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失效轴承套圈显微组织变异原因分析
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作者 赵燕 赵开礼 +1 位作者 张凯胜 徐雷 《轴承》 北大核心 2015年第12期28-31,共4页
通过对大型M50钢制轴承滚道剥落失效的分析,确认滚道次表面存在显微组织变异。对比该轴承到寿件、库存成品套圈和加工锻件的显微组织,并结合锻件的锻造加工工艺过程,确认套圈存在锻造缺陷是导致轴承出现显微组织变异的原因,并采取了改... 通过对大型M50钢制轴承滚道剥落失效的分析,确认滚道次表面存在显微组织变异。对比该轴承到寿件、库存成品套圈和加工锻件的显微组织,并结合锻件的锻造加工工艺过程,确认套圈存在锻造缺陷是导致轴承出现显微组织变异的原因,并采取了改进措施。 展开更多
关键词 滚动轴承 套圈 显微组织变异 锻造缺陷
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Characterization of hot deformation and microstructure evolution of a new metastableβtitanium alloy 被引量:4
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作者 Zhao-qi CHEN Li-juan XU +5 位作者 Shou-zhen CAO Jian-kai YANG Yun-fei ZHENG Shu-long XIAO Jing TIAN Yu-yong CHEN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第5期1513-1529,共17页
The hot deformation characteristics of as-forged Ti−3.5Al−5Mo−6V−3Cr−2Sn−0.5Fe−0.1B−0.1C alloy within a temperature range from 750 to 910℃and a strain rate range from 0.001 to 1 s^(-1) were investigated by hot compre... The hot deformation characteristics of as-forged Ti−3.5Al−5Mo−6V−3Cr−2Sn−0.5Fe−0.1B−0.1C alloy within a temperature range from 750 to 910℃and a strain rate range from 0.001 to 1 s^(-1) were investigated by hot compression tests.The stress−strain curves show that the flow stress decreases with the increase of temperature and the decrease of strain rate.The microstructure is sensitive to deformation parameters.The dynamic recrystallization(DRX)grains appear while the temperature reaches 790℃at a constant strain rate of 0.001 s^(-1) and strain rate is not higher than 0.1 s^(-1) at a constant temperature of 910℃.The work-hardening rateθis calculated and it is found that DRX prefers to happen at high temperature and low strain rate.The constitutive equation and processing map were obtained.The average activation energy of the alloy is 242.78 kJ/mol and there are few unstable regions on the processing map,which indicates excellent hot workability.At the strain rate of 0.1 s^(-1),the stress−strain curves show an abnormal shape where there are two stress peaks simultaneously.This can be attributed to the alternation of hardening effect,which results from the continuous dynamic recrystallization(CDRX)and the rotation of DRX grains,and dynamic softening mechanism. 展开更多
关键词 metastableβtitanium alloy hot deformation behavior microstructure evolution abnormal flow behavior
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