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激光功率对Fe基合金重熔热喷焊层组织和耐磨性的影响
引用本文:洪永昌,单军战.激光功率对Fe基合金重熔热喷焊层组织和耐磨性的影响[J].过程工程学报,2013,13(3):536-540.
作者姓名:洪永昌  单军战
作者单位:安徽工业大学材料科学与工程学院 安徽工业大学材料科学与工程学院
摘    要:利用金相显微镜和X射线衍射仪等分析手段,研究了Fe基合金热喷焊层在其他工艺参数相同的条件下,经不同激光功率重熔处理后组织结构的变化,并对其硬度和耐磨性进行了测定比较. 结果表明,Fe基合金热喷焊层的组织较粗大,经不同激光功率重熔处理后有不同程度的细化,激光功率越小,重熔热喷焊层组织越细小. Fe基合金重熔热喷焊层组织主要由g-(Fe,Ni)固溶体基体相和Cr7C3, Cr23C6及Cr2B等强化相组成,硬度和耐磨性较原始热喷焊层均有较大幅度提高,激光功率越大硬度和耐磨性越好,硬度提高约16%,耐磨性提高约55%.

关 键 词:Fe基合金  热喷焊层  激光重熔  组织  耐磨性  
收稿时间:2013-3-18
修稿时间:2013-5-8

Effect of Laser Power on Microstructure and Wear Resistance of Fe-based Remelted Hot Sprayed-welding Layer
HONG Yong-chang, SHAN Jun-zhan.Effect of Laser Power on Microstructure and Wear Resistance of Fe-based Remelted Hot Sprayed-welding Layer[J].Chinese Journal of Process Engineering,2013,13(3):536-540.
Authors:HONG Yong-chang  SHAN Jun-zhan
Affiliation:School of Material Science & Engineering,Anhui University of Technology School of Material Science & Engineering,Anhui University of Technology
Abstract:Microstructure change of Fe-based hot spray-welding layers remelted by different laser power under same process conditions was studied by optical microscope and XRD. The results show that the microstructure of Fe-based hot sprayed-welding layer is coarse. After laser remelting at different laser powers, the microstructure of hot sprayed-welding layers is refined to some extent. By comparison, the quicker the laser power, the finer the microstructure of remelted sprayed-welding layers. The microstructure of Fe-based remelted hot sprayed-welding layer is composed of matrix phase of g-(Fe,Ni) solid solution and precipitate phases of Cr7C3, Cr23C6 and Cr2B, etc. Hardness and wear resistance of hot sprayed-welding layers are improved greatly after laser remelting at different laser powers, and the higher the laser power, the more prefect the remelted sprayed-welding layers become. The hardness and wear resistance are increased almost by 16% and 55% respectively compared with unremelted hot sprayed-welding layer.
Keywords:Fe-based alloy  hot sprayed-welding layer  laser remelting  microstructure  wear resistance  
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