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Surface Texture Manufacturing Techniques and Tribological Effect of Surface Texturing on Cutting Tool Performance: A Review

机译:表面纹理制造技术及表面纹理化对切削刀具性能的摩擦学影响:综述

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The tribological characteristics of sliding surfaces have been remarkably improved by surface texturing. Surface texturing can be beneficial in many ways; for example, it can reduce friction and wear, increase load carrying capacity, and increase fluid film stiffness. The design process for surface texturing is highly correlated to the particular functions of any application for which texturing is required. Texture quality is greatly affected by manufacturing methods, therefore, it is important to have a detailed understanding of the related parameters of any technique.The use of surface texturing to improve the cutting performance of tools is a relatively new application. These textures improve cutting performance by enhancing lubricant availability at the contact point, reducing the tool-chip contact area, and trapping wear debris. Reductions in crater and flank wear, friction force, cutting forces, and cutting temperature are the main benefits obtained by this technique. To date, surface texturing has been successfully used in drilling, milling, and turning operations.This article provides an overview of the techniques that have been used in industry and research platforms to manufacture micro-ano-textures for tribological applications, and it examines the effects of surface textures on cutting tool performance.
机译:滑动表面的摩擦学特性已通过表面纹理化得到了显着改善。表面纹理化可以从许多方面受益。例如,它可以减少摩擦和磨损,增加承载能力,并增加液膜刚度。表面纹理化的设计过程与需要纹理化的任何应用程序的特定功能高度相关。纹理质量受制造方法的影响很大,因此,详细了解任何技术的相关参数很重要。使用表面纹理来提高工具的切削性能是一个相对较新的应用。这些纹理通过增加接触点的润滑剂利用率,减少工具与切屑的接触面积并捕获磨损碎屑来改善切削性能。减少陨石坑和侧面磨损,摩擦力,切削力和切削温度是该技术的主要优点。迄今为止,表面纹理化已成功用于钻孔,铣削和车削操作中。本文概述了工业和研究平台用于制造摩擦学应用的微/纳米纹理的技术,并对其进行了研究表面纹理对切削刀具性能的影响。

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