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蓝宝石衬底固定磨料双面行星磨削材料去除率建模

Modeling of Material Removal Rate for the Fixed-Abrasive Double-Sided Planetary Grinding of a Sapphire Substrate.

作者信息

Chen Gen, Hu Zhongwei, Wang Lijuan, Chen Yue

机构信息

Institute of Manufacturing Engineering, Huaqiao University, Xiamen 361021, China.

Institute of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, China.

出版信息

Materials (Basel). 2024 Jul 25;17(15):3688. doi: 10.3390/ma17153688.

Abstract

Double-sided planetary grinding (DSPG) with a fixed abrasive is widely used in sapphire substrate processing. Compared with conventional free abrasive grinding, it has the advantages of high precision, high efficiency, and environmental protection. In this study, we propose a material removal rate () model specific to the fixed-abrasive DSPG process for sapphire substrates, grounded in the trajectory length of abrasive particles. In this paper, the material removal rate model is obtained after focusing on the theoretical analysis of the effective number of abrasive grains, the indentation depth of a single abrasive grain, the length of the abrasive grain trajectory, and the groove repetition rate. To validate this model, experiments were conducted on sapphire substrates using a DSPG machine. Theoretical predictions of the material removal rate were then juxtaposed with experimental outcomes across varying grinding pressures and rotational speeds. The trends between theoretical and experimental values showed remarkable consistency, with deviations ranging between 0.2% and 39.2%, thereby substantiating the model's validity. Moreover, leveraging the insights from this model, we optimized the disparity in the material removal rate between two surfaces of the substrate, thereby enhancing the uniformity of the machining process across both surfaces.

摘要

固定磨料的双面行星磨削(DSPG)在蓝宝石衬底加工中被广泛应用。与传统的游离磨料磨削相比,它具有高精度、高效率和环保等优点。在本研究中,我们基于磨粒轨迹长度,提出了一种针对蓝宝石衬底固定磨料DSPG工艺的材料去除率()模型。本文在对磨粒有效数量、单个磨粒压痕深度、磨粒轨迹长度和沟槽重复率进行理论分析后,得到了材料去除率模型。为验证该模型,使用DSPG机床对蓝宝石衬底进行了实验。然后将材料去除率的理论预测值与不同磨削压力和转速下的实验结果进行对比。理论值与实验值之间的趋势显示出显著的一致性,偏差范围在0.2%至39.2%之间,从而证实了该模型的有效性。此外,利用该模型的见解,我们优化了衬底两个表面之间材料去除率的差异,从而提高了整个加工过程在两个表面上的均匀性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb58/11313664/1326f0a19bf3/materials-17-03688-g001.jpg

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