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Effects of WC-Co reinforced Ni-based alloy by laser melting deposition: Wear resistance and corrosion resistance

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【作者】 黄昭祯张志臣澹台凡亮田洪芳顾振杰郗涛钱铸方艳

【Author】 Zhao-Zhen Huang;Zhi-Chen Zhang;Fan-Liang Tantai;Hong-Fang Tian;Zhen-Jie Gu;Tao Xi;Zhu Qian;Yan Fang;School of Mechanical Engineering, Tiangong University;Shandong Energy Heavy Equipment Group Dazu Remanufacturing Co., Ltd;Laser Technology Institute, Tiangong University;Tianjin Zhujin Technology Development Co., Ltd;

【通讯作者】 张志臣;方艳;

【机构】 School of Mechanical Engineering Tiangong UniversityShandong Energy Heavy Equipment Group Dazu Remanufacturing Co. LtdLaser Technology Institute Tiangong UniversityTianjin Zhujin Technology Development Co. Ltd

【摘要】 WC-Co reinforced C276 alloy composite coatings are fabricated on Q235 steel by laser melting deposition.The microstructure,hardness,wear performance,and electrochemical corrosion behavior of composite coating are studied.The results show that WC-Co particles are mostly uniformly distributed in the coating and provide favorable conditions for heterogeneous nucleation.The microstructure of C276/WC-Co composite coatings is composed of γ-Ni solid solution dendrites and MoNi solid solution eutectics.The WC-Co particles can effectively improve the hardness and wear resistance of C276 alloy.The average hardness of the composite coating containing 10-wt% WC-Co(447 HV0.2) are 1.26 times higher than that of the C276 alloy(356 HV0.2).The wear rate of composite coating containing 10-wt% WC-Co(6.95 ×10-3 mg/m) is just 3.5% of that of C276 coating(196.23 × 10-3 mg/m).However,comparing with Hastelloy C276,the corrosion resistance of C276/WC-Co composite coating decreases.

【Abstract】 WC-Co reinforced C276 alloy composite coatings are fabricated on Q235 steel by laser melting deposition.The microstructure,hardness,wear performance,and electrochemical corrosion behavior of composite coating are studied.The results show that WC-Co particles are mostly uniformly distributed in the coating and provide favorable conditions for heterogeneous nucleation.The microstructure of C276/WC-Co composite coatings is composed of γ-Ni solid solution dendrites and MoNi solid solution eutectics.The WC-Co particles can effectively improve the hardness and wear resistance of C276 alloy.The average hardness of the composite coating containing 10-wt% WC-Co(447 HV0.2) are 1.26 times higher than that of the C276 alloy(356 HV0.2).The wear rate of composite coating containing 10-wt% WC-Co(6.95 ×10-3 mg/m) is just 3.5% of that of C276 coating(196.23 × 10-3 mg/m).However,comparing with Hastelloy C276,the corrosion resistance of C276/WC-Co composite coating decreases.

【基金】 Project supported by the National Key Research and Development Program of China (Grant No. 2017YFB1103604);the Industrial Transformation and Upgrading Funds of the Ministry of Industry and Information Technology,China (Grant No. RZJC-XM19-004);the Tianjin Municipal Special Program of Talents Development for Excellent Youth Scholars,China (Grant No. TJTZJH-QNBJRC-2-15);the National Natural Science Foundation of China (Grant No. 61475117);the Scientific Research Program of Tianjin Municipal Education Commission,China (Grant No. 2018KJ206)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年01期
  • 【分类号】TG174.4
  • 【被引频次】1
  • 【下载频次】33
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