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Study and Selection of the Most Appropriate Filler Materials for an Al/Cu Brazing Joint in Cooling Circuits

机译:冷却回路中铝/铜钎焊接头最合适的填充材料的研究与选择

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Five dissimilar commercial filler alloys with four fluxes were used in the aluminum to copper diffusion brazing process. The filler metal alloys composition comprised A1SU2, ZnAl 96/04, ZnAl 98/02, A1SU2 + ZnAl 98/02, and AlSil2 + ZnAl 85/15 alloys. The use of these filler alloys on the assembly of piping for cooling circuits has been analyzed. Brazing aluminum to copper is difficult, principally due to the substantial differences between their thermal properties and the generation of intermetallic compounds in the joint, especially when certain mechanical strength of the joint is needed. Pipes of Al 1350 and Sf-Cu R220 were brazed using five brazing alloys, and the section of the joint was analyzed after polishing and etching. Microhardness tests were also carried out. Furthermore, the microstructure and phase constitution for the copper to aluminum brazing were exhaustively studied by means of metallography, electron probe microanalyzer (EPMA), and X-ray diffraction (XRD). The experiment results obtained indicated that the ZnAl 96/04 filler alloy represents the optimum solution due to the low microhardness, homogeneous microstructure and lack of defects (pores and cracks) shown.
机译:在铝到铜的扩散钎焊过程中,使用了五种具有四种助熔剂的商业填料合金。填充金属合金组合物包含AlS2,ZnAl 96/04,ZnAl 98/02,AlSU2 + ZnAl 98/02和AlSil2 + ZnAl 85/15合金。分析了这些填充合金在冷却回路管道组件中的使用。将铝钎焊到铜上很困难,这主要是由于铝的热性能和接头中金属间化合物的产生之间存在很大差异,尤其是在需要接头的某些机械强度时。用五种钎焊合金对Al 1350和Sf-Cu R220的管子进行钎焊,并在抛光和蚀刻后分析接头的截面。还进行了显微硬度测试。此外,通过金相,电子探针显微分析仪(EPMA)和X射线衍射(XRD)详尽地研究了铜铝钎焊的微观结构和相组成。获得的实验结果表明,ZnAl 96/04填充合金由于具有较低的显微硬度,均匀的显微组织和所显示的缺陷(孔和裂纹)而成为了最佳解决方案。

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