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Experimental and numerical study of Bondura~R 6.6 PIN joints

机译:邦德拉〜R 6.6销接缝的实验和数值研究

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Pin joints are widely used in heavy-duty machinery such as aircrafts, cranes and offshore drilling equipment to transfer multi-dimensional shear forces. Their strength and service life depend on the clamping force in the contact region that is provided hy interference fits. Though the interference fits provide full contact at the pin-hole interface under pretension loads, the contact interface reduces when the pin is subjected to an external load and hence a smaller contact surface leads to dramatic increase of the contact stress. The PIN joint of Bondura~R Technology, investigated in this study, is an innovative solution intended to reduce the slack at the contact surface of the pin joint of heavy-duty machinery by using tapered sleeves on each end of the PIN. The study is aimed to better understand the contact pressure build-up and stress distribution in the supporting contact surface under pre-loading of the joint and the influence of temperature difference between part assembly and operation conditions. Numerical simulation using finite element method and diverse experimental tests were conducted. The numerical simulation and the test results, particularly the tests conducted with lubricated joints, show good conformance.
机译:引脚接头广泛用于重型机械,如飞机,起重机和海上钻井设备,以转移多维剪切力。它们的强度和使用寿命取决于接触区域中的夹紧力,该夹紧力提供了高温干涉配合。虽然干涉配合在预载荷下在引脚孔界面处提供完全接触,但是当销经受外部负载时,接触界面减小,并且因此较小的接触面导致接触应力的显着增加。在本研究中调查的Bondura〜R技术的PIN接头是一种创新的解决方案,旨在通过在销的每一端上使用锥形套管来减少重型机械的引脚接头的接触表面的松弛。该研究旨在在接头的预装载和部件组件和操作条件之间的影响和操作条件之间的影响下,更好地了解支撑接触表面中的接触压力积聚和应力分布。进行了使用有限元方法和不同实验测试的数值模拟。数值模拟和测试结果,特别是用润滑关节进行的测试,表现出良好的一致性。

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