首页> 外文会议>Conference of the European Scientific Association on Material Forming >Improving the ramp-up process of a body-construction line by numerical supported design of clamping devices and FEM based tolerance prognosis
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Improving the ramp-up process of a body-construction line by numerical supported design of clamping devices and FEM based tolerance prognosis

机译:通过数值支持的夹紧装置和有限元公差预后改善车身结构线的增速过程

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Car body manufacturing begins with sheet metal forming, while in subsequent steps the inner structures of the vehicle are assembled and connected to the outer skin by hemming. The use of FEM (finite element method) to assistant in ramp-up processes of car body construction lines is increasing, thanks to developments in recent years. Several methods to predict the distortion of joining and the dimensional effect of clamping during the assembly process were presented and validated. Dimensional effects of the clamping process are basically the result of a deliberate alignment, other than the given values of construction to compensate dimensional inaccuracy of single parts from the body shop. These deliberate alignments are generally effected through a translation of clamps and pins in the clamping device. Until now, most of the methods of clamping and joining simulation presented have been verified using academic samples. In this report, the quality of forecasting in real problems during a ramp-up process will be verified and expanded. As part of a national project, co-funded by Sachsische Aufbaubank (SAB), the potential of FEM to assist in the ramp-up process were reviewed in a cooperative effort between Porsche Leipzig GmbH and Fraunhofer Institute for Machine Tools and Forming Technology (IWU). Furthermore, it will be shown that developed methods are able to represent the influence of deliberate positioning of clamps in complex samples.
机译:车身制造以金属板成形开始,而在随后的步骤中,车辆的内部结构通过缝制组装并连接到外皮。由于近年来的发展,使用FEM(有限元法)在车身施工线路升降过程中的助理过程中增加。提出并验证了几种预测加入的变形的方法和夹紧过程的尺寸效应。夹紧过程的尺寸效应基本上是故意对准的结果,除了给定的结构值之外,以补偿单个部件的尺寸不准确。这些故意对准通常通过夹紧装置中的夹具和销的平移来实现。到目前为止,呈现的大多数夹紧和加入模拟的方法已经使用学术样本进行了验证。在本报告中,将核实和扩展在斜坡过程中实际问题预测质量。作为国家项目的一部分,由Sachsische Aufbaubank(SAB)共同资助,在Porsche Leipzig GmbH和Fraunhofer机床机床和成型技术(IWU)之间的合作努力中审查了有限元)。此外,将表明,开发的方法能够代表故意定位夹具在复杂样品中的影响。

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