详细信息
钛合金激光熔覆镁钴异种合金金属研究
Study on Laser Cladding Magnesium-Cobalt Dissimilar Alloy Metals in Titanium Alloy
文献类型:期刊文献
中文题名:钛合金激光熔覆镁钴异种合金金属研究
英文题名:Study on Laser Cladding Magnesium-Cobalt Dissimilar Alloy Metals in Titanium Alloy
作者:谢玉萍[1];师文庆[1];黄江[1];安芬菊[2];赖学辉[1];李永强[1]
机构:[1]广东海洋大学电子与信息工程学院,广东湛江,524088;[2]广东海洋大学机械与动力工程学院,广东湛江,524088
年份:2019
卷号:39
期号:3
起止页码:365
中文期刊名:应用激光
外文期刊名:Applied Laser
收录:CSTPCD、、北大核心2017、Scopus、CSCD_E2019_2020、北大核心、CSCD
基金:广东海洋大学创新强校工程项目(项目编号:GDOU2017052504);广东海洋大学优秀青年骨干教师项目(项目编号:HDYQ2017005);广东海洋大学南海青年学者项目(项目编号:NHXZ2018002);广东海洋大学大学生创新创业项目(项目编号:CXXL2018177);广东海洋大学创新团队项目(项目编号:CCTD201823)
语种:中文
中文关键词:钛合金;激光熔覆;镁合金;钴合金;元素分析
外文关键词:Titanium alloy;laser cladding;magnesium alloy;cobalt alloy;elemental analysis
中文摘要:通过在钛合金表面激光熔覆镁钴合金,从而解决钛合金在航天航空领域中材料表面磨损以及材料减震性能不足等问题。分别对激光功率以及镁钴混合比例进行对比实验,并对实验结果进行检测分析。实验结果表明,激光功率为235.2 W,镁钴混合比例为1∶300时,熔覆效果最为理想。对该条件下的实验样品进行电镜扫描表征和EDS元素分析谱图可知,钛合金在进行激光熔覆后,基体中的Ti元素和熔覆层中的Co、Mg元素相互渗透,且元素在基体和熔覆层中均匀分布。进一步检测结果表明,熔覆材料完全熔覆到基体表面,熔覆层中的Co和Mg元素浓度都得到了一定程度的提升。
外文摘要:By laser cladding magnesium-cobalt alloy on the surface of titanium alloy, the problems of wear on the surface of titanium alloy material and insufficient damping performance of the material in the aerospace field are solved. The laser power and magnesium-cobalt mixture ratio were compared and the experimental results were analyzed. The experimental results show that when the laser power is 235.2 w and the mixing ratio of magnesium and cobalt is 1∶300, the cladding effect is the best. The experimental samples under these conditions were characterized by scanning electron microscopy and eds elemental spectrum analysis. the results showed that ti elements in the matrix and co and mg elements in the cladding layer infiltrated each other after laser cladding, and the elements were evenly distributed in the matrix and cladding layer. The further test results show that the co and mg concentrations in the cladding layer have been increased to a certain extent by completely cladding the cladding material onto the surface of the substrate.
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