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Model-based form error compensation in the turning of thin-walled cylindrical parts

机译:薄壁圆柱零件车削中基于模型的形状误差补偿

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摘要

The turning of thin-walled, hollow, cylindrical parts is often not possible when using the common hydraulically operated 3- or 4-jaw chucks. This is due to the deformation of the part by the clamping force of the chuck. Even low clamping forces cause elastic deformations of the clamped workpiece, which results in surface errors due to machining after the unclamping and elastic recovery of the part. For this reason, several approaches have been adopted in the past in order to quantify and minimise the clamping-induced deformations. In this paper a model-based error compensation for thin-walled, cylindrical parts in turning is presented as a universal solution. In this work, a compensation by different models is designed and realised by an intelligent, adaptive and interchangeable turning tool holder with integrated sensors and actuators.
机译:使用普通的液压三爪或四爪卡盘时,通常无法对薄壁,空心圆柱形零件进行车削。这是由于卡盘的夹紧力导致零件变形所致。即使很小的夹紧力也会导致被夹紧工件的弹性变形,这会由于松开工件后的加工和弹性回复而导致表面误差。由于这个原因,过去已经采用了几种方法来量化和最小化夹紧引起的变形。本文提出了一种基于模型的薄壁圆柱零件车削过程中的误差补偿作为通用解决方案。在这项工作中,通过集成了传感器和执行器的智能,自适应和可互换车刀架设计并实现了不同模型的补偿。

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