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研磨盘槽密度对基于微磨料研磨特性的影响

Effect of the Lapping Platen Groove Density on the Characteristics of Microabrasive-Based Lapping.

作者信息

Lee Taekyung, Jeong Haedo, Lee Sangjik, Kim Doyeon, Kim Hyoungjae

机构信息

Dongnam Regional Division, Korea Institute of Industrial Technology, Busan 46938, Korea.

School of Mechanical Engineering, Pusan National University, Busan 46241, Korea.

出版信息

Micromachines (Basel). 2020 Aug 14;11(8):775. doi: 10.3390/mi11080775.

Abstract

Microabrasive-based lapping is widely used in the manufacturing of single-crystal substrates such as sapphire, SiC, and GaN. Although many studies have been conducted to improve the lapping process characteristics, most of them focused on process conditions or consumables. In this study, the effect of the lapping platen groove density on the lapping characteristics was studied using a sapphire substrate. Groove density was defined as the ratio of groove width to groove pitch, and the displacement of the lapping head was measured to calculate the oil film thickness. It was confirmed that, for groove densities below 0.30, hydroplaning occurs when the oil film thickness increases. When the oil film thickness is larger than the abrasive particle size, the material removal rate is low because the abrasive does not participate in the lapping process. When the oil film was developed, the experimental results showed a high surface roughness and poor flatness of the substrate, as only large abrasive particles participated in the lapping process. Therefore, to improve the lapping characteristics, it is important to reduce the groove density by reducing the groove pitch, which prevents the development of the oil film.

摘要

基于微研磨的研磨工艺在蓝宝石、碳化硅和氮化镓等单晶衬底的制造中被广泛应用。尽管已经开展了许多研究来改善研磨工艺特性,但其中大多数研究都集中在工艺条件或耗材上。在本研究中,使用蓝宝石衬底研究了研磨台凹槽密度对研磨特性的影响。凹槽密度定义为凹槽宽度与凹槽间距之比,并测量研磨头的位移以计算油膜厚度。结果证实,对于凹槽密度低于0.30的情况,当油膜厚度增加时会发生滑水现象。当油膜厚度大于磨粒尺寸时,由于磨粒不参与研磨过程,材料去除率较低。当形成油膜时,实验结果表明衬底的表面粗糙度较高且平整度较差,因为只有大尺寸磨粒参与了研磨过程。因此,为了改善研磨特性,通过减小凹槽间距来降低凹槽密度很重要,这可以防止油膜的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb71/7463435/ff7aa08077d7/micromachines-11-00775-g001.jpg

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