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Finite Element Static Stiffness Analysis of the A/C Axes Bi-rotary Milling Head

机译:A / C轴双旋转铣头的有限元静态刚度分析

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A/C axes bi-rotary milling head is an important functional component in gantry type five-axis CNC machine tool. The static characteristics affect directly the machining accuracy of machine tool. The paper investigates the static stiffness of A/C axes bi-rotary milling head in gantry type five-axis CNC machine tool XK2320-5X developed by a domestic company. Because this product developed depend on the experience of designers, the machining accuracy of A/C axes bi-rotary milling head of primitive XK2320-5X type cannot meet the accuracy requirement under actual working conditions. On the basis of structure design, the static stiffness analysis of the milling head under two working conditions is carried out using finite element method. The deformations of the main mechanical parts in the milling head are obtained. The analysis results indicate that the static stiffness in direction X is the weakest of the milling head and the milling head shell is the most important factor of deformation. The work done provides foundation for further structure design and machining accuracy improvement of A/C axes bi-rotary milling head.
机译:A / C轴双旋转铣头是龙门型五轴CNC机床中的重要功能部件。静态特征直接影响机床的加工精度。本文研究了由国内公司开发的龙门型五轴CNC机床XK2320-5X中A / C轴双旋转铣头的静刚度。由于本产品依赖于设计人员的经验,所以原始XK2320-5X型的A / C轴双旋转铣头的加工精度不能满足实际工作条件下的准确性要求。在结构设计的基础上,使用有限元法进行两种工作条件下铣头的静刚度分析。获得铣头中的主机械部件的变形。分析结果表明,方向X的静刚度是铣头的最弱,铣头壳是最重要的变形因素。该工作为进一步的结构设计和加工精度改进提供了A / C轴双旋转铣头的基础。

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