首页> 外文会议>International Manufacturing Science and Engineering Conference >ROTARY ULTRASONIC MACHINING OF BASALT ROCK USING COMPRESSED AIR AS COOLANT: A STUDY ON EDGE CHIPPING AND SURFACE ROUGHNESS
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ROTARY ULTRASONIC MACHINING OF BASALT ROCK USING COMPRESSED AIR AS COOLANT: A STUDY ON EDGE CHIPPING AND SURFACE ROUGHNESS

机译:压缩空气作为冷却剂旋转玄武岩超声加工:边缘切削和表面粗糙度的研究

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The aim of this study is to investigate the edge chipping and surface roughness of basalt rock processed by rotary ultrasonic machining (RUM) using compressed air as coolant. Basalt rock is commonly used as a building and construction material for foundations and dams, as well as in architectural designs such as constructing thin veneers and facades. Rotary ultrasonic machining, a hybrid process of grinding and ultrasonic machining, is employed to drill difficult-to-machine materials such as ceramics, composites, titanium alloys, stainless steel, etc. RUM has many advantages over conventional machining processes such as twist drilling. These advantages include lower cutting force, higher surface quality, lower tool wear, etc. This paper is the first in literature to report a study on edge chipping and surface roughness on RUM of basalt rock using cold compressed air as coolant. The effects of three input variables (tool rotation speed, feedrate, and ultrasonic power) on cutting force, torque, edge chipping, and surface roughness were studied. Experimental results obtained from this investigation show that RUM with cold air as the coolant has the capability to machine holes in basalt rock with a surface roughness of less than 3.5 μm without severe edge chipping.
机译:这项研究的目的是研究通过使用压缩空气作为冷却剂的旋转超声加工(RUM)处理的玄武岩的边缘崩裂和表面粗糙度。玄武岩岩石通常用作基础和水坝的建筑材料,以及建筑设计中的薄壁和立面等建筑材料。旋转超声加工是磨削和超声加工的混合过程,用于钻削难加工的材料,例如陶瓷,复合材料,钛合金,不锈钢等。与传统的加工工艺(例如麻花钻)相比,RUM具有许多优势。这些优势包括较低的切削力,较高的表面质量,较低的刀具磨损等。本文是第一篇报道了使用冷压缩空气作为冷却剂对玄武岩RUM的边缘崩刃和表面粗糙度进行研究的文献。研究了三个输入变量(刀具转速,进给速度和超声功率)对切削力,扭矩,切边和表面粗糙度的影响。从这项调查中获得的实验结果表明,以冷空气为冷却剂的RUM具有在玄武岩岩石中加工孔的能力,其表面粗糙度小于3.5μm,而没有严重的边缘崩裂。

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