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TiC-Maraging stainless steel composite: microstructure, mechanical and wear properties
作者姓名:Akhtar  Farid  GUO  Shiju  FENG  Peizhong  Khadijah  Ali  Shah  Syed  Javid  Askari
作者单位:School of Material Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China
摘    要:Particulate TiC reinforced 17-4PH and 465 maraging stainless steel matrix composites were processed by conventional powder metallurgy (P/M). TiC-maraging stainless steel composites with theoretical density 〉97% were produced using conventional P/M. The microstructure, and mechanical and wear properties of the composites were evaluated. The microstructure of the composites consisted of (core-rim structure) spherical and semi-spherical TiC particles depending on the wettability of the matrix with TiC particles. In TiC-maraging stainless steel composites, 465 stainless steel binder phase showed good wettability with TiC particles. Some microcracks appeared in the composites, indicating the presence of tensile stresses in the composites produced during sintering. The typical properties, hardness, and bend strength were reported for the composites. After heat treatment and aging, an increase in hardness was observed. The increase in hardness was at- tributed to the aging reaction in maraging stainless steel. The specific wear behavior of the composites strongly depends on the content of TiC particles and their interparticle spacing, and on the heat treatment of the maraging stainless steel.

关 键 词:TiC马氏体时效钢不锈钢复合材料  微结构  金属学  准球形TiC微粒
收稿时间:2005-10-19

TiC-maraging stainless steel composite: microstructure, mechanical and wear properties
Akhtar Farid GUO Shiju FENG Peizhong Khadijah Ali Shah Syed Javid Askari.TiC-maraging stainless steel composite: microstructure, mechanical and wear properties[J].Rare Metals,2006,25(6):630-635.
Authors:Akhtar Farid  GUO Shiju  FENG Peizhong  Khadijah Ali Shah  Syed Javid Askari
Affiliation:School of Material Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China
Abstract:Particulate TiC reinforced 17-4PH and 465 maraging stainless steel matrix composites were processed by con- ventional powder metallurgy (P/M). TiC-maraging stainless steel composites with theoretical density >97% were produced using conventional P/M. The microstructure, and mechanical and wear properties of the composites were evaluated. The microstructure of the composites consisted of (core-rim structure) spherical and semi-spherical TiC particles depending on the wettability of the matrix with TiC particles. In TiC-maraging stainless steel composites, 465 stainless steel binder phase showed good wettability with TiC particles. Some microcracks appeared in the composites, indicating the presence of ten- sile stresses in the composites produced during sintering. The typical properties, hardness, and bend strength were reported for the composites. After heat treatment and aging, an increase in hardness was observed. The increase in hardness was at- tributed to the aging reaction in maraging stainless steel. The specific wear behavior of the composites strongly depends on the content of TiC particles and their interparticle spacing, and on the heat treatment of the maraging stainless steel.
Keywords:TiC-maraging stainless steel composites  aging  wear  powder metallurgy  microcracks
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