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Parametric effects on formability of AA2024-O aluminum alloy sheets in single point incremental forming

机译:单点渐进成形中AA2024-O铝合金薄板成形性的参数影响

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Single point incremental forming (SPIF) is a truly die-less forming process which is quite suitable for the batch type and prototype production due to economical tooling cost, shorter lead time and ability to form nonsymmetrical geometries without using expensive dies for manufacturing complex components of sheet metal. This process mainly finds application in the medical sector, aerospace, and automotive industry. Moreover, lack of available information about formability of the process makes it limited for industrial applications. SPIF applicability can be ensured on the industrial scale when appropriate guidelines are highlighted regarding the relation between input parameters and the formability of the process. This paper insights the impact of forming tool shape, tool diameter, wall angle, step size, sheet thickness, and tool rotation on the formability of the AA2024-O aluminum alloy sheet material. Forming depth has been measured by scanning the components using a non-contact 3D scanner. Wall angle and step size have been proved more significant factors which affect the formability greatly.
机译:单点增量成型(SPIF)是一种真正的无模具成型工艺,由于经济的模具成本,较短的交货时间和无需使用昂贵的模具即可制造复杂零件的能力,因此非常适合批量生产和原型生产。钣金。该过程主要应用于医疗,航空航天和汽车行业。而且,由于缺乏有关该过程可成形性的可用信息,因此它仅限于工业应用。当强调有关输入参数与过程可成形性之间关系的适当准则时,可以确保在工业规模上SPIF的适用性。本文洞悉了成形工具的形状,工具直径,壁角,台阶尺寸,板材厚度和工具旋转对AA2024-O铝合金板材的可成形性的影响。成型深度是通过使用非接触式3D扫描仪扫描组件来测量的。壁角和步距大小已被证明是影响成形性的更重要的因素。

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