A Study on the Influence of Central Edge Absence in Helical Grinding for Micro-Hole Fabrication

研磨 磨料 材料科学 机械加工 GSM演进的增强数据速率 制作 粒度 机械工程 复合材料 冶金 计算机科学 工程类 医学 电信 病理 替代医学
作者
Bochuan Chen,Xiaojin Shi,Chong Zhang,Muhammad Amin,Songmei Yuan
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:17 (21): 5260-5260
标识
DOI:10.3390/ma17215260
摘要

The fabrication of micro-holes in hard-to-machine materials presents considerable challenges in precision machining. This study proposes a novel approach that employs high-strength micro-grinding tools with a central abrasive grain absence to create micro-holes through helical grinding. Due to the random distribution of abrasive grains, the absence of grains at the tool’s center becomes an inevitable technical challenge. This research examines the correlation between the diameter of the absence zone and the bottom morphology of the machined hole, highlighting the potential formation of disc-shaped or cylindrical residues. A model for predicting the height of the disc-shaped residues is developed, and the mechanisms governing their removal during grinding are further explored. The findings indicate that when a central grain absence exists, the first abrasive grain surrounding the absence zone, referred to as the inner-edge grain, is responsible for removing the disc-shaped residues. Based on these results, a novel 0.8 mm diameter micro-PCD milling–grinding tool with a central edge absence is designed, and experimental validation is performed using 65% SiCp/Al composite materials. The experimental results confirm that the central grain absence leads to the formation of disc-shaped residues at the bottom of the machined hole during helical grinding, and the morphology of the experimentally obtained residues aligns with the theoretical predictions and simulations. This study significantly advances micro-grinding wheel technology and provides a solid foundation for the precision machining of micro-holes in hard-to-machine materials.
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