Effect of Channel Roughness on Micro-Droplet Distribution in Internal Minimum Quantity Lubrication

Michael Craig, J. Raval, Bruce Tai, A. Patterson, W. Hung
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Abstract

This research studied the effect of channel roughness on micro-droplet distributions in internal minimum quantity lubrication for effective machining. Mixtures of different oils and air were flown though internal channels with simulated different roughness: as fabricated, partially threaded, and fully threaded. The airborne droplets were collected, analyzed, and compared with simulated results by computational fluid dynamics. For low-viscous lubricant, the rough channel surface helped to break large droplets in the boundary layer into smaller droplets and reintroduce them into the main downstream flow. The opposite trend was found for the higher viscous lubricant. The study also performed chemical etching to roughen selected surfaces of carbide cutting tools. The synergy of hand and ultrasonic agitation successfully roughened a carbide surface within twelve minutes. Scanning electron microscopy examination showed deep etching that removed all grinding marks on a WC–Co cutting tool surface.
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内部最小量润滑中通道粗糙度对微液滴分布的影响
为了有效加工,研究了内部最小量润滑中通道粗糙度对微液滴分布的影响。不同油和空气的混合物通过模拟不同粗糙度的内部通道流动:制造,部分螺纹和全螺纹。采用计算流体力学方法对空气中的液滴进行了收集、分析,并与模拟结果进行了比较。对于低粘性润滑剂,粗糙的通道表面有助于将边界层中的大液滴破碎成较小的液滴,并将其重新引入下游主流。对于高粘度的润滑剂,则发现了相反的趋势。研究还对硬质合金刀具表面进行了化学蚀刻,使其变得粗糙。手和超声波搅拌的协同作用在12分钟内成功地使硬质合金表面粗糙化。扫描电子显微镜检查显示,WC-Co刀具表面的深度蚀刻去除了所有的磨削痕迹。
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