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In-situ Reaction Sintered TC4-(TiB+TiC) via SLM

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【作者】 范圣龙张金咏

【Author】 FAN Shenglong;ZHANG Jinyong;School of Materials Science and Engineering, Wuhan University of Technology;

【通讯作者】 张金咏;

【机构】 School of Materials Science and Engineering, Wuhan University of Technology

【摘要】 The TC4-(TiB+TiC) composites were fabricated using selective laser melting (SLM) com‐bined with in-situ reaction sintering,and the effects of B4C content variation on the structure and properties of the composites were investigated.The results show that the bending strength reaches its maximum value of2 415.2 MPa when the B4C content is 0.5 wt%,which is 19.13% higher than that of TC4 alloy.When the B4C content is 2 wt%,the compressive strength of the composite reaches a maximum value of 1 698.1 MPa,which is 9.14%higher than that of TC4 alloy.The reaction between B4C and Ti during the SLM process can in-situ form TiB and TiC,which synergistically enhance the mechanical properties of the composites.However,an ex‐cessive amount of ceramic reinforcement will reduce the plasticity of the composites and deteriorate the bending performance.

【Abstract】 The TC4-(TiB+TiC) composites were fabricated using selective laser melting (SLM) com‐bined with in-situ reaction sintering,and the effects of B4C content variation on the structure and properties of the composites were investigated.The results show that the bending strength reaches its maximum value of2 415.2 MPa when the B4C content is 0.5 wt%,which is 19.13% higher than that of TC4 alloy.When the B4C content is 2 wt%,the compressive strength of the composite reaches a maximum value of 1 698.1 MPa,which is 9.14%higher than that of TC4 alloy.The reaction between B4C and Ti during the SLM process can in-situ form TiB and TiC,which synergistically enhance the mechanical properties of the composites.However,an ex‐cessive amount of ceramic reinforcement will reduce the plasticity of the composites and deteriorate the bending performance.

  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2026年03期
  • 【分类号】TB333;TG665
  • 【下载频次】24
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