技術制備超細晶純鈦,細化后晶粒尺寸達到納米級。在室溫下對超細晶純鈦實施應變比分別為-1、-0.5、0.5的應變控制低周疲勞試驗,通過TEM對微觀組織觀察。研究了應變比對材料循環(huán)硬化軟化特性、循環(huán)應力應變關系及疲勞壽命的影響。研究結果表明,應變比增大使得超細晶純鈦循環(huán)硬化現(xiàn)象更為顯著,應變比越大超細晶純鈦低周疲勞壽命越低。低周疲勞高應變比情況下亞晶晶粒尺寸小,數量多,阻礙位錯運動,使得材料發(fā)生循環(huán)硬化。

    Abstract:

    Ultra-fine grained (UFG) pure titanium was prepared by equal channel angular pressing (ECAP) and rotary swaging (RS). Low cycle fatigue tests with strain ratios of - 1, - 0.5 and 0.5 for titanium were carried out at room temperature. Microstructure was observed by TEM after the fatigue test. The effects of strain ratio on cyclic hardening and softening properties, cyclic stress-strain relationship and fatigue life of materials were studied. The results show that the cyclic hardening of UFG pure titanium is more obvious with the increase of strain ratio; Low cycle fatigue life of ultra-fine grained pure titanium decreases with increasing strain ratio; Microstructure observation shows that under high strain ratio, the subgrain size is small and the number of subgrains is large, which hinders the movement of dislocations and leads to cyclic hardening.

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楊西榮,楊雨欣,劉曉燕,羅雷,丁凱倫,雷漫江,柳奎君.應變比對復合細化超細晶純鈦低周疲勞行為的影響[J].稀有金屬材料與工程,2020,49(9):3136~3142.[Xi-rong Yang, Yu-xin Yang, Xiao-yan Liu, Lei Luo, Kai-lun Ding, Man-Jiang Lei, Kui-jun Liu. Effect of Strain Ratio on Low Cycle Fatigue Behavior of Ultra-fine Grained Titanium[J]. Rare Metal Materials and Engineering,2020,49(9):3136~3142.]
DOI:10.12442/j. issn.1002-185X.20190668

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  • 收稿日期:2019-08-15
  • 最后修改日期:2019-08-22
  • 錄用日期:2019-09-06
  • 在線發(fā)布日期: 2020-10-15
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