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Modeling planar slider-crank mechanisms with clearance joints in RecurDyn

机译:在RecurDyn中使用间隙关节对平面滑块曲柄机构进行建模

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摘要

Revolute joints in applications always show clearance between pin and bushing due to manufacturing tolerances, the need of relative motion or progressing wear. Many researchers developed and investigated methodologies to calculate the dynamic behavior of mechanisms with such imperfect joints. Very often they use a simple slider-crank mechanism to test or demonstrate the capability of their approaches. In this paper, a methodology for simulating a slider-crank mechanism with an imperfect revolute joint in RecurDyn, a commercial multibody simulation tool, is presented. Therefore, a thorough investigation of existing contact, damping and friction force models as well as different ways of modeling revolute joints in RecurDyn was conducted. For the investigation of the damping models, a special program for calculating the model parameters for a given coefficient of restitution was developed. Only one damping model was capable of reproducing the experimental results, which were found in literature. Some characteristic results of the slider-crank mechanism are presented in a way that they can be compared to results in other papers. Thereby. a good correlation was achieved, demonstrating the capabilities of the methodology.
机译:由于制造公差,需要相对运动或不断磨损,在应用中的旋转接头始终显示出销钉和衬套之间的间隙。许多研究人员开发和研究了方法,以计算具有这种不完美关节的机构的动态行为。他们经常使用简单的曲柄曲柄机制来测试或演示其方法的功能。在本文中,提出了一种在商用多体仿真工具RecurDyn中模拟具有不完善的旋转关节的滑块-曲柄机构的方法。因此,对RecurDyn中现有的接触,阻尼和摩擦力模型以及旋转关节建模的不同方法进行了全面研究。为了研究阻尼模型,开发了一个用于计算给定恢复系数的模型参数的特殊程序。在文献中发现,只有一种阻尼模型能够再现实验结果。曲柄机构的一些特征性结果以可以与其他论文中的结果相比较的方式呈现。从而。实现了良好的相关性,证明了该方法的功能。

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