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Determination of Optimal Parameters for Diffusion Bonding of Semi-Solid Casting Aluminium Alloy by Response Surface Methodology

机译:响应面法确定半固态铸造铝合金扩散结合的最佳参数

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Liquid state welding techniques available are prone to gas porosity problems. To avoid this solid state bonding is usually an alternative of preference. Among solid state bonding techniques, diffusion bonding is often employed in aluminium alloy automotive parts welding in order to enhance their mechanical properties. However, there has been no standard procedure nor has there been any definitive criterion for judicious welding parameters setting. It is thus a matter of importance to find the set of optimal parameters for effective diffusion bonding. This work proposes the use of response surface methodology in determining such a set of optimal parameters. Response surface methodology is more efficient in dealing with complex process compared with other techniques available. There are two variations of response surface methodology. The one adopted in this work is the central composite design approach. This is because when the initial upper and lower bounds of the desired parameters are exceeded the central composite design approach is still capable of yielding the optimal values of the parameters that appear to be out of the initially preset range. Results from the experiments show that the pressing pressure and the holding time affect the tensile strength of jointing. The data obtained from the experiment fits well to a quadratic equation with high coefficient of determination (R2 = 94.21%). It is found that the optimal parameters in the process of jointing semi-solid casting aluminium alloy by using diffusion bonding are the pressing pressure of 2.06 MPa and 214 minutes of the holding time in order to achieve the highest tensile strength of 142.65 MPa
机译:可用的液态焊接技术容易产生气孔问题。为了避免这种固态键合,通常是优先选择。在固态键合技术中,扩散键合通常用于铝合金汽车部件焊接中,以增强其机械性能。但是,目前还没有标准的程序,也没有确定明智的焊接参数设置的明确标准。因此,重要的是找到用于有效扩散结合的一组最佳参数。这项工作提出在确定这样一组最佳参数时使用响应面方法。与其他可用技术相比,响应面方法在处理复杂过程方面更为有效。响应面方法有两种变体。这项工作采用的一种方法是中央复合设计方法。这是因为,当超出所需参数的初始上限和下限时,中央复合设计方法仍然能够得出似乎超出初始预设范围的最佳参数值。实验结果表明,压紧压力和保持时间会影响接头的拉伸强度。从实验中获得的数据非常适合具有高确定系数的二次方程(R2 = 94.21%)。结果表明,采用扩散结合法焊接半固态铸造铝合金的最佳参数是压制压力为2.06 MPa,保持时间为214分钟,以达到最高拉伸强度142.65 MPa。

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