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Role of Co Content on Densification and Microstructure of WC–Co Cemented Carbides Prepared by Selective Laser Melting
作者姓名:Jinyang Liu  Jian Chen  Li Zhou  Bingyao Liu  Yang Lu  Shanghua Wu  Xin Deng  Zhongliang Lu  Zhipeng Xie  Wei Liu  Jianye Liu  Zhi Qu
作者单位:School of Electromechanical Engineering,Guangdong University of Technology,Guangzhou 510006,China;School of Electromechanical Engineering,Guangdong University of Technology,Guangzhou 510006,China;School of Electromechanical Engineering,Guangdong Polytechnic Normal University,Guangzhou 510635,China;Master Group (Guangdong) Technology Research Co,Ltd,Yunfu 527400,China;School of Electromechanical Engineering,Guangdong Polytechnic Normal University,Guangzhou 510635,China;Master Group (Guangdong) Technology Research Co,Ltd,Yunfu 527400,China;State Key Laboratory for Manufacturing Systems Engineering,Xi'an Jiaotong University,Xi'an 710049,China;Guangdong Xi'an Jiaotong University Academy,Foshan 528300,China;State Key Laboratory of New Ceramics and Fine Processing,Tsinghua University,Beijing 100091,China;Guangdong Hanbang 3D Technology Co.,Ltd,Zhongshan 528427,China;Guangdong Fenghua Zhuoli Technology Co.,Ltd,Foshan 528225,China
摘    要:WC–Co cemented carbides, well-known as the conventional tooling materials, have not been successfully produced by one step additive manufacturing processes such as selective laser melting(SLM) yet. The microstructure evolution as well as WC grain growth behavior has rarely been investigated in detail during SLM process. In this study, the WC–Co cemented carbides with different Co contents(12–32 wt%) were prepared by optimized SLM processes for comparative investigation of densification behavior, microstructure characterization and mechanical property. The increase in Co content in feedstock carbide granules can improve the densification behavior during SLM process. The SLM processed WC-12 Co shows larger average WC grain size and higher percentage of coarser WC grains as compared with both WC-20 Co and WC-32 Co. The microstructure characterization, combined with finite element simulation, shows the WC grain growth mechanisms include agglomeration and dissolution-deposition of WC during SLM process and agglomeration of WC is an important mechanism especially for WC–Co cemented carbides with Co content as low as 12 wt%. The comparison between horizontal(perpendicular to the SLM laser beam) and vertical(parallel to the SLM laser beam) cross sections of carbides shows that SLM process introduces a certain degree of microstructure and mechanical behavior anisotropy for WC-12 Co, WC-20 Co, and WC-32 Co.


Role of Co Content on Densification and Microstructure of WC-Co Cemented Carbides Prepared by Selective Laser Melting
Jinyang Liu,Jian Chen,Li Zhou,Bingyao Liu,Yang Lu,Shanghua Wu,Xin Deng,Zhongliang Lu,Zhipeng Xie,Wei Liu,Jianye Liu,Zhi Qu.Role of Co Content on Densification and Microstructure of WC-Co Cemented Carbides Prepared by Selective Laser Melting[J].Acta Metallurgica Sinica(English Letters),2021,34(9):1245-1254.
Authors:Jinyang Liu  Jian Chen  Li Zhou  Bingyao Liu  Yang Lu  Shanghua Wu  Xin Deng  Zhongliang Lu  Zhipeng Xie  Wei Liu  Jianye Liu  Zhi Qu
Abstract:WC-Co cemented carbides,well-known as the conventional tooling materials,have not been successfully produced by one step additive manufacturing processes such as selective laser melting (SLM) yet.The microstructure evolution as well as WC grain growth behavior has rarely been investigated in detail during SLM process.In this study,the WC-Co cemented carbides with different Co contents (12-32 wt%) were prepared by optimized SLM processes for comparative investigation of densification behavior,microstructure characterization and mechanical property.The increase in Cocontent in feedstock carbide granules can improve the densification behavior during SLM process.The SLM processed WC-12Co shows larger average WC grain size and higher percentage of coarser WC grains as compared with both WC-20Co and WC-32Co.The microstructure characterization,combined with finite element simulation,shows the WC grain growth mechanisms include agglomeration and dissolution-deposition of WC during SLM process and agglomeration of WC is an important mechanism especially for WC-Co cemented carbides with Co content as low as 12 wt%.The comparison between horizontal (perpendicu-lar to the SLM laser beam) and vertical (parallel to the SLM laser beam) cross sections of carbides shows that SLM process introduces a certain degree of microstructure and mechanical behavior anisotropy for WC-12Co,WC-20Co,and WC-32Co.
Keywords:Cemented carbides  Selective laser melting  Microstructure  Densification behavior  Finite element simulation
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