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A 3D chip geometry driven predictive method for heat-loading performance of hob tooth in high-speed dry hobbing

机译:一种3D芯片几何驱动预测方法,用于高速干滚滚滚刀滚刀滚刀的热负荷性能

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摘要

High-speed dry hobbing is an emerging green technique for gear hobbing owing to its high productivity and environmental friendliness. However, severe friction occurs and heat instantaneously accumulates in the cutting region due to the adoption of high cutting speed and the lack of metalworking fluids, which causes serious hob wear. This investigation is concerned with the thermal performance and heat-loading quantitative method of hob cutter in high-speed dry hobbing. According to the multiple-edge and intermittent cutting behavior, the temporal dynamic characteristics of hob cutter are analyzed. Based on the complex 3D chip geometry produced in high-speed dry hobbing, the calculation method for heat-production (the amount of generated cutting heat) of hob tooth is proposed. Considering the coupling effects of heat conduction, heat convection, and heat radiation, the prediction model for heat-loading quantity (the bearing capacity of cutting heat) of hob tooth is developed. With the help of the developed method, the interrelation between the thermal performance of hob cutter and material removal volume, cutting conditions, coating material, respectively, are investigated. The predictive method developed in this work provides a methodology for process parameter optimization and hob cutter manufacturing of high-speed dry hobbing.
机译:由于其高生产率和环境友好,高速干滚动是一种用于齿轮滚动的新兴绿色技术。然而,由于采用高切割速度和缺乏金属加工液,发生严重摩擦并瞬间积聚在切割区域中,这导致严重的滚刀磨损。本研究涉及高速干滚滚滚滚筒的热性能和热载量定量方法。根据多边缘和间歇性切割行为,分析了滚刀刀具的时间动态特性。基于在高速干滚动滚动中产生的复杂3D芯片几何形状,提出了滚刀牙齿的热量生产(产生的切割热量)的计算方法。考虑了导热,热对流和热辐射的耦合效果,开发了滚刀牙齿的加热量(切割热量的承载能力)预测模型。借助开发方法,研究了滚刀刀具和材料去除体积,切割条件,涂层材料之间的热性能之间的相互关系。本作工作中开发的预测方法为高速干滚齿的工艺参数优化和滚刀制造提供了一种方法。

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