魏青松

个人信息

Personal information

教授     博士生导师     硕士生导师

性别:男

在职信息:在职

所在单位:材料科学与工程学院

学历:研究生(博士)毕业

学位:博士学位

毕业院校:华中科技大学

学科:材料加工工程
学术荣誉:
2016    华中学者
曾获荣誉:
2017    华中科技大学学术前沿青年团队负责人
2017    黄鹤英才“专项”计划
2016    江苏省双创人才
2016    华中科技大学师德三育人奖

Effect of Cr, Mo, and V elements on the microstructure and thermal fatigue properties of the chromium hot-work steels processed by selective laser melting
发布时间:2022-09-13  点击次数:

论文类型:期刊论文
发表刊物:Metals
收录刊物:SCI
学科门类:工学
文献类型:J
卷号:12
期号:5
关键字:selective laser melting (SLM); chromium hot-work steels; alloying elements; high-temperature properties; thermal fatigue
DOI码:10.3390/met12050735
发表时间:2022-04-26
影响因子:2.695
摘要:Thermal fatigue is the main failure mode for chromium hot-work steels. In this study, pre-alloyed chromium hot-work steel powders with three different Cr, Mo, and V addition levels (low content (LH), medium content (MH), and high content (HH)) were used for selective laser melting (SLM). The microstructure and thermal fatigue properties of these SLM-processed materials were investigated. After thermal fatigue tests, LH possessed the lowest hardness (approximately 573 HV5) and longest crack length, MH possessed the highest hardness (approximately 688 HV5) and HH (with the hardness of approximately 675 HV5) possessed the shortest crack length. It can be concluded that the increase of V content in MH is the main reason for the refined grains which result in an enhanced hardness and thermal fatigue resistance compared to LH. The further increase of the Cr and Mo content in HH leads to the grain coarsening and hardness decreasing, which is supposed to degrade the thermal fatigue resistant properties according to the conventional theory. However, HH exhibited an enhanced thermal fatigue resistance compared to MH. That is because the higher stored energy in MH deteriorated its thermal fatigue resistance compared to HH.
发布期刊链接:https://www.mdpi.com/2075-4701/12/5/735/htm