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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Belt-Drive Mechanics: Friction in the Absence of Sliding
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Belt-Drive Mechanics: Friction in the Absence of Sliding

机译:皮带驱动力学:在没有滑动的情况下摩擦

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摘要

Recent studies have shown that steady and unsteady operation of a belt drive may exhibit regimes absent of sliding at the belt-pulley interface, where instead detachment waves serve to relax stress in the so-called "slip" arc. To explore this finding further, herein we present an experimental and theoretical investigation into frictional mechanics in a simple belt drive system. To estimate friction experimentally, we perform a stress analysis based on spatio-temporal measurements of the belt tension, traction, and contact area evolution. Subsequently, we develop a model taking into account both bulk and surface hysteretic losses to explain the experimental observations. Our results show that the shear strain at the belt-pulley interface differs significantly between the driver and the driven pulleys, resulting in much larger mechanical losses in the driver case. The shear strain drops at the transition from the adhesion to the slip arc, and, in contrast to accepted theories, the slip arc contributes little to nothing to the power transmission. Our model reveals that the contact area evolution correlates to the shear traction changes and that viscoelastic shear and stretching dominate in the belt rolling friction. A significant contribution of detachment waves to the energy dissipation explains the higher mechanical losses observed in the driver case.
机译:最近的研究表明,皮带驱动器的稳定和不稳定的操作可以在皮带轮界面上缺席的制度,而代替脱离波用于在所谓的“滑动”弧中放松应力。为了进一步探索这一发现,这里我们向简单皮带驱动系统中的摩擦力学展示了一种实验和理论研究。为了实验估计摩擦,我们基于皮带张力,牵引力和接触面积演化的时空测量来执行应力分析。随后,我们制定模型考虑到散装和表面滞后损失以解释实验观察。我们的研究结果表明,皮带轮界面的剪切应变在驾驶员和从动滑轮之间显着不同,导致驱动器壳体中的机械损耗大得多。剪切应变从粘附到滑动弧的过渡处下降,并且与接受的理论相比,滑弧对动力传输有没有贡献。我们的型号揭示了接触区域的进化与剪切牵引变化以及粘弹性剪切和拉伸支配在带滚动摩擦中的抗剪切和拉伸。分离波对能量耗散的显着贡献解释了驱动器壳体中观察到的较高的机械损失。

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