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Study on the subsonic speed flame spraying coating of hydroxyapatite

Study on the subsonic speed flame spraying coating of hydroxyapatite
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摘要 A new method of preparation of biomaterial composite coating by the techniqueof subsonic thermal spraying was discussed in this paper. Ti_6Al_4V and pure Ti were chosen assubstrate and sublayer material respectively and the working layer was sprayed with biomaterialhydroxyapatite (HAP), forming the composite coating. The experiments of heat shock and tensilestrength showed that the bonding strength between coating and substrate is almost as same as that ofspecimen in which Ni/Al powder was adopted as sublayer. The phases of TiN, TiO_2, and Ti_2O_3 wereformed in the sublayer, which are free of toxic and have no side effects. The powder of workinglayer HAP was decomposed partly during spraying, but it can be solved by later treatment. A new method of preparation of biomaterial composite coating by the techniqueof subsonic thermal spraying was discussed in this paper. Ti_6Al_4V and pure Ti were chosen assubstrate and sublayer material respectively and the working layer was sprayed with biomaterialhydroxyapatite (HAP), forming the composite coating. The experiments of heat shock and tensilestrength showed that the bonding strength between coating and substrate is almost as same as that ofspecimen in which Ni/Al powder was adopted as sublayer. The phases of TiN, TiO_2, and Ti_2O_3 wereformed in the sublayer, which are free of toxic and have no side effects. The powder of workinglayer HAP was decomposed partly during spraying, but it can be solved by later treatment.
出处 《Rare Metals》 SCIE EI CAS CSCD 2003年第2期116-120,共5页 稀有金属(英文版)
基金 This project is financially supported by the Natural Science Foundation ofHeilongjiang Province (No. E0232)
关键词 metal matrix composites bio-ceramics subsonic speed flame spraying hydroxyapatite coating metal matrix composites bio-ceramics subsonic speed flame spraying hydroxyapatite coating
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