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MICROSTRUCTURE AND MECHANICAL PROPERTIES OF P/M Co-Cr-W-C ALLOY 被引量:2
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作者 傅祖明 宋科匠 《Chinese Science Bulletin》 SCIE EI CAS 1989年第9期784-787,共4页
关键词 co-cr-w-c ALLOY IS a widely USED wear and corrosion-resistant material with high cr w c content and IS usually USED as a hard deposit FAcING layer with ascast microstructure.
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Corrosive-wear and Electrochemical Performance of Laser Thermal Sprayed Co30Cr8W1.6C3Ni1.4Si Coating on Ti6Al4V Alloy 被引量:2
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作者 XU Jianyan KONG Dejun 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第4期812-819,共8页
Co30Cr8W1.6C3Ni1.4Si coatings were fabricated on Ti6Al4V alloy using a laser thermal spraying(LTS).The surface and cross-section morphologies,phases and bonding strength of obtained coatings were investigated using sc... Co30Cr8W1.6C3Ni1.4Si coatings were fabricated on Ti6Al4V alloy using a laser thermal spraying(LTS).The surface and cross-section morphologies,phases and bonding strength of obtained coatings were investigated using scanning electronic microscopy(SEM),X-ray diffraction(XRD),and scratch test,respectively.The effects of laser power on the coefficients of friction(COFs)and corrosive-wear behaviors of Co30Cr8W1.6C3Ni1.4Si coatings were investigated using a wear tester in 3.5%NaCl solution,and the electrochemical corrosion performance was analyzed using an electrochemical workstation.The experimental results show that the Co30Cr8W1.6C3Ni1.4Si coating is bonded with the substrate in the metallurgical form,and the bonding strengths of Co30Cr8W1.6C3Ni1.4Si coatings fabricated at the laser power of 1000,1200,and 1400 W are 76.5,56.5,and 55.6 N,respectively.The average COFs of Co30Cr8W1.6C3Ni1.4Si coatings fabricated at the laser power of 1000,1200,and 1400 W are 0.769,0.893,and 0.941,respectively;and the corresponding wear rates are 0.267×105,0.3178×105,and 0.325×105μm3/Nm,respectively,which increases with the increase of laser power,the wear mechanism is primarily abrasive wear.The corrosion potential of Co30Cr8W1.6C3Ni1.4Si coatings fabricated at the laser power of 1000,1200,and 1400 W is-0.05,-0.25,and-0.31 V,respectively,higher than-0.45 V of substrate which enhances the electrochemical corrosion resistance of substrate. 展开更多
关键词 laser thermal spraying(LTS) laser power co30cr8w1.6c3Ni1.4Si coating corrosive wear electrochemical corrosion
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激光热喷涂Co_(30)Cr_(8)W_(1.6)C_(3)Ni_(1.4)Si涂层在PAO+2.5%MoDTC油中摩擦学特性
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作者 徐健晏 孔德军 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2021年第5期1542-1548,共7页
为了提高TC4合金的耐磨性能,采用激光热喷涂技术在其表面制备了Co_(30)Cr_(8)W_(1.6)C_(3)Ni_(1.4)Si涂层。通过扫描电子显微镜(SEM)和X射线衍射(XRD)分析了涂层的形貌和物相,并通过摩擦磨损实验研究了涂层在PAO+2.5%Mo DTC(质量分数)... 为了提高TC4合金的耐磨性能,采用激光热喷涂技术在其表面制备了Co_(30)Cr_(8)W_(1.6)C_(3)Ni_(1.4)Si涂层。通过扫描电子显微镜(SEM)和X射线衍射(XRD)分析了涂层的形貌和物相,并通过摩擦磨损实验研究了涂层在PAO+2.5%Mo DTC(质量分数)油中的磨损行为。结果表明,激光热喷涂的Co_(30)Cr_(8)W_(1.6)C_(3)Ni_(1.4)Si涂层主要由Ti、WC_(1-x)、Co O、Co_(2)Ti_(4)O和Co Al相组成,在涂层界面形成冶金结合。在激光功率为1000、1200和1400 W时所制备的涂层平均摩擦因数分别为0.151、0.120和0.171,其对应的磨损率分别为1.17×10^(-6)、1.33×10^(-6)和2.80×10^(-6)mm^(3)·N^(-1)·m^(-1),磨损机理为磨粒磨损,其枝晶尺寸对降磨起主要作用。 展开更多
关键词 激光热喷涂 co30cr8w1.6c3Ni1.4Si涂层 PAO+2.5%MoDTc 摩擦因数 磨损机理
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