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A Nonlinear Dynamic Finite Element Analysis of Drilling Shaft including Multispan Auxiliary Supports in Deep-Hole Machining

机译:深孔加工中含多跨辅助支架的钻杆非线性动态有限元分析

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摘要

This paper presents a method to enhance computational efficiency of the nonlinear dynamic analysis of the large-scale deep-hole drilling machine. Based on finite element model, the drilling shaft system is constructed into Timoshenko beam element on the basis of flexible rotary shaft so as to increase the accuracy of numerical calculation. In order to save the calculation time and resources, modal synthesis technique is adopted to reduce the feature modal of linear freedom degrees of drilling shaft system. As a result, the accuracy required by the non-linear analysis will not be loss. On the basis of these, the whirling characteristics of drilling shaft system are studied under the conditions of different shaft lengths, and simultaneously, the stability patterns of drilling shaft motion and its stability region are obtained in the selected drilling depth and cutting speed parameters while drilling intersection holes.
机译:本文提出了一种提高大型深孔钻床非线性动力学分析计算效率的方法。基于有限元模型,在柔性旋转轴的基础上,将钻轴系统构建为Timoshenko梁单元,以提高数值计算的准确性。为了节省计算时间和资源,采用模态综合技术来减小钻杆系统线性自由度的特征模态。结果,非线性分析所需的精度将不会丢失。在此基础上,研究了不同轴长条件下钻轴系统的回旋特性,同时,在选择的钻进深度和切削速度参数下,获得了钻轴运动的稳定模式及其稳定区域。相交孔。

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