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激光焊接齿科CoCr-NiCr异种合金组织结构研究
引用本文:李长义,杨贤金,张连云,崔振铎.激光焊接齿科CoCr-NiCr异种合金组织结构研究[J].材料热处理学报,2007,28(1):22-25.
作者姓名:李长义  杨贤金  张连云  崔振铎
作者单位:1. 天津大学材料科学与工程学院,天津,300072;天津医科大学口腔医院,天津,300070
2. 天津大学材料科学与工程学院,天津,300072
3. 天津医科大学口腔医院,天津,300070
摘    要:选用齿科烤瓷用NiCr合金和支架用CoCr合金,利用脉冲Nd-YAG激光,在不同电压下进行焊接,考察焊件力学性能,优选电压条件,研究此条件下焊件熔焊区及其附近区域化学成分、显微组织变化规律.结果表明,适合齿科临床应用焊接电压为280V,此条件下可以得到显微组织致密、细小的熔焊区,熔焊区与两侧母材呈冶金结合,主要成分为Ni元素,以固溶体和化合物形式存在;Co、Cr元素部分溶入固溶体,部分与Mo、Be形成化合物.焊接中冶金过程充分,无新相生成.双向侧吹氩气可以对熔焊区起到良好的保护作用,无氧化物形成.

关 键 词:NiCr合金  CoCr合金  激光焊接  组织结构  激光焊接  齿科  合金组织  结构研究  alloy  laser  microstructure  氧化物  作用  的保护  氩气  侧吹  相生  冶金过程  化合物形式  存在  固溶体  元素  化学成分  冶金结合
文章编号:1009-6264(2007)01-0022-04
修稿时间:2006-01-16

Study of microstructure of laser welded dento-prosthetic CoCr-NiCr alloy
LI Chang-yi,YANG Xian-jin,ZHANG Lian-yun,CUI Zhen-duo.Study of microstructure of laser welded dento-prosthetic CoCr-NiCr alloy[J].Transactions of Materials and Heat Treatment,2007,28(1):22-25.
Authors:LI Chang-yi  YANG Xian-jin  ZHANG Lian-yun  CUI Zhen-duo
Affiliation:1. School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China; 2. Stomatological Hospital, Tianjin Medical University, Tianjin 300070, China
Abstract:NiCr alloy and CoCr alloy for dento-prosthetic operation were welded by a pulse Nd-YAG laser under various voltages to estimate the mechanical performance of the weld and select the best voltage parameters.The chemical composition and microstructure of fusion zone and weld heat affected zone were investigated.The results show that the welding voltage which is suitable to clinic appliance is 280V,and a fine grained microstructure of the fusion zone is observed in this voltage condition.Moreover,the fusion zone and the parent alloy exhibit metallurgical bonding and the major composition Ni exists in solid solution and compound.The element Co and Cr are partly dissolved in solid solution and partly to form compound with Mo and Be.No new phase is examined during welding.Argon used in welding can protect the fusion zone and avoid forming oxide.
Keywords:NiCr alloy  CoCr alloy  laser welding  microstructure
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