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Advanced friction modeling for bulk metal forming processes

机译:用于大块金属成型过程的高级摩擦建模

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The finite element method is a powerful tool for the design and optimization of hot forming processes. In order to obtain high accuracy in simulation results, exact knowledge of the process conditions is required. Due to the fact that friction in the contact area has a significant impact on the material flow during the forming process, a realistic description of this boundary condition in the FE simulation is important for the usability of the simulation results. The most important influencing factors are the contact pressure, the roughness of the contact surfaces, the sliding velocity and the flow behavior of the material. Currently, only constant friction coefficients are considered in commercial finite element systems for the simulation of bulk metal forming processes. However, this description does not represent the state of the art in tribology. A new friction model is developed, taking into account the sliding velocity between tools and workpiece. This is confirmed by experimental and numerical investigations on model experiments and industrial process.
机译:有限元方法是设计和优化热成型工艺的强大工具。为了获得高精度的仿真结果,需要对过程条件有确切的了解。由于在成形过程中接触区域的摩擦会严重影响材料流动,因此在有限元模拟中实际描述该边界条件对于模拟结果的可用性很重要。最重要的影响因素是接触压力,接触表面的粗糙度,滑动速度和材料的流动性能。当前,在商业有限元系统中仅考虑恒定摩擦系数以模拟块状金属成形过程。但是,该描述并不代表摩擦学领域的最新发展。考虑到工具和工件之间的滑动速度,开发了一种新的摩擦模型。对模型实验和工业过程的实验和数值研究证实了这一点。

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