宫文彪

个人信息Personal Information

教授

博士生导师

硕士生导师

教师拼音名称:gongwenbiao

出生日期:1966-03-01

电子邮箱:

入职时间:1993-03-30

所在单位:长春工业大学

学历:研究生(博士后)

办公地点:长春工业大学南湖校区材料楼206室;北湖校区材料楼520室

性别:男

联系方式:手机:13039121862 邮箱:gwbiao@163.com gwbiao@ccut.edu.cn

学位:博士学位

在职信息:在职

其他任职:中国焊接学会会员;吉林省焊接学会理事

毕业院校:吉林大学

学科:材料加工工程

论文成果

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Effect of microstructure on mechanical properties of FeCoNiCrAl high entropy alloys particle reinforced Cu matrix surface composite prepared by FSP

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所属单位:材料科学工程学院

教研室:材料科学工程学院

发表刊物:Journal of Materials Research and Technology

项目来源:其他课题

关键字:High-entropy alloy; Cu-matrix composites; Friction stri processing; Mechanical properties

摘要:In this paper, FeCoNiCrAl high-entropy alloy particles were used as reinforcement to fabricate Cu matrix surface composites by friction stirring processing. The x-ray diffraction (XRD), field emission scanning electron microscopy (FESEM) with energy dispersive X-ray spectroscopy (EDS), and electron backscattered diffraction (EBSD) were used to characterize the microstructure and phase composition of the composites.The microhardness tester and universal testing machine were also used to investigate the mechanical properties of the composites. The results demonstrated that the FSP and the adding of HEA particles greatly reduced the average grain size of the composites and increased the percentage of high-angle grain boundaries. A diffusion layer of AlCoCrFeNiCux solid solution with a single face-centered cubic structure was formed between the HEA particles and the Cu matrix. The thickness of the diffusion layer was about 0.9μm. The microhardness, tensile strength and elongation of the prepared composite increased by 54.86%, 17.17% and 8.4% respectively in comparison to the base Cu. The fracture morphology showed that most of the fracture locations occurred at the junction of diffusion layer and HEA particle, and a small number of fracture locations occurred at HEA particle, which ensured the joint enhancement of plasticity and strength of the composite. The fracture mode of Cu matrix in the composite was mainly ductile fracture. The fracture pattern at the HEA/Cu interface was mainly brittle fracture, accompanied by a small amount of ductile fracture.

合写作者:李于朋,李于朋

第一作者:宫文彪

论文类型:期刊论文

卷号:27

页面范围:1

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发表时间:2023-10-15