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Design of a novel turning tool cooled by combining circulating internal cooling with spray cooling for green cutting

机译:通过将循环内部冷却与绿色切割喷射冷却相结合冷却新型车削刀具的设计

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Cooling technology is vital in manufacturing industry, which can decrease cutting temperature, assist chip removal and reduce or eliminate the generation of cutting liquid waste during metal cutting process. This paper presents a novel turning tool cooled by combining circulating internal cooling with spray cooling, which can cool the cutting tool tip from inside and outside of insert and assist blow chips away from cutting zone. Thermal-fluid-solid coupling analysis using ANSYS Fluent is employed to investigate cooling performance of the composite cooling turning tool. Optimization of the internal spray cooling structure is carried out by Taguchi Method based CFD simulations and the optimal geometric parameters are picked out. The prototype of the novel turning tool is fabricated through the integration of spray cooling technology into the previously developed circulating internal cooling turning tool. The cooling effectiveness and practicality of the proposed novel turning tool system are further examined and validated by cutting trials.
机译:冷却技术对于制造业至关重要,可以降低切削温度,辅助芯片去除和减少或消除金属切削过程中切割液体废物的产生。本文采用了一种新型车削刀具,通过将循环内部冷却与喷雾冷却相结合,可以将切削刀头从插入件内部和外侧冷却并辅助吹出切割区域的吹芯片。采用使用ANSYS流畅的热流体固体耦合分析来研究复合冷却转动工具的冷却性能。内部喷雾冷却结构的优化由基于Taguchi方法进行的CFD模拟,并拾取了最佳几何参数。通过将喷雾冷却技术的整合到先前显影的循环内部冷却转动工具中,制造了新型车削刀具的原型。通过切割试验进一步检查和验证所提出的新型车削刀具系统的冷却效果和实用性。

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