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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Jaw-chuck stiffness and its influence on dynamic clamping force during high-speed turning
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Jaw-chuck stiffness and its influence on dynamic clamping force during high-speed turning

机译:爪卡盘刚度对动态及其影响在高速回转夹紧力

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摘要

The spindle rotational speed of machine tools has become steadily higher due to the application of high speed cutting (HSC) technology. Higher spindle speed leads to greater demands on clamping systems. A basic problem with the application of jaw-chucks for clamping workpieces during high-speed turning is the huge centrifugal force that acts on chuck-jaws. This centrifugal force reduces effectiveness of the dynamic clamping force, making the HSC process dangerous. We have developed a computational model for determining the dynamic clamping force of jaw-chucks during high-speed turning that takes into account the influence of the stiffness behaviours of the chuck and workpiece. This model was verified by means of FE-analyses and experimental investigations. The theoretical model we introduced has a high computation accuracy both for conventional and modern chucks, such as power-operated wedge hook chucks with centrifugal force compensation. The exact computation of dynamic clamping force ensures a safe high-speed turning process, and makes it possible to fully utilize the potential of jaw-chucks at high rotational speeds. The study results provide reliable theoretical and technical supports for the optimization of the design and application of jaw-chucks.
机译:机床的主轴转速稳步成为更高的应用程序高速切削(HSC)技术。主轴转速会导致更大的要求夹紧系统。应用jaw-chucks夹紧工件在高速车削是巨大的离心力量作用于chuck-jaws。力降低的动态有效性夹紧力,使HSC过程危险。我们已经开发出一种计算模型确定的动态锁模力jaw-chucks在高速转动考虑刚度的影响查克和工件的行为。验证了通过FE-analyses和实验调查。我们介绍了具有很高的计算模型精度对传统和现代轻叩,如电动楔钩抛掷离心力补偿。计算动态锁模力确保了安全的高速切削过程,并使它可以充分利用的潜力jaw-chucks在高旋转速度。提供可靠的理论和结果技术支持的优化jaw-chucks的设计和应用。

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