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Optimization of transmission angle for slider-crank mechanism with joint clearances

机译:带关节间隙的曲柄滑块机构的传动角的优化

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In this study, kinematic analysis of a planar slider-crank mechanism having revolute joints with clearances was presented. Joint clearance was modelled as a massless virtual link, and Multi-Layered Neural Network (MLNN) structure was used for approximating the motion of this link with respect to the position of input link. Training and testing data sets for the neural network were obtained from mechanism simulation using the ADAMS software. A genetic algorithm was also used to optimize the design parameters for minimizing the deviations due to clearances. When two joint clearances at crank-pin and piston-pin centers were considered, the effects of these clearances on the kinematic characteristics and transmission quality of the mechanism were investigated using continuous contact model between the journal and bearing at a joint.
机译:在这项研究中,运动学分析了具有间隙的旋转接头的平面滑块曲柄机构。将关节​​间隙建模为无质量的虚拟链接,并使用多层神经网络(MLNN)结构来近似此链接相对于输入链接位置的运动。使用ADAMS软件从机构仿真中获得了神经网络的训练和测试数据集。遗传算法还用于优化设计参数,以最小化由于间隙引起的偏差。当考虑曲柄销和活塞销中心的两个关节间隙时,使用轴颈和关节处轴承之间的连续接触模型研究了这些间隙对机构的运动特性和传动质量的影响。

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