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Rapid prototyping of sheet metal workpieces using bending-machining hybrid process

机译:使用弯曲加工混合过程的钣金工件的快速原型设计

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摘要

Sheet metal structures produced by bending are extensively used in a wide variety of industries. Rapid production of such workpieces is well sought after for low production volume demands. An effective and practical way to reduce springback is through compensating die dimensions, which has proved to be economic for large production scenario. However, in the environment of rapid production, part dimensions and/or material composition change frequently and hence new dies have to be designed and made to address these changes even if they are minor. Such situation inevitably incurs significant effort and high expenditure on determining appropriate die dimensions and fabricating new dies, and therefore imposes both time and financial burdens on producing angular sheet metal workpieces particularly at very low production volumes. This paper presents an effective and economic way of prototyping sheet metal workpieces with angular dimensional accuracy maintained, however without the need of creating new dies. The methodology extends from the author’s previous work on angular dimension improvement as reported by Li and Sekar (Proceedings of the 2016 Manufacturing Science and Engineering Conference, MSEC2016, 2016) to the rapid prototyping of sheet metal structures and process planning of bending-machining hybrid process. Three case studies are provided in the paper and the outcome shows that the methodology is capable of prototyping angled sheet metal workpieces with existing dies that are not designed nor compensated for the prototype models.
机译:通过弯曲产生的金属板结构广泛用于各种行业。迅速生产此类工件,以低产量需求追捧。减少回弹的有效和实用的方法是通过补偿芯片尺寸,这已经证明是大型生产方案的经济。然而,在快速生产的环境中,零件尺寸和/或材料组成频繁变化,因此必须设计并使新的模具进行设计,并使它们是次要的。这种情况不可避免地引发了大量的努力和高支出来确定适当的模具尺寸和制造新的模具,因此在生产角钣金工件上施加了尤其是在非常低的生产体积上产生的时间和金融负担。本文介绍了具有角度尺寸精度的原型和经济的原型化工,但无需创造新的模具。该方法从提交人之前的工作延伸到李和塞卡报告的(2016年制造科学和工程会议,MSEC2016,2016)到钢板结构的快速原型设计和弯曲加工混合过程的过程规划。本文提供了三种案例研究,结果表明,该方法能够使用未设计的现有模具的成角度的薄板金属工件原型,该工件不适用于原型模型。

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