Synergistic Strengthening And Toughening Of Oscillatory Pressure Sintered Wc-Zro2-Al2o3 Ceramics

24 Pages Posted: 20 Mar 2022

See all articles by Yong Cheng

Yong Cheng

Wuhan University of Science and Technology

Tianbin Zhu

Wuhan University of Science and Technology

Nanjie Sun

Wuhan University of Science and Technology

Yawei Li

Wuhan University of Science and Technology

Zhipeng Xie

Tsinghua University

Ning Liao

Wuhan University of Science and Technology

Shaobai Sang

Wuhan University of Science and Technology

Xiong Liang

Wuhan University of Science and Technology

Jinning Dai

affiliation not provided to SSRN

Abstract

WC-ZrO2-Al2O3  ceramics with high performance were prepared by oscillatory pressure sintering, and their densification behaviour, microstructure and mechanical properties were investigated. The results showed that addition of ZrO2-Al2O3 composite powder can reduce the sintering temperature (from 1900 ℃ to 1760 ℃) and promote densification of the ceramics. When the ZrO2-Al2O3  composite powder content was 8 wt%, it exhibited the best mechanical properties including Vickers hardness of 24.95 GPa, fracture toughness of 7.74 MPa·m 1/2  and flexural strength of 1329 MPa. The main strengthening and toughening mechanisms included the phase transformation of zirconia, crack deflection, crack bridging and the presence of many dislocation defects. Also, the formation of well-matched coherent interfaces of WC/ZrO2 and WC/Al2O3  contributed to a synergistic improvement in strength and toughness of WC-ZrO2-Al2O3  ceramics.

Keywords: WC-ZrO2-Al2O3 ceramics, Oscillatory pressure sintering, Microstructure, Mechanical properties

Suggested Citation

Cheng, Yong and Zhu, Tianbin and Sun, Nanjie and Li, Yawei and Xie, Zhipeng and Liao, Ning and Sang, Shaobai and Liang, Xiong and Dai, Jinning, Synergistic Strengthening And Toughening Of Oscillatory Pressure Sintered Wc-Zro2-Al2o3 Ceramics. Available at SSRN: https://ssrn.com/abstract=4044431 or http://dx.doi.org/10.2139/ssrn.4044431

Yong Cheng

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Tianbin Zhu (Contact Author)

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Nanjie Sun

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Yawei Li

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Zhipeng Xie

Tsinghua University ( email )

Beijing, 100084
China

Ning Liao

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Shaobai Sang

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Xiong Liang

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Jinning Dai

affiliation not provided to SSRN ( email )

No Address Available

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