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Road map to sustainability of friction stir welded Al-Si-Mg joints using bivariate weibull analysis

机译:使用双变量韦伯分析的搅拌摩擦焊接Al-Si-Mg接头可持续性的路线图

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Welding is a crucial joining technique that is generally embraced in the fabrication industry. The integrity of weld joints is of great importance because of its safety and economic importance. In this paper, the concept of reliability as it applies to FSW was introduced to reduce repair and maintenance cost. The Friction stir welding (FSW) of Al-Si-Mg alloy was examined. The response of welding parameters on joints integrity was assessed through Weibull analysis of weld strengths. The analysis revealed that the Weibull modulus increases with FSW parameters and 120mm/min welding speed gave the highest value while the 90mm/min speed gave the least. Meanwhile, the reliability of welds was observed to reduce by approximately 30% as the traverse speed increases by 25%. This was due to the presence of defects and recrystallization of the grain morphology. The higher the weld joint reliability the better the sustainability.
机译:焊接是制造行业中普遍采用的一种至关重要的连接技术。由于其安全性和经济重要性,焊接接头的完整性非常重要。在本文中,引入了适用于FSW的可靠性概念,以减少维修和维护成本。研究了Al-Si-Mg合金的搅拌摩擦焊(FSW)。焊接参数对接头完整性的响应是通过对焊接强度进行威布尔分析来评估的。分析表明,威布尔模量随FSW参数的增加而增加,而120mm / min的焊接速度给出的值最高,而90mm / min的焊接速度给出的值最小。同时,观察到随着横移速度增加25%,焊缝的可靠性降低了约30%。这是由于缺陷的存在和晶粒形态的再结晶。焊接接头的可靠性越高,可持续性越好。

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