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Stiffness matching method for the ball screw feed drive system of machine tools

机译:机床滚珠丝杠馈电系统的刚度匹配方法

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摘要

The static stiffness of machine tools plays an important role in ensuring the performance of machine tools and improving the machining accuracy. In the design stage, stiffness matching provides a theoretical basis for determining the stiffness of each component. This study proposed a stiffness matching design method for machine tools. First, the deformation model of machine tools is established on the basis of the state space model. Through force analysis, the relationships between the deformations and stiffness of each part are determined. Second, the stiffness model of the machine tool is established by combining these relationships with the deformation model. Third, the objective function is determined by performing sensitivity analysis after obtaining the stiffness range. The stiffness matching design results are obtained through multi-objective linear programming. Lastly, the stiffness simulations, theoretical model, and experimental results are analyzed. The maximum errors among the experimental, simulation, and theoretical results (18.8 % and 19.9 %) are within the acceptable range. In conclusion, the proposed method is suitable for designing ball screw feed drive systems that requires rigidity.
机译:机床的静态刚度在确保机床的性能和提高加工精度方面起着重要作用。在设计阶段,刚度匹配为确定每个组分的刚度提供了理论依据。本研究提出了一种机床刚度匹配设计方法。首先,基于状态空间模型建立机床的变形模型。通过力分析,确定每个部件的变形和刚度之间的关系。其次,通过与变形模型组合这些关系来建立机床的刚度模型。第三,通过在获得刚度范围之后进行敏感性分析来确定目标函数。通过多目标线性规划获得刚度匹配设计结果。最后,分析了僵硬模拟,理论模型和实验结果。实验,模拟和理论结果(18.8%和19.9%)的最大误差在可接受的范围内。总之,所提出的方法适用于设计需要刚性的滚珠丝杠进料驱动系统。

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