Chen Yinghua, Wang Tao, Zhang And Guoqing
College of Mechatronics and Control Engineering, Shenzhen University, Nan-hai Ave 3688, Shenzhen 518060, Guangdong, China.
Micromachines (Basel). 2020 Feb 14;11(2):197. doi: 10.3390/mi11020197.
In the process of micro-milling, the appearance of the edge-size-effect of micro-milling tools cannot be ignored when the cutting parameters are smaller than the cutting edge arc radius (r) of the micro-milling tool or close to it, and it could easily lead to low cutting efficiency and poor surface quality of the micro-slot. Through micro-milling experiments on Al7075-T6 materials, the change of milling force in the plough zone and shear zone during micro-milling was studied, and the minimum cutting thickness (h) range was determined to be 0.2r-0.4r based on r of the micro-milling tool. Subsequently, the effect of f/r (f denotes feed rate per tooth) on the top burr formation of the micro-slot, the surface roughness (R) of the micro-slot bottom, and the milling force was studied, and a size-effect band of micro milling was established to determine the strong size-effect zone, transition size-effect zone, and the weak size-effect zone. Finally, two different f/r in the strong size-effect zone and the weak size-effect zone are compared, which proves that the main purpose of the cutting parameters optimization of micro-milling is to avoid cutting parameters locating in the strong edge-size-effect zone. The above conclusions provide a theoretical basis for the selection of micro-milling cutting parameters, and an important reference in improving the surface quality of micro-milling.
在微铣削过程中,当切削参数小于微铣刀的切削刃圆弧半径(r)或接近该半径时,微铣刀的刃口尺寸效应现象不容忽视,这极易导致微槽的切削效率低下和表面质量不佳。通过对Al7075-T6材料进行微铣削实验,研究了微铣削过程中犁削区和剪切区铣削力的变化,并基于微铣刀的r确定了最小切削厚度(h)范围为0.2r - 0.4r。随后,研究了f/r(f表示每齿进给量)对微槽顶部毛刺形成、微槽底部表面粗糙度(R)以及铣削力的影响,并建立了微铣削的尺寸效应带,以确定强尺寸效应区、过渡尺寸效应区和弱尺寸效应区。最后,比较了强尺寸效应区和弱尺寸效应区的两种不同f/r,证明了微铣削切削参数优化的主要目的是避免切削参数位于强刃口尺寸效应区。上述结论为微铣削切削参数的选择提供了理论依据,对提高微铣削表面质量具有重要参考价值。