CN

汪京

Associate researcher

Supervisor of Doctorate Candidates

Supervisor of Master's Candidates

Date of Birth:1991-04-13

Date of Employment:2021-10-11

School/Department:合肥工业大学

Education Level:With Certificate of Graduation for Doctorate Study

Gender:Male

Degree:Doctoral degree

Status:Employed

Alma Mater:中国科学技术大学

Discipline:Other specialties in Material Science and Engineering
Material Process Engineering
Material Science
Material Physics and Chemistry

Paper Publications

Microstructure and failure mechanism of Y2O3 coating on the W fiber in Wf/W composites during field assisted sintering

Release time:2024-06-03 Hits:

DOI number:10.1016/j.jmrt.2024.05.237

Affiliation of Author(s):材料科学与工程学院

Journal:Journal of Materials Research and Technology

Key Words:Tungsten fiber-reinforced tungsten matrix, composites, Field assisted sintering, Interfacial microstructure, Y2O3 coating, Finite element analysis

Abstract:For tungsten fiber-reinforced tungsten matrix (Wf/W) composites, the interfacial microstructure is essential for the improvement of mechanical properties. The Y2O3 coating deposited on the W fiber has been applied to modify the interface between the W matrix and W fiber. However, the Y2O3 coating on the W fiber is usually fractured and dispersed into the W matrix as large particles after sintering. In this study, the microstructure of the Y2O3 coating on the W fiber in Wf/W composites was studied. And the failure mechanism of Y2O3 interface during field assisted sintering was investigated through finite element analysis (FEA). The reasons for the fracture of the Y2O3 interface can be attributed to the transformation of the Y2O3 coating from cubic to face centered cubic (FCC) crystal structure, the large lattice misfit of 49.0% at the interface, the large difference of the elastic modulus and thermal expansion coefficient between W and FCC-Y2O3. In order to avoid the fracture of Y2O3 interface during sintering, the finite element analysis was used to modify the processing parameters of Wf/W composites, including the sintering temperature, pressure, particle size of W powder and thickness of the Y2O3 coating. And the simulation results were consistent with the experimental results.

Co-author:Y. Chen, X. Han, K.L. Li, Y.F. Zhang, Y.R. Mao, J.W. Coenen, J. Wang, L.M. Luo

First Author:Chang Chen

Indexed by:Journal paper

Correspondence Author:Chang Chen, Shan Wang, Jing Wang

Discipline:工科

Issue:30

Page Number:8661–8670

ISSN No.:2214-0697

Translation or Not:no

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