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Optimization of Steering System of Forklift Vehicle for Idle Performance

机译:怠速叉车转向系统的优化

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This paper presents an optimal design process for the steering system of a forklift vehicle. An efficient procedure for minimizing the engine-induced idle vibration is developed in this study. Reciprocating unbalance and gas pressure torque as two major sources of engine excitation are studied. Using the field vibration tests and FEM analysis, the cause and characteristics of steering system’s idle vibration are recognized. So as to distribute the characteristic modes based on the optimization strategy, global sensitivity analysis of the main parameters is also carried out to achieve the optimal combination of the optimization factors. Based on all analysis above, some structure modifications for optimization are presented to control the idle vibration. The effectiveness and rationality of the improvements are also verified through experimental prototyping testing. This study also makes it possible to provide a design guideline using CAE (computer aided engineering) analysis for some other objects.
机译:本文提出了叉车转向系统的最佳设计过程。在这项研究中,开发出了一种有效的方法来最小化发动机引起的怠速振动。研究了往复不平衡和气压转矩作为发动机励磁的两个主要来源。通过现场振动测试和FEM分析,可以识别转向系统空转振动的原因和特征。为了基于优化策略分配特征模式,还对主要参数进行了全局敏感性分析,以实现优化因子的最优组合。基于以上所有分析,提出了一些用于优化的结构修改,以控制空转振动。改进的有效性和合理性也通过实验原型测试进行了验证。这项研究还可能为使用CAE(计算机辅助工程)分析提供一些其他对象的设计指南。

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