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Improving Local Temperature Rise in Rotational Incremental Sheet Forming Process by Modifying Forming Parameters Using Response Surface Method

机译:通过使用响应面法修改成形参数来提高旋转增量板成形过程中的局部温升

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In rotational incremental sheet forming (RISF) process,the friction heating of rotational tool could lead to local temperature rise of the sheet and cause the improvement of sheet's formability.Lightweight metal,such as magnesium alloy,could be deformed by RISF without additional heating.The objective of this study is to investigate the effects of forming parameters,namdy,tool rotationul speed,feed-rate,step size and wall angle,on the local temperature rise.Using response surface methodology and central composite design (CCD) experimental design,the significance,sequence of parameters and regression models would be analyzed with AZ31B as the experimental material,and 3D response surface plots would be shown.Combined with actual processing conditions,the measures to improve the local temperature rise by modifying each parameter would be discussed in the end.The results showed that hierarchy of the parameters with rcepect to the significance of their effects on the local temperature at the side wall was:feed-rate,step size,and rotational speed,while at the bottom it was:feed-rate,step size,wall angle,and rotational speed,and no significant interaction appeared.It was found that the most significant parameter was not rotational speed,but feed-rate,followed by step size,for both test positions.In addition,the local temperature would increase by elevating step size,wall angle,rotating rate,and bringing down of feed-rate.
机译:在旋转增量板形成(RISF)工艺中,旋转工具的摩擦加热可能导致片材的局部温度升高,并导致片材的成形性的改善。诸如镁合金的镁合金,可以通过RISF变形而无需额外加热。本研究的目的是研究成型参数,Namdy,工具旋转速度,进料速率,阶梯尺寸和壁角的影响,局部温度升高。使用响应面方法和中央复合设计(CCD)实验设计,使用AZ31B作为实验材料分析参数和回归模型的重要性,参数序列和回归模型,并且将在实际处理条件下显示3D响应表面图,通过修改每个参数来改善局部温度升高的措施结束。结果表明,参数的等级具有RCE对其对局部温度的重要性他的侧壁是:进料速率,阶梯尺寸和转速,而在底部是:进料速率,步长,壁角和转速,并且没有出现显着的交互。发现最重要的是最重要的参数不是旋转速度,但进料速率,随后的阶梯尺寸,对于测试位置。此外,通过升高步长,壁角,旋转速率和降低进料速率,局部温度会增加。

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