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The effect of processing variables on the microstructures and properties of aluminum brazed joints

机译:工艺变量对铝钎焊接头组织和性能的影响

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Aluminum brazed joints are used extensively in the automotive and aircraft industries. In order to insure the integrity of the bond, the effects of processing variables on the quality of the bond must be understood. The effects of brazing period and joint thickness on the microstructure, tensile properties, microhardness and micromechanisms of failure of two aluminum alloy 3003 plates connected by a layer of 4047 aluminum filler material were investigated. It was found that the amount of aluminum-silicon eutectic microstructure in the reaction zone decreased with increasing brazing period and decreasing joint thickness. This was attributed to silicon diffusion from the joint material and dissolution of base metal and its entrance into the liquid joint. The amount of shrinkage porosity in the reaction zone was found to increase with increasing brazing period due to base material solutioning. The ultimate tensile strength of joints decreased with increasing brazing period and decreasing joint thickness. This was attributed to the joint microstructure and shrinkage porosity formed in the joint. Shrinkage porosity was found to be the primary cause of decreased joint strength. Joints with 10 minutes brazing period failed within the base material, while for brazing periods greater than 10 minutes, joints failed within the aluminum-silicon eutectic microstructure of the reaction zone. This indicated that the joint strength was greater than the base material for joint with brazing period of 10 minutes. Finite element analysis was performed to determine the effect of joint material yield strength and joint thickness on the stress and strain field in the brazed joint. Finite element analysis results supported experimental observations. (C) 2002 Kluwer Academic Publishers. [References: 24]
机译:铝钎焊接头广泛用于汽车和飞机行业。为了确保键的完整性,必须理解加工变量对键质量的影响。研究了钎焊时间和接头厚度对两层以4047铝填充材料连接的铝合金3003板的显微组织,拉伸性能,显微硬度和破坏的微观机制的影响。研究发现,反应区中铝硅共晶组织的数量随着钎焊时间的增加和接头厚度的减小而减小。这归因于硅从接头材料中的扩散以及贱金属的溶解以及其进入液体接头中。发现由于母材的固溶,反应区中的收缩孔隙率随钎焊时间的增加而增加。接头的极限抗拉强度随着钎焊时间的增加和接头厚度的减小而降低。这归因于接头的微观结构和在接头中形成的收缩孔隙率。发现收缩孔隙率是降低接头强度的主要原因。钎焊时间为10分钟的接头在基材内失效,而钎焊时间大于10分钟的接头在反应区的铝硅共晶微结构内失效。这表明,在钎焊时间为10分钟的情况下,接头强度大于接头的基材。进行了有限元分析,以确定接头材料的屈服强度和接头厚度对钎焊接头应力和应变场的影响。有限元分析结果支持实验观察。 (C)2002 Kluwer学术出版社。 [参考:24]

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