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Microstructures and wear resistance of high boron and low carbon ferroalloy using hybrid powder/wire overlaying method

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【作者】 庄明辉李慕勤王军蔡丁森周智远齐兆禹

【Author】 Zhuang Minghui;Li Muqin;Wang Jun;Cai Dingsen;Zhou Zhiyuan;Qi Zhaoyu;State Key Laboratory of Advanced Welding and Joining,Harbin Institute of Technology;School of Material Science and Engineering,Jiamusi University;

【机构】 State Key Laboratory of Advanced Welding and Joining,Harbin Institute of TechnologySchool of Material Science and Engineering,Jiamusi University

【摘要】 The high boron alloy surfacing layer was easily cracked due to its insufficient toughness by using hybrid powder/wire overlaying method.In order to explore the cracked mechanism,the microstructures and the wear resistance of the samples with different boron contents were studied.Further,phases analysis,microhardness,macrohardness and wear test were also carried out.The boron content depended microstructures were observed.The precipitation of the Fe2B,Fe3(C,B),Fe23(C,B)6 were increased with the increase of boron content.It was found that the wear resistance was independent of the macrohardness as the macrohardness increased firstly and then remained steady at 62 HRC.However,the wear resistance was depended on the boron contents,and which increased with the increase of the boron contents.The abrasive loss mechanism changed from plastic deformation removal to fracture removal.

【Abstract】 The high boron alloy surfacing layer was easily cracked due to its insufficient toughness by using hybrid powder/wire overlaying method.In order to explore the cracked mechanism,the microstructures and the wear resistance of the samples with different boron contents were studied.Further,phases analysis,microhardness,macrohardness and wear test were also carried out.The boron content depended microstructures were observed.The precipitation of the Fe2B,Fe3(C,B),Fe23(C,B)6 were increased with the increase of boron content.It was found that the wear resistance was independent of the macrohardness as the macrohardness increased firstly and then remained steady at 62 HRC.However,the wear resistance was depended on the boron contents,and which increased with the increase of the boron contents.The abrasive loss mechanism changed from plastic deformation removal to fracture removal.

【基金】 supported by the Heilongjiang Province Natural Science Foundation(No.ZD201008);Jiamusi University Scientific Research Project(22Zb201518);State Key Laboratory of Advanced Welding Production Technology Project(AWJ-M13-04)
  • 【文献出处】 China Welding ,中国焊接(英文版) , 编辑部邮箱 ,2016年01期
  • 【分类号】TG174.4
  • 【下载频次】38
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