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An improved computation model for critical bending force of three-jaw chucks

机译:三爪卡盘临界弯曲力的改进计算模型

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Because of its automatic centering capability, and its high flexibility with respect to different clamping diameters, the three-jaw chuck is the preferred clamping device for turning operations. However, because of insufficient modelling methods, the existing approaches for determining the required clamping force of jaw-chucks lead to unreliable and inconsistent computation results. This is especially true for the crucial computation of critical bending force. An improved analytic computation model for determining the critical bending force of three-jaw chucks is introduced in this article, and verified through experimental investigations. Finite element analysis-based knowledge about both the pressure distribution on clamping surfaces, and workpiece stiffness behaviour, ensures a safe and exact computation of the critical bending force and the critical bending moment. This exact computation makes it possible to utilize the potential of jaw-chucks at higher rotational speeds and guarantees safe workpiece clamping.
机译:由于其自动定心能力,以及针对不同夹持直径的高度灵活性,三爪卡盘是用于车削操作的首选夹持装置。然而,由于缺乏足够的建模方法,现有的确定夹头所需夹紧力的方法会导致计算结果不可靠且不一致。对于临界弯曲力的临界计算尤其如此。介绍了一种确定三爪卡盘临界弯曲力的改进解析计算模型,并通过实验研究进行了验证。基于有限元分析的有关夹紧表面压力分布和工件刚度行为的知识,可确保安全,准确地计算临界弯曲力和临界弯曲力矩。通过这种精确的计算,可以在更高的转速下利用卡盘的潜力,并确保安全地夹紧工件。

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