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Numerical Investigations on Changes of the Main Shear Plane while Broaching

机译:拉削过程中主剪切平面变化的数值研究

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摘要

The quality of broached components can be influenced by different factors, such as am-bient temperatures, human factors or vibrations of the machine structure induced by process-machine-interactions. These vibrations are normally initiated by changing pro-cess forces, which are mainly caused by cutting thickness or rake angle variations. Broached components are produced within one motion of the broach along the surface of the work piece, where multiple teeth in a row are in contact. The variation of the cut- ting thickness results from a wavy profile on the surface generated by the previous cut-ting process or the previous tooth. When the cutting thickness changes during the process, the rake angle varies, too. In some further published works, the changing cutting thickness and the changing rake angle during broaching were investigated by means of machining simulations with the result that the process forces are still adjusting after the cutting thickness and the rake angle have already reached a stable value. The adjustment of the shear plane on the new cutting conditions is mentioned as the main reason. This paper presents some deeper investigations on this effect. Therefore, 2D machining simulations for different cutting thicknesses and cutting velocities are performed. The investigations show tendencies for the still adjusting shear plane after changing the cutting thickness or the rake angle during the cutting process. Finally, the simulation results are validated with experimentally observed data.
机译:拉制组件的质量可能受不同因素的影响,例如环境温度,人为因素或过程机器相互作用引起的机器结构振动。这些振动通常是由过程力的变化引起的,过程力的变化主要是切削厚度或前角的变化引起的。拉削零件是在拉削沿着工件表面运动的一次运动中产生的,在该工件表面上连续接触多个齿。切削厚度的变化是由先前的切削过程或先前的牙齿在表面产生的波浪形轮廓引起的。在此过程中,如果切割厚度发生变化,前角也会发生变化。在一些其他已发表的著作中,通过机械加工模拟研究了拉削过程中切削厚度的变化和前角的变化,结果是在切削厚度和前角已经达到稳定值之后,过程力仍在调整中。主要原因是在新的切削条件下对剪切平面的调整。本文对此效应进行了更深入的研究。因此,针对不同的切割厚度和切割速度执行了二维加工模拟。研究表明,在切割过程中改变切割厚度或前角后,仍需调整剪切平面。最后,通过实验观察的数据验证了仿真结果。

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