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兩種不同熱處理工藝下亞穩(wěn)β鈦合金Ti-6Mo-5V-3Al-2Fe-2Zr的低周疲勞行為
作者:
作者單位:

1.沈陽工業(yè)大學(xué);2.西北有色金屬研究院;3.遼寧北方精密設(shè)備有限公司沈陽分公司

作者簡介:

通訊作者:

中圖分類號:

TG146.2+3;TG166.5

基金項(xiàng)目:

國家自然科學(xué)基金項(xiàng)目(52104379, U21A20117);遼寧省教育廳青年科技人才“育苗”項(xiàng)目(LQGD2020012);遼寧省“揭榜掛帥”科技攻關(guān)項(xiàng)目(2021JH1/10400069)


LCF behavior of a metastable β titanium alloy Ti-6Mo-5V-3Al-2Fe-2Zr with two kinds of heat treatment
Author:
Affiliation:

1.Shenyang University of Technology;2.Northwest Institute for Nonferrous Metal Research;3.Liaoning North Precision Equipment CoLtShenyang Branch

Fund Project:

the National Natural Science Foundation of China under Grant (52104379, U21A20117); and

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    摘要:

    本文研究了固溶+等溫時效及固溶+隨爐冷卻兩種不同熱處理工藝下Ti-6Mo-5V-3Al-2Fe-2Zr合金的低周疲勞行為。結(jié)果顯示:固溶+等溫時效處理后的到的M1合金顯微組織中含有短棒狀的晶內(nèi)α相以及連續(xù)晶界α相;固溶+隨爐冷卻處理后得到的M2合金顯微組織中含有細(xì)長針狀的晶內(nèi)α相、連續(xù)晶界α相以及WGB α相。在0.6%、0.7%和0.8%的較低應(yīng)變幅下M1合金和M2合金均呈現(xiàn)出循環(huán)穩(wěn)定的現(xiàn)象,晶內(nèi)α相間距較小的M2合金呈現(xiàn)出較高的應(yīng)力幅值;在1.0%的較高應(yīng)變幅下,由于背應(yīng)力和摩擦應(yīng)力的競爭機(jī)制,導(dǎo)致M1合金和M2合金均呈現(xiàn)循環(huán)軟化現(xiàn)象。在0.9%和1.0%的較高應(yīng)變幅下M2合金的背應(yīng)力硬化速率相對較小,其循環(huán)軟化現(xiàn)象更加明顯,其應(yīng)力幅值相對較低。M2合金的晶內(nèi)α相將基體分割為若干“封閉單元”且β晶界處形成了向晶內(nèi)平行生長的WGB α相,導(dǎo)致其低周疲勞壽命均低于M1合金。

    Abstract:

    In this paper, the low-cycle fatigue behavior of Ti-6Mo-5V-3Al-2Fe-2Zr alloy under two different heat treatment processes of solution + isothermal aging and solution + furnace cooling was studied. The results show that the microstructure of M1 alloy after solution + isothermal aging treatment contains short rod-like intracrystalline α phase and continuous grain boundary α phase, The microstructure of M2 alloy obtained after solid solution + furnace cooling treatment contains elongated acicular intragranular α phase, continuous grain boundary α phase and WGB α phase. M1 and M2 alloys exhibit cyclic stability at low strain amplitudes of 0.6 %, 0.7 % and 0.8 %, and M2 alloys exhibit higher stress amplitudes with smaller intracrystalline α phase spacing. At a high strain amplitude of 1.0 %, due to the competitive mechanism of back stress and friction stress, both M1 and M2 alloys exhibit cyclic softening. Under high strain amplitudes of 0.9 % and 1.0 %, the back stress hardening rate of M2 alloy is relatively small, the cyclic softening phenomenon is more obvious, and the stress amplitude is relatively low. The intracrystalline α phase of M2 alloy divides the matrix into several " closed units " and forms a WGB α phase parallel to the intracrystalline at the β grain boundary, resulting in lower low cycle fatigue life than M1 alloy.

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引用本文

劉知多,張浩宇,周舸,程軍,張興君,陳立佳.兩種不同熱處理工藝下亞穩(wěn)β鈦合金Ti-6Mo-5V-3Al-2Fe-2Zr的低周疲勞行為[J].稀有金屬材料與工程,2023,52(2):658~666.[LiuZhiduo, Zhang Haoyu, Cheng Jun, Zhou Ge, Zhang Xingjun, Chen Lijia. LCF behavior of a metastable β titanium alloy Ti-6Mo-5V-3Al-2Fe-2Zr with two kinds of heat treatment[J]. Rare Metal Materials and Engineering,2023,52(2):658~666.]
DOI:10.12442/j. issn.1002-185X.20220056

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  • 收稿日期:2022-01-19
  • 最后修改日期:2022-03-09
  • 錄用日期:2022-03-28
  • 在線發(fā)布日期: 2023-03-09
  • 出版日期: 2023-02-28