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A Comparison Of Brazed Residual Stress In Plate-fin Structure Made Of Different Stainless Steel

机译:不同不锈钢制成的板翅结构中钎焊残余应力的比较

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摘要

In this study, design optimization of brazed residual stress in stainless steel plate-fin structure was investigated theoretically. A sequentially coupling finite element analysis (FEA) program was developed to simulate the brazed residual stress distribution, with an emphasis on the material selection for plate-fin metal and filler metal. The properties of three different stainless steel for plate-fin and three different materials for filler metal were incorporated into nine different FEA models. The results show that large residual stresses are generated in brazed joint due to the yield strength mismatching between base metal and filler metal. It is found that the best models are 304 or 347 stainless steel for base metal and BNi4 for filler metal. The residual stresses in the brazed joint are mainly affected by yield strength mismatching. But the yield strength mismatching has little effect on the residual stresses for the base metal.
机译:本研究从理论上研究了不锈钢翅片结构中钎焊残余应力的设计优化。开发了顺序耦合有限元分析(FEA)程序来模拟钎焊残余应力分布,重点是板翅金属和填充金属的材料选择。将三种不同的用于板翅的不锈钢和三种不同的用于填充金属的材料的性能纳入了九种不同的FEA模型中。结果表明,由于母材和填充金属之间的屈服强度不匹配,在钎焊接头中产生了很大的残余应力。发现最好的模型是贱金属为304或347不锈钢,填充金属为BNi4。钎焊接头中的残余应力主要受屈服强度不匹配的影响。但是屈服强度失配对母材的残余应力影响很小。

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