三轴矿用自卸车新型液压互联悬挂系统的多目标参数优化

IF 2.3 3区 工程技术 Q2 ACOUSTICS
Gangfeng Wang, Wanting Wang, Xuefeng Suo, Teng Du, Di Wang, Xiang Liu
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引用次数: 0

摘要

矿区恶劣的工作环境对矿用自卸车悬挂系统的性能提出了严格的要求。为提高三轴矿用自卸车的抗俯仰和抗侧翻能力,提出了一种新型液压互联悬架系统,包括前桥左右轮互联和中后桥(X-HIS)X交叉互联。分析了 X-HIS 的参数敏感性,并对重要参数进行了优化。具体而言,基于阻抗矩阵传递法建立了车辆机械液压耦合模型。结合道路频谱密度矩阵得到目标函数,并通过矿用自卸车蓄能器压力实验验证了模型的准确性。随后,应用 Morris 方法分析了悬架参数对弹跳、俯仰和滚动模态振动的敏感性。结果表明,敏感参数为前蓄能器的初始压力和体积、阻尼孔内径、中后蓄能器的初始压力以及气缸上下腔的面积比。帕累托解集表明,X-HIS 的抗俯仰和抗侧倾能力之间不存在冲突。优化后的 X-HIS 提高了车辆的驾乘舒适性和抗侧倾能力,平衡了抗俯仰性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-objective parameter optimization of a novel hydraulically interconnected suspension for tri-axle mining dump trucks
The harsh working environment in the mining area has put strict requirements for the suspension system performance of mining dump trucks. To improve the anti-pitch and anti-roll ability of tri-axle mining dump trucks, a new type of hydraulically interconnected suspension system is proposed, including the left-right wheel interconnection in front axle and X-cross interconnection in mid-rear axle (X-HIS). The parameter sensitivity of X-HIS is analyzed, and the significant parameters are optimized. Specifically, a vehicle mechanical-hydraulic coupling model is established based on impedance matrix transfer method. The objective functions are obtained by combining the road spectral density matrix, and accuracy of the model is verified by the accumulator pressure experiment of the mining dump truck. Subsequently, the Morris method is applied to analyze the sensitivity of suspension parameters to the bounce, pitch, and roll modes vibration. The results indicate that the sensitive parameters are the initial pressure and volume of the front accumulator, the inner diameter of damping hole, the initial pressure of mid-rear accumulator, and the area ratio of upper and lower chamber of cylinder. The Pareto solution set shows that there is no conflict between the anti-pitch and anti-roll capabilities of X-HIS. The optimized X-HIS improves the ride comfort and anti-roll ability of the vehicle and balances the anti-pitch performance.
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来源期刊
Journal of Vibration and Control
Journal of Vibration and Control 工程技术-工程:机械
CiteScore
5.20
自引率
17.90%
发文量
336
审稿时长
6 months
期刊介绍: The Journal of Vibration and Control is a peer-reviewed journal of analytical, computational and experimental studies of vibration phenomena and their control. The scope encompasses all linear and nonlinear vibration phenomena and covers topics such as: vibration and control of structures and machinery, signal analysis, aeroelasticity, neural networks, structural control and acoustics, noise and noise control, waves in solids and fluids and shock waves.
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