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Dynamic Modeling of Hydraulic Power Steering System with Variable Ratio Rack and Pinion Gear

机译:变比齿条齿轮传动的液压助力转向系统动力学建模

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摘要

A comprehensive mathematical model of a typical hydraulic power steering system equipped with variable ratio rack and pinion gear is developed. The steering system's dynamic characteristics are investigated and its forced vibrations are compared with those obtained from a counterpart system with a constant ratio rack and pinion gear. The modeling details of the mechanism subsystem, hydraulic supply lines subsystem and the rotary spool valve subsystem are provided and included in the integrated steering system model. The numerical simulations are conducted to investigate the dynamics of the nonlinear parametric steering system. From the comparison between simulated results and the experimental ones, it is shown that the model accurately integrates the boost characteristics of the rotary spool valve which is the key component of hydraulic power steering system. The variable ratio rack-pinion gear behaviors significantly differently from its constant ratio counterpart does. It significantly affects not only the system natural frequencies but also reduces vibrations under constant rate and ramp torque steering inputs. The developed steering model produces valid predictions of the system's behavior and therfore could assist engineers in the design and analysis of integrated steering systems.
机译:建立了配备可变比齿条和小齿轮的典型液压动力转向系统的综合数学模型。研究了转向系统的动态特性,并将其强迫振动与从具有恒定比率的齿条和小齿轮的配对系统获得的振动进行了比较。提供了机构子系统,液压供应管线子系统和旋转滑阀子系统的建模细节,并将其包含在集成转向系统模型中。进行数值模拟以研究非线性参数转向系统的动力学。从仿真结果与实验结果的比较表明,该模型准确地集成了液压油压转向系统关键部件旋转滑阀的增压特性。可变比齿条小齿轮的行为与恒定比齿条小齿轮的行为大不相同。它不仅显着影响系统的固有频率,而且还减少了恒定速率和斜坡转矩转向输入下的振动。开发的转向模型可以对系统的行为进行有效的预测,因此可以帮助工程师设计和分析集成式转向系统。

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