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Fatigue Performance of GMA-Brazed Non-load Carrying Joints Made of Ultra-High-Strength Steel

机译:由超高强度钢制成的GMA钎焊非负载承载接头的疲劳性能

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With the aim of maximizing energy efficiency, the use of low-alloyed ultra-high strength steels (UHSS) has greatly increased in vehicles and other transport applications in recent decades. Using UHSS, equivalent ultimate load capacity can be achieved with less material than when using conventional structural steels. Along with increased static load, structures commonly made of UHSS are often subjected to high cyclic load, and good fatigue strength is thus demanded. In this study, the fatigue strength was obtained for gas metal arc (GMA)-brazed non-load carrying joints made of S960 MC plates. CuMn13Al7 and CuAl8 were used as braze alloys. In addition, the work evaluated the potential of gas metal arc brazing (GMAB) as a post-weld improvement technique. A total of 21 different test specimens were manufactured and tested with constant amplitude fatigue tests with an applied stress ratio of R = 0.1. Notch effects of the braze joints were investigated numerically using finite element analysis (FEA). Depending on the braze alloy and joint configuration, mean nominal fatigue strengths of FAT_(mean) = 134-192 MPa were obtained, indicating that GMAB is a promising joining method for structures made of UHSS. The FEA results showed that for the studied materials and joints, stress concentration induced in the joint can decrease approximately by 20% when GMAB is applied instead of fusion welding.
机译:随着能源效率最大化的目的,近几十年来,使用低合金超高强度钢(UHSS)的使用在车辆和其他运输应用中大大增加。使用UHSS,可以通过比使用常规结构钢的材料更少的材料来实现等效的最终负载能力。随着静载荷的增加,通常对UHS制成的结构通常受到高循环载荷,因此需要良好的疲劳强度。在该研究中,获得了由S960 MC板制成的气体金属弧(GMA)封端的疲劳强度。 Cumn13Al7和Cual8用作钎焊合金。此外,该工作评估了气体金属弧钎焊(Gmab)作为焊接后改进技术的潜力。总共21种不同的试样,并用恒定的幅度疲劳试验测试,施加​​应力比r = 0.1。使用有限元分析(FEA)在数值上进行数值研究钎焊关节的影响。取决于钎焊合金和关节构型,获得了脂肪_(平均值)= 134-192MPa的平均标称疲劳强度,表明Gmab是由UHSS制成的结构的有望的连接方法。 FEA结果表明,对于所研究的材料和关节,当应用Gmab而不是熔接焊接时,接头中诱导的应力浓度约为20%。

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