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Research advances and steps towards the control of geometric deviations in the surface grinding of big components

机译:控制大型零件表面磨削中几何偏差的研究进展和步骤

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摘要

Achieving and maintaining geometrical accuracy is nowadays the main limiting factor to accomplish an efficient manufacturing process in the surface grinding of big components. The present paper shows a deep research work carried out by means of experimental measurements of shape deviations, infrared pictures of the temperature field distributions and corresponding FEM simulations that confirm the thermal origin as one of the main limiting factors. A deeper investigation about the influence of the environment and cooling conditions, constraints imposed by part clamping and the grinding conditions reveals that the compensation and even control of thermal effects is possible by combining IR monitoring, modeling and simulation, although still being a challenging methodology.
机译:如今,实现和保持几何精度是在大型零件的表面磨削中完成有效制造过程的主要限制因素。本文显示了通过形状偏差的实验测量,温度场分布的红外图像以及相应的FEM仿真进行的深入研究,这些仿真确定了热起源是主要限制因素之一。对环境和冷却条件,零件夹紧施加的约束以及磨削条件的影响进行的更深入研究表明,尽管仍然是一种具有挑战性的方法,但通过组合红外监测,建模和仿真,可以补偿甚至控制热效应。

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