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Optimization Design of a Six-Point Powetrain Mounting System with Flexible Support Rod

机译:柔性支撑杆六点动力总成安装系统的优化设计

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摘要

NVH quality is one of the most important criteria by which people judge the design of a vehicle. The Powertrain Mounting System (PMS), which can reduce the vibration from engine to vehicle cab as well as the inside noise, has attained significant attention. Much research has been done on the isolation method for three- and four-point mounting. But the six-point mounting system, which is usually equipped in commercial vehicle, is seldom studied and should be paid more attention. In this paper, the support rod installed on the upside of the transmission case is considered as a flexible body. Thus a rigid-flexible coupling model of PMS is established and the necessity of the established model is analyzed by comparing the simulation results of the new model and those of the conventional model. Based on the traditional theory of energy decoupling and reasonable allocation of the natural frequencies, Adams and MATLAB are integrated into the optimization software iSIGHT to optimize the six-point PMS. The orthogonal experiment is used to determine the main factors that affect the optimization objective and the initial design parameters for further optimization. The Mixed Integer Sequential Quadratic Programming (MISQP) is used to obtain an optimal model of PMS. Finally the dynamic frequency response method is used to validate the optimal model.
机译:NVH质量是人们判断车辆设计的最重要标准之一。动力总成安装系统(PMS)可以减少发动机到驾驶室之间的振动以及内部噪音,因此受到了广泛的关注。对于三点和四点安装的隔离方法已经进行了很多研究。但是,通常在商用车中配备的六点安装系统很少被研究,应该引起更多的注意。在本文中,安装在变速箱上方的支撑杆被视为柔性体。因此,建立了PMS的刚柔耦合模型,并通过比较新模型和常规模型的仿真结果来分析建立模型的必要性。基于传统的能量耦合理论和固有频率的合理分配,将Adams和MATLAB集成到优化软件iSIGHT中,以优化六点PMS。正交实验用于确定影响优化目标的主要因素以及用于进一步优化的初始设计参数。混合整数顺序二次规划(MISQP)用于获得PMS的最佳模型。最后,采用动态频率响应方法对最优模型进行验证。

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