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Kinematics optimization of the polishing process of large-sized ceramic slabs

机译:大型陶瓷板抛光工艺的运动学优化

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Although large-sized ceramic slabs have become a common market product nowadays, their finishing processes still lack proper analyses and optimizations. The finishing is carried out on energy-consuming polishing machines by a train of rotating abrasive heads, which oscillates in a transverse direction on translating slabs. In this paper, a computational method able to investigate the effect of the kinematics on the texture distribution is proposed. Its algorithms allow to map the number of contacts and the scratching angles, relevant factors in the definition of the polished surface quality, but also, differently from the previous studies, the easy use of any preferred law of motion. After validation, the method is applied to a traditional polishing machine in order to assess the optimal process parameters as the forward motion of the conveyor belt and the transverse oscillation of the beam carrying the rotating head with the fickerts. An enhancement in terms of surface quality and machining process is evident. In particular, results suggest to adopt a specific frequency value for the transverse motion, nearly the half of the original one: in spite of a very similar texture, a significant reduction of energy is permitted. Finally, the optimization of motions and processes may lead to other general benefits, such as a reduction of the tool wear and mitigation of possible issues as mechanical vibrations or noise.
机译:虽然现在大型陶瓷板已成为普通市场产品,但它们的整理过程仍然缺乏适当的分析和优化。通过旋转研磨头的火车在能耗抛光机上进行精加工,在转换板上以横向振荡。本文提出了一种能够研究运动学对纹理分布对动力学效果的计算方法。其算法允许映射触点和划痕角度,相关因素在抛光表面质量的定义中,而且还有不同的研究,方便使用任何优选的运动定律。在验证之后,将该方法应用于传统的抛光机,以便评估最佳过程参数作为传送带的前向运动和将旋转头的横向振荡与FICHERTS携带。显而易见的是表面质量和加工过程的增强。特别地,结果表明采用横向运动的特定频率值,几乎是原始的一半:尽管存在非常相似的质地,但允许的能量显着降低。最后,运动和过程的优化可能导致其他一般益处,例如减少工具磨损和可能的问题的减轻可能的问题,如机械振动或噪音。

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