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Research on thermal deformation of large-scale computer numerical control gear hobbing machines

机译:大型计算机数控滚齿机的热变形研究

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Research on thermal deformation of large-scale computer numerical control (CNC) hobbing machines is on the purpose of obtaining the law of thermal deformation of gear hobbing machines to improve machining precision. According to the structure characteristics of hobbing machines, this paper presents a novel computing model of thermal deformation based on the theory of the thermal expansion deformation of metallic materials, the extensional beam theory, non-uniform temperature distribution of the Euler-Bernoulli beam and Kirchhoff theory of plane-section assumption. Then, the coupling theory of axial and bending deformation of hobbing machines based on the deformation element and equilibrium element method is proposed. The experimental measurement system and platform for thermal deformation of gear hobbing machines is established. The temperature and displacement data of thermal deformation of a certain type gear hobbing machine is analyzed, which has demonstrated the law of thermal deformation of hobbing machines. The locus curves for overall displacement error of cutting points and teeth trace error are obtained. Comparing deformation theory and experimental data, the relative error is lower than 5%, which verifies the computing model proposed by this paper, and shows the research method has great significance for structural optimization, local temperature control, and prediction and compensation for thermal deformation error of gear hobbing machines.
机译:大型计算机数控滚齿机的热变形研究是为了获得齿轮滚齿机的热变形规律,以提高加工精度。根据滚齿机的结构特点,基于金属材料的热膨胀变形理论,延伸梁理论,Euler-Bernoulli梁的温度分布不均匀和Kirchhoff提出了一种新型的热变形计算模型。平面截面假设理论。然后,基于变形单元和平衡单元法,提出了滚齿机轴向变形与弯曲变形的耦合理论。建立了滚齿机热变形实验测量系统和平台。分析了某类型滚齿机热变形的温度和位移数据,证明了滚齿机的热变形规律。获得了切削点总位移误差和齿迹误差的轨迹曲线。将变形理论与实验数据进行比较,相对误差低于5%,验证了本文提出的计算模型,表明该研究方法对结构优化,局部温度控制以及热变形误差的预测与补偿具有重要意义。滚齿机。

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