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激光熔覆工艺对镍基碳化钛熔覆层组织的影响 被引量:8
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作者 贺长林 陈少克 周中河 《金属热处理》 CAS CSCD 北大核心 2014年第7期111-116,共6页
通过对激光熔覆镍基碳化钛熔覆层组织的微观形貌和成分分析,研究了激光功率和扫描速度对熔覆层的碳化钛和硬质相碳化物的溶解和析出后的形态的影响。结果表明,使用较低功率或较高的扫描速度时,熔覆层中出现了未熔化的碳化钛,功率较大和... 通过对激光熔覆镍基碳化钛熔覆层组织的微观形貌和成分分析,研究了激光功率和扫描速度对熔覆层的碳化钛和硬质相碳化物的溶解和析出后的形态的影响。结果表明,使用较低功率或较高的扫描速度时,熔覆层中出现了未熔化的碳化钛,功率较大和扫描速度较低时,碳化钛全部以树枝晶的形态从液态镍中析出来。达到一定的功率时,硬质相碳化物是从液态镍中析出的二次相,且当扫描速度较快时,熔覆层还会出现成分不均。 展开更多
关键词 激光熔覆 镍基碳化钛 组织 溶解和析出
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Effects of graphite content on microstructure and tribological properties of graphite/TiC/Ni-base alloy composite coatings 被引量:4
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作者 蔡滨 谭业发 +2 位作者 屠义强 王小龙 徐婷 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第8期1741-1749,共9页
In order to reduce the friction coefficients and further improve the anti-wear properties of Ni-base alloy coatings reinforced by TiC particles,graphite/TiC/Ni-base alloy(GTN) coatings were prepared on the surface o... In order to reduce the friction coefficients and further improve the anti-wear properties of Ni-base alloy coatings reinforced by TiC particles,graphite/TiC/Ni-base alloy(GTN) coatings were prepared on the surface of 45 carbon steel.The effects of graphite content on the microstructure and tribological properties of the GTN coatings were investigated.The results show that the addition of graphite to the GTN coatings may greatly reduce the friction coefficients and improve their wear resistance.The 6.56GTN and 12.71GTN coatings exhibit excellent integrated properties of anti-friction and wear resistance under low and high loads,respectively.Under a low load,the wear mechanisms of the GTN coatings are mainly multi-plastic deformation with slight abrasive wear and gradually change into mixture of multi-plastic deformation,delamination and micro-cutting wear with the increase of graphite fraction.As the load increases,the main wear mechanisms gradually change from micro-cracks,micro-cutting and adhesive wear to micro-cutting and micro-fracture with the increase of graphite fraction. 展开更多
关键词 TIC GRAPHITE Ni-base alloy plasma spray composite coating friction and wear
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