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A parameters optimization method for planar joint clearance model and its application for dynamics simulation of reciprocating compressor

机译:平面关节间隙模型的参数优化方法及其在往复式压缩机动力学仿真中的应用

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摘要

In order to improve the accuracy of dynamics response simulation for mechanism with joint clearance, a parameter optimization method for planar joint clearance contact force model was presented in this paper, and the optimized parameters were applied to the dynamics response simulation for mechanism with oversized joint clearance fault. By studying the effect of increased clearance on the parameters of joint clearance contact force model, the relation of model parameters between different clearances was concluded. Then the dynamic equation of a two-stage reciprocating compressor with four joint clearances was developed using Lagrange method, and a multi-body dynamic model built in ADAMS software was used to solve this equation. To obtain a simulated dynamic response much closer to that of experimental tests, the parameters of joint clearance model, instead of using the designed values, were optimized by genetic algorithms approach. Finally, the optimized parameters were applied to simulate the dynamics response of model with oversized joint clearance fault according to the concluded parameter relation. The dynamics response of experimental test verified the effectiveness of this application. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了提高关节间隙机构动力学响应仿真的精度,提出了一种平面关节间隙接触力模型的参数优化方法,并将优化后的参数应用于关节间隙过大的机构的动力学响应仿真。故障。通过研究间隙增加对关节间隙接触力模型参数的影响,得出了模型参数在不同间隙之间的关系。然后利用拉格朗日方法建立了具有四个关节间隙的两级往复式压缩机的动力学方程,并利用ADAMS软件建​​立的多体动力学模型对该方程进行求解。为了获得更接近实验测试的模拟动态响应,通过遗传算法方法优化了关节间隙模型的参数,而不使用设计值。最后,根据所得出的参数关系,采用优化的参数来模拟具有超大间隙间隙故障的模型的动力学响应。实验测试的动力学响应证明了该应用程序的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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