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迷宫密封环覆熔铜及试验检测
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作者 何柳 刘渊 +3 位作者 陈昌尾 黄新源 俞翔栋 解放 《传动技术》 2018年第4期45-48,共4页
某设备的迷宫密封环为钢铜结合的结构,其在运行过程中受到离心力、惯性力、振动力、热应力,钢与铜的接合强度是其关键技术指标。本文成功将熔覆铜技术应用于迷宫密封环,并经过金相、侧弯及疲劳试验,验证了熔覆铜技术的钢、铜结合强度可... 某设备的迷宫密封环为钢铜结合的结构,其在运行过程中受到离心力、惯性力、振动力、热应力,钢与铜的接合强度是其关键技术指标。本文成功将熔覆铜技术应用于迷宫密封环,并经过金相、侧弯及疲劳试验,验证了熔覆铜技术的钢、铜结合强度可以满足设备的使用要求。 展开更多
关键词 迷宫密封环 熔覆铜 侧弯试验 疲劳试验
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内壁熔铜及外壁熔覆的叠加再制造技术应用研究
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作者 刘利云 《中国金属通报》 2020年第12期103-104,共2页
提升现代化制造加工水平,以提高资源的高效和循环利用为核心,以节能、节材、资源综合利用和发展循环经济为重点,利用表面加工工程技术,对油缸内外壁进行熔铜熔覆加工,解决内外壁的抗磨损及耐腐蚀性问题.
关键词 再制造技术 内壁深孔外壁叠加技术 抗磨损及耐腐蚀性
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Effect of Fe content on microstructure and mechanical properties of Cu-Fe-based composite coatings by laser induction hybrid rapid cladding 被引量:1
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作者 Sheng-feng ZHOU Jian-bo LEI +3 位作者 Zheng XIONG Jin-bo GUO Zhen-jie GU Hong-bo PAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第12期3196-3204,共9页
To select the proper composition and obtain an overall material?microstructure?property relationship for Cu?Fe alloy, theeffect of Fe content on microstructure and properties of Cu?Fe-based composite coatings by laser... To select the proper composition and obtain an overall material?microstructure?property relationship for Cu?Fe alloy, theeffect of Fe content on microstructure and properties of Cu?Fe-based composite coatings by laser induction hybrid rapid claddingwas investigated. Microstructure characterization of the composite coatings was tested utilizing SEM, XRD and EDS. Microhardnessmeasurement was executed to evaluate the mechanical properties of the composite coatings. The results show that for low Fe content,the composite coating presents a feature that Fe-rich equiaxed dendrites are embedded in the Cu-rich matrix. With increasing Fecontent, the Fe-rich particles are dispersed in the Cu-rich matrix. With further increasing Fe content, large amounts of Cu-richparticles are homogeneously dispersed in the interdendrite of the Fe-rich matrix. Correspondingly, the average microhardness of thecomposite coatings increases gradually with the increase of Fe content and the microhardness of Cu14.5Fe83Si2C0.5 coating is muchtwice higher than that of the substrate. 展开更多
关键词 composite coating laser induction hybrid rapid cladding Cu.Fe alloy liquid phase separation microstructure mechanical properties
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