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Simulation-based approach to modeling the chip formation energy of polishing process

机译:基于仿真抛光过程芯片形成能量的仿真方法

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摘要

Polishing is one typical material removal process, which is widely used for surface processing of porcelain tiles. Due to complex polishing head structure and kinematics features of polishing machine, polishing for porcelain tile is a high energy intensity process. To improve the energy efficiency by optimizing operation, it is essential to establish an energy consumption model for polishing process. This article divides the total energy of polishing process into constant energy and chip formation energy. Furthermore, this article focuses on modeling the chip formation energy for optimizing operation. Based on the energy conversion mechanism and energy flow characteristics, the chip formation energy of polishing process is further divided into three motion energies that govern the abrasive trajectory over the tile surface. A conceptual framework of simulation-based approach is then proposed for modeling chip formation energy of polishing process by integrating the above calculation algorithm of motion energy. Finally, a case study is implemented to illustrate the validation of the proposed approach, and the results show that it is a feasible tool to model the chip formation energy of polishing process and reveal the influence of different process operational parameters.
机译:抛光是一种典型的材料去除方法,广泛用于瓷砖的表面处理。由于复杂的抛光头结构和抛光机的运动学特性,瓷砖抛光是一种高能量强度过程。为了通过优化操作来提高能量效率,必须建立用于抛光过程的能耗模型。本文将抛光过程的总能量分成恒定能量和芯片形成能量。此外,本文侧重于建模芯片形成能量以优化操作。基于能量转换机构和能量流动特性,抛光过程的芯片形成能量进一步分为三种运动能量,该运动能量在瓷砖表面上控制磨料轨迹。然后提出了一种基于仿真方法的概念框架,通过集成上述运动能量计算算法来建模抛光过程的芯片形成能量。最后,实施了案例研究以说明所提出的方法的验证,结果表明,它是一种可行的工具,用于模拟抛光过程的芯片形成能量并揭示不同工艺操作参数的影响。

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