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Cu-P基非晶钎料钎焊机理
引用本文:邹家生,王超,许祥平,王磊. Cu-P基非晶钎料钎焊机理[J]. 焊接学报, 2011, 32(12): 33-36
作者姓名:邹家生  王超  许祥平  王磊
作者单位:江苏科技大学先进焊接技术省级重点实验室,镇江,212003
基金项目:江苏省自然科学基金资助项目
摘    要:采用CuP7.7Sn5.4Nil4Si0.2Zr0.04晶态与非晶钎料钎焊紫铜,通过微观手段对比分析了钎焊温度和保温时间对晶态与非晶态钎料钎焊接头成分和组织的影响.结果表明,CuP7.7Sn5.4Nil4Si0.2Zr0.04非晶钎料钎焊接头由界面区、扩散区以及钎缝中心区组成;随钎焊温度提高或保温时间增加,晶态钎料和非...

关 键 词:Cu-P基钎料  非晶钎料  微观组织  钎焊机理
收稿时间:2010-09-21

Bonding mechanism of brazing of amorphous Cu-P filler metal
ZOU Jiasheng,WANG Chao,XU Xiangping and WANG Lei. Bonding mechanism of brazing of amorphous Cu-P filler metal[J]. Transactions of The China Welding Institution, 2011, 32(12): 33-36
Authors:ZOU Jiasheng  WANG Chao  XU Xiangping  WANG Lei
Affiliation:Provincial Key Lab of Advanced Welding Technology, Jiangsu University of Science and Technology, Zhenjiang 212003, China,Provincial Key Lab of Advanced Welding Technology, Jiangsu University of Science and Technology, Zhenjiang 212003, China,Provincial Key Lab of Advanced Welding Technology, Jiangsu University of Science and Technology, Zhenjiang 212003, China and Provincial Key Lab of Advanced Welding Technology, Jiangsu University of Science and Technology, Zhenjiang 212003, China
Abstract:The copper joints were brazed with CuP 7.7 Sn5.4Ni14Si0.2Zr0.04 amorphous filler metal conventional filler metal respectively. The effect of the brazing temperature and time on the crystalline composition and microstructure of joints brazed with the amorphous brazing filler metal were compared and analyzed by micro-method. The results showed that the joints brazed with CuP7.7Sn5.4Ni14Si0.2Zr0.04 amorphous brazing filler metal consist of centre zone, interface area and diffusion zone. With the increase of brazing temperature and brazing holding time, the interface area brazed with both amorphous and conventional filler metal increases, and the microstructures of base metal and brazinrg seam centre zone would be coarsed. Excessively high brazing temperature or long brazing holding time will produce brittle phase, but this effect on amorphous filler metals is much smaller. Under the same conditions, amorphous filler metals interact with the base metal much more intensely than the corresponding conventional filler metals. The microstructure in interface area and centre zone of amorphous brazing seam are evidently uniform and small.
Keywords:Cu-P based filler metal  amorphous filler metal  microstructure  brazing mechanism
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