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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Modeling and optimization of features of bead geometry including percentage dilution in submerged arc welding using mixture of fresh flux and fused slag
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Modeling and optimization of features of bead geometry including percentage dilution in submerged arc welding using mixture of fresh flux and fused slag

机译:建模和优化焊缝几何形状的特征,包括使用新鲜焊剂和熔渣混合进行埋弧焊的稀释百分比

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摘要

Quality has now become an important issue in today's manufacturing world. Whenever a product is capable of conforming to desirable characteristics that suit its area of application, it is termed as high quality. Therefore, every manufacturing process has to be designed in such a way that the outcome would result in a high quality product. The selection of the manufacturing conditions to yield the highest desirability can be determined through process optimization. Therefore, there exists an increasing need to search for the optimal conditions that would fetch the desired yield. In the present work, we aim to evaluate an optimal parameter combination to obtain acceptable quality characteristics of bead geometry in submerged arc bead-on-plate weldment on mild steel plates. The SAW process has been designed to consume fused flux/slag, in the mixture of fresh flux. Thus, the work tries to utilize the concept of 'waste to wealth'. Apart from process optimization, the work has been initiated to develop mathematical models to show different bead geometry parameters, as a function of process variables. Hence, optimization has been performed to determine the maximum amount of slag-flux mixture that can be used without sacrificing any negative effect on bead geometry, compared to the conventional SAW process, which consumes fresh flux only. Experiments have been conducted using welding current, slag-mix percentage and flux basicity index as process parameters, varied at four different levels. Using four3 full factorial designs, without replication, we have carried out welding on mild steel plates to obtain bead-on-plate welds. After measuring bead width, depth of penetration and reinforcement; based on simple assumptions on the shape of bead geometry, we calculated other relevant bead geometry parameters: percentage dilution, weld penetration shape factor, weld reinforcement form factor, area of penetration, area of reinforcement and total bead cross sectional area. All these data have been utilized to develop mathematical models between predictors and responses. Response surface methodology (RSM), followed by the multiple linear regression method, has been applied to develop these models. The effects of selected process parameters on different responses have been represented graphically. Finally grey relational analysis coupled with the Taguchi method (with Taguchi's orthogonal array) has been applied for parametric optimization of this welding technique. Confirmatory experiments have been conducted to verify optimal results.
机译:现在,质量已成为当今制造业的重要问题。只要产品能够符合适合其应用领域的理想特性,就被称为高质量。因此,必须以这样一种方式设计每个制造过程,使得结果将产生高质量的产品。可以通过过程优化来确定对产生最高期望度的制造条件的选择。因此,越来越需要寻找可获取所需产量的最佳条件。在目前的工作中,我们旨在评估最佳参数组合,以获得在软钢板上的埋弧式焊道焊接中焊道几何形状可接受的质量特性。已设计SAW工艺,以消耗新鲜焊剂混合物中的熔融焊剂/炉渣。因此,该作品试图利用“浪费致富”​​的概念。除了过程优化之外,还开始着手开发数学模型以显示不同的珠子几何参数,这些参数是过程变量的函数。因此,与仅消耗新鲜焊剂的常规SAW工艺相比,已经进行了优化以确定可以使用的最大量的矿渣-助熔剂混合物,而不会损害对焊道几何形状的任何不利影响。使用焊接电流,炉渣混合百分比和焊剂碱度指数作为工艺参数进行了实验,并在四个不同的水平上进行了变化。我们使用四项全因子设计(无重复),对低碳钢板进行了焊接以获得板对焊缝。测量完胎圈宽度,穿透深度和加强后;基于对焊缝几何形状的简单假设,我们计算了其他相关的焊缝几何参数:稀释百分比,焊缝熔深形状因子,焊缝增强形状因子,熔透面积,增强面积和总焊缝横截面积。所有这些数据已被用于在预测变量和响应之间建立数学模型。响应面方法(RSM),然后是多元线性回归方法,已用于开发这些模型。所选过程参数对不同响应的影响已通过图形表示。最后,将灰色关联分析与Taguchi方法(使用Taguchi的正交阵列)相结合,已用于该焊接技术的参数优化。已经进行了验证性实验以验证最佳结果。

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