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Ni-Mo太阳光谱选择性吸收涂层的制备与性能研究 被引量:3
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作者 王辉 程旭东 +2 位作者 万倩 马涛 王涛 《表面技术》 EI CAS CSCD 北大核心 2011年第2期21-25,54,共6页
以自制Ni-Mo团聚型复合粉末为喷涂原料,采用超音速火焰喷涂法制得Ni-Mo太阳光谱选择性吸收涂层,表征了复合粉末和涂层的表面形貌,涂层的组成元素、相组成和光学性能,研究了粉末粒径大小、涂层组分比例和表面处理对涂层选择性吸收性能的... 以自制Ni-Mo团聚型复合粉末为喷涂原料,采用超音速火焰喷涂法制得Ni-Mo太阳光谱选择性吸收涂层,表征了复合粉末和涂层的表面形貌,涂层的组成元素、相组成和光学性能,研究了粉末粒径大小、涂层组分比例和表面处理对涂层选择性吸收性能的影响。结果表明:当所用复合粉末粒径r≤45μm,粉末中Ni,Mo质量比为7∶3时,制备的涂层选择性吸收性能较好,涂层由Ni,Mo和NiO三相组成,其表面为微不平漫射表面;将该涂层研磨处理至其表面粗糙度Ra为2.156μm时,涂层选择性吸收性能较佳,吸收率α为0.84,发射率ε为0.16;再在表面加镀减反层后,α增加至0.92,大幅提高了太阳光利用率。 展开更多
关键词 超音速火焰喷涂 太阳能 选择性吸收 ni-mo涂层
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Viscoplastic friction and microstructural evolution behavior of laser-clad Co-Cr-Ni-Mo coating 被引量:2
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作者 李瑞迪 李京龙 +2 位作者 梁毅 籍成宗 袁铁锤 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第3期681-691,共11页
The viscoplastic friction and nanostructure formation mechanism of laser-clad Co-based coating were studied by rotary friction between laser-clad Co-Cr-Ni-Mo coating and WC-Co rod.The friction coefficient,friction int... The viscoplastic friction and nanostructure formation mechanism of laser-clad Co-based coating were studied by rotary friction between laser-clad Co-Cr-Ni-Mo coating and WC-Co rod.The friction coefficient,friction interface temperature and axial displacement—time curves during rotary friction process were measured.The results showed that all the curves firstly experienced rising stage and then steady stage.The rising stage corresponded to sliding friction while the steady stage corresponded to viscoplastic friction.After viscoplastic friction processing,three typical zones of viscoplastic deformation zone,thermo-mechanically affected zone,and original laser-clad zone can be observed successively from the friction surface to the interior.The viscoplastic deformation significantly crushed the network M23C7 phase in original laser-clad zone and made it dispersively distributed with equiaxial shape and in nano-scale.The viscoplastic zone,in width of 37-131 μm,is mainly characterized by refined M23C7 and α-Co phase with grain size bellow 50 nm,and even a small quantity of amorphous.Thus,the hardness of viscoplastic zone about HV997 was improved compared with the hardness of original laser-clad zone about HV600. 展开更多
关键词 viscoplastic deformation severe plastic deformation laser cladding Co-Cr-ni-mo coating nanostructure rotary friction
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