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Dynamic analysis for planar multibody mechanical systems with lubricated joints

机译:带润滑接头的平面多体机械系统的动力学分析

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摘要

The dynamic analysis of planar multibody systems with revolute clearance joints, including dry contact and lubrication effects is presented here. The clearances are always present in the kinematic joints. They are known to be the sources for impact forces, which ultimately result in wear and tear of the joints. A joint with clearance is included in the multibody system much like a revolute joint. If there is no lubricant in the joint, impacts occur in the system and the correspondingimpulsive forces are transmitted throughout the multibody system. These impacts and the eventual continuous contact are described here by a force model that accounts for the geometric and material characteristics of the journal and bearing. In most of the machines and mechanisms, the joints are designed to operate with some lubricant fluid. The high pressures generated in the lubricant fluid act to keep the journal and the bearing surfaces apart. Moreover, the lubricant provides protection against wear and tear. The equations governing the dynamical behavior of the general mechanical systems incorporate the impact force due to the joint clearance without lubricant, as well as the hydrodynamic forces owing to the lubrication effect. A continuous contact model provides the intra-joint impact forces. The friction effects due to the contact in the joints are also represented. In addition, a general methodology for modeling lubricated revolute joints in multibody mechanical systems is also presented. Results for a slider-crank mechanism with a revolute clearance joint between the connecting rod and the slider are presented and used to discuss the assumptions and procedures adopted.
机译:本文介绍了带有旋转间隙接头的平面多体系统的动力学分析,包括干接触和润滑效果。间隙始终存在于运动关节中。众所周知,它们是冲击力的来源,最终导致关节的磨损。带有间隙的关节包含在多体系统中,就像旋转关节一样。如果接头中没有润滑剂,则会在系统中发生冲击,并且相应的冲力会在整个多体系统中传递。这些影响和最终的连续接触在这里通过力模型进行了描述,该模型考虑了轴颈和轴承的几何和材料特性。在大多数机器和机构中,接头设计为可使用一些润滑液。润滑油中产生的高压起到保持轴颈和轴承表面分开的作用。此外,润滑剂可提供抗磨损保护。控制通用机械系统动力学行为的方程式包含了由于没有润滑剂而产生的关节间隙的冲击力,以及由于润滑作用而产生的流体动力。连续接触模型提供了关节内的冲击力。还显示了由于关节接触而产生的摩擦效果。此外,还介绍了一种用于在多体机械系统中对润滑的旋转接头进行建模的通用方法。给出了在连杆和滑块之间具有旋转间隙接头的滑块-曲柄机构的结果,并用于讨论所采用的假设和程序。

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