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A new method of intelligent control for system stabilization in process-integrated powder coating by radial axial rolling of rings?

机译:一种新的智能控制方法,通过环的径向轴向滚动,对过程集成粉末涂料的系统稳定进行控制?

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摘要

Process-integrated powder coating by radial axial rolling of rings represents a novel hybrid production process to apply powder metallurgical coatings on large ring-shaped parts. The goal is to noticeably improve resistance against abrasive wear. To investigate important quantities such as e.g. the residual porosity in the layer and the stress states in the rolling zone, the versatile use of the finite element method (FEM) is crucial. Therefore, a parameterized FE model is developed on the basis of a finite strain viscoplastic material formulation. Reasonably controlling the movement of the guide rollers is an important task. It will be shown that the development of a mathematical formulation for the analytical design of such a control system based on Apollonian mutually orthogonal circles is necessary. The paper will be concluded by simulation results of the ring rolling process and comparisons with experimental results.
机译:通过环的径向轴向轧制形成的过程集成粉末涂料代表了一种新颖的混合生产工艺,该方法可将粉末冶金涂料涂覆在大型环形零件上。目的是显着提高抗磨蚀性。调查重要数量,例如由于层中的残余孔隙率和轧制区的应力状态,有限元方法(FEM)的广泛使用至关重要。因此,在有限应变粘塑性材料配方的基础上建立了参数化有限元模型。合理地控制导辊的运动是一项重要的任务。将显示出有必要开发用于基于阿波罗相互正交圆的这种控制系统的分析设计的数学公式。本文将通过环锭轧制过程的模拟结果以及与实验结果的比较得出结论。

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