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Optimizing heat transfer rate in an internally cooled cutting tool: FE- based design analysis and experimental study

机译:在内部冷却的切削刀具中优化传热速率:基于有限元的设计分析和实验研究

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摘要

The machining process produces high local temperatures in the tool-chip and toolworkpiece contact areas, normally lead to negative influence on the machine performance. This paper presents a study on optimizing the internal micro channel structure of a tungsten carbide (WC) cutting tool in order to enhance heat transfer rate when applied with internal cooling fluid. Inspired by water jet impingement theory, the efficiency and heat transfer rate of single phase micro channel mainly depends on the fluid velocity as well as temperature difference between the cooling fluid and hot surface. In this study three variables, i.e. the space between channel and internal wall of the insert, channel diameter and fluid temperature, have been tested with design of experiments (DoE) to study the significance of the factors and interactions between them on cutting temperature. A 3-D finite element (FE) model has been developed to observe the effects of these factors on heat transfer rate. The simulation results show the most dominant factor to affect the cutting temperature is the temperature of the cooling fluid followed by the space between channel and tool insert internal wall.
机译:机加工过程会在工具屑和工具工件接触区域产生较高的局部温度,通常会对机器性能产生负面影响。本文介绍了一种优化碳化钨(WC)切削刀具内部微通道结构的研究,以提高与内部冷却液一起使用时的传热速率。受水射流冲击理论的启发,单相微通道的效率和传热速率主要取决于流体的速度以及冷却液与热表面之间的温差。在这项研究中,通过实验设计(DoE)测试了三个变量,即通道和刀片内壁之间的空间,通道直径和流体温度,以研究影响切削温度的因素及其相互作用的重要性。已经开发了3-D有限元(FE)模型来观察这些因素对传热速率的影响。仿真结果表明,影响切削温度的最主要因素是冷却液的温度,其次是通道和刀具刀片内壁之间的空间。

著录项

  • 来源
    《Precision machining VI》|2011年|p.188-193|共6页
  • 会议地点 Liverpool(GB);Liverpool(GB)
  • 作者单位

    Advanced Manufacturing and Enterprise Engineering (AMEE) Department, School of Engineering and Design, Brunei University, London, UK;

    Advanced Manufacturing and Enterprise Engineering (AMEE) Department, School of Engineering and Design, Brunei University, London, UK;

    Advanced Manufacturing and Enterprise Engineering (AMEE) Department, School of Engineering and Design, Brunei University, London, UK;

    Advanced Manufacturing and Enterprise Engineering (AMEE) Department, School of Engineering and Design, Brunei University, London, UK;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TG519;
  • 关键词

    internally cooled cutting tool; cutting temperature; design of experiment; machining optimization;

    机译:内部冷却的切割工具;切割温度实验设计;加工优化;

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