Characterization of Elliptical Dimple Fabricated with Dual Frequency Vibration Assisted Machining

G. Park, T. Ko, R. Kurniawan, Saood Ali
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引用次数: 1

Abstract

Surface texturing is a promising route to reduce the friction forces between two surfaces in sliding contact. To this end, the fabrication of micro dimples is one of the most widely used surface texturing methods. According to published results, textured surfaces with elliptical micro dimples offer the best friction performance. Therefore, we fabricated elliptical micro dimples on carbon steel (SM45C) by using dual frequency vibration assisted machining. High and low frequencies of 16.3 kHz and 230 Hz were applied to the 3D resonant elliptical vibrator. The 3D resonant elliptical vibrator with a triangular cubic boron nitride insert was assembled on a computer numerically controlled turning lathe. Oval micro dimples of various profiles were manufactured on carbon steel. In terms of the profile of the elliptical micro dimples, the experimental results indicated that the average micro dimple width and depth were 112  and 7.7  . These dimensions are closely related to the cutting conditions and can be easily controlled.
双频振动辅助加工椭圆凹窝的特性研究
表面织构是减小滑动接触中两表面间摩擦力的有效途径。为此,制造微韧窝是目前应用最广泛的表面织构方法之一。根据已发表的结果,具有椭圆微凹窝的纹理表面具有最佳的摩擦性能。为此,采用双频振动辅助加工技术在SM45C碳钢表面制备了椭圆型微凹窝。采用16.3 kHz和230 Hz的高频和低频分别应用于三维共振椭圆振子。在计算机数控车床上组装了三角形立方氮化硼插片的三维共振椭圆振子。在碳钢上制备了各种形状的椭圆微凹窝。实验结果表明,椭圆型微窝的平均微窝宽度为112,深度为7.7。这些尺寸与切削条件密切相关,可以很容易地控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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