单点切削刀具上纹理表面的建模与分析

Slyden Rodrigues, Terrence Pereira, Sagar Patil, Brean Burboz, Prasad Bari
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摘要

在使用单点刀具进行车削或刨面等加工操作时,各种因素都会影响加工操作。对于任何机械加工操作,操作应总是在尽可能短的时间内完成,并应以最佳的成本具有优异的表面光洁度。因此,为了实现这些特性,需要对单点刀具进行研究,并对刀具进行适当的修改和分析。这种修改包括在硬质合金刀片的前刀面表面提供微纹理。主要目的是注意微槽纹理刀具在加工时的性能,并将这种性能与非纹理刀具进行比较。槽宽、槽深和宽深比是检测的参数。所提供的纹理将提高其效率,减少由于刀屑界面造成的摩擦,增加刀具寿命。由于质地的原因,在刀具上适当的润滑流动将确保刀具和切屑之间产生较少的摩擦。为了检查纹理的提供是否会给刀具带来不期望的应力,在ANSYS中进行了仿真。为了进行实验分析,在硬质合金刀具上织构了不同的槽宽和槽深组合,并通过在刀柄上安装应变片来计算力。力的计算涉及到通用试验机上刀架的正确校准。所涉及的力即切削力,进给力和中性力,是通过安装在刀架上的应变片连接的惠斯通桥来计算的。结果表明,具有微织构的刀具切削力和进给力较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Analysis of Textured Surfaces on a Single Point Cutting Tool
While performing any machining operation like turning or facing with the help of single point cutting tool various factors affect the machining operation. For any machining operation, the operation should always be completed in minimum possible time and should possess excellent surface finish at optimal cost. Therefore, to achieve these properties study on single point cutting tool is to be made and some modifications of the tool with proper analysis is to be done. This modification involves providing micro textures on the surface of the rake face of carbide inserts. The primary purpose is to note that how the microgroove textured tools perform while machining and to compare this performance with non-textured cutting tools. Groove width, groove depth and width to depth ratio are the parameters that are examined. The texture provided will increase its efficiency and reduce the friction caused due to the tool chip interface, increasing tool life. A proper flow of lubrication over the tool due to texture will ensure less friction between the tool and the chip generated. To check whether the provision of texture would involve undesired stress on the tool, simulation is carried out in ANSYS. For experimental analysis different combinations of groove width and groove depth are textured on the carbide tool and forces are calculated by mounting strain gauges on the tool holder. Calculations of forces involve proper calibration of tool holder on Universal Testing Machine. Forces involved are namely cutting force, feed force and neutral force, are calculated using Wheatstone bridge connected across strain gauges mounted on the tool holder. It is found that tools with micro textures generate lower cutting force and feed force.
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