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Optimization of Surface Roughness and Wall Thickness in Dieless Incremental Forming Of Aluminum Sheet Using Taguchi

机译:使用TAGUCHI铝板无无体粗糙度和壁厚的优化

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Incremental sheet forming is a versatile sheet metal forming process where a sheet metal is formed into its final shape by a series of localized deformation without a specialised die. However, it still has many shortcomings that need to be overcome such as geometric accuracy, surface roughness, formability, forming speed, and so on. This project focus on minimising the surface roughness of aluminium sheet and improving its thickness uniformity in incremental sheet forming via optimisation of wall angle, feed rate, and step size. Besides, the effect of wall angle, feed rate, and step size to the surface roughness and thickness uniformity of aluminium sheet was investigated in this project. From the results, it was observed that surface roughness and thickness uniformity were inversely varied due to the formation of surface waviness. Increase in feed rate and decrease in step size will produce a lower surface roughness, while uniform thickness reduction was obtained by reducing the wall angle and step size. By using Taguchi analysis, the optimum parameters for minimum surface roughness and uniform thickness reduction of aluminium sheet were determined. The finding of this project helps to reduce the time in optimising the surface roughness and thickness uniformity in incremental sheet forming.
机译:增量板形成是一种多功能的金属板形成过程,其中金属板通过一系列局部变形形成其最终形状而没有专门的模具。然而,它仍然需要克服许多缺点,例如几何精度,表面粗糙度,可成型性,成形速度等。该项目专注于最小化铝板的表面粗糙度,并通过优化壁角,进料速率和台阶的优化改善增量板的厚度均匀性。此外,在该项目中研究了壁角,进料速率和阶梯尺寸与铝板表面粗糙度和厚度均匀性的影响。从结果中,观察到,由于表面波纹的形成,因此观察到表面粗糙度和厚度均匀性成反变化。进料速率的增加并减少步长将产生较低的表面粗糙度,而通过减小壁角和步长来获得均匀的厚度降低。通过使用Taguchi分析,确定了最小表面粗糙度和铝板均匀减小的最佳参数。该项目的发现有助于减少优化增量板成形的表面粗糙度和厚度均匀性的时间。

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