优化沥青-摊铺机振动筛分系统工作参数,提高压实效率和路面质量,提高车辆行驶性能

IF 2.8 Q2 TRANSPORTATION SCIENCE & TECHNOLOGY SAE International Journal of Vehicle Dynamics Stability and NVH Pub Date : 2023-05-22 DOI:10.4271/10-07-02-0015
Yu Xiu, Anding Li, V. Nguyen, Yundong Mei, Qian Li, Jianwei Li
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引用次数: 0

摘要

沥青-摊铺机振动压实系统(AP-VSS)的工作参数,包括夯实机和振动压实机的激振频率(ft和fs)以及夯实机的角偏差(α 1和α 2),不仅影响路面质量,而且影响压实效率。基于AP-VSS的动力学模型和捣固机与热拌沥青的相互作用模型,对AP-VSS进行了实验和数值模拟研究,详细分析了AP-VSS的运行参数对AP-VSS路面质量和压实效率的影响。均方根加速度的最大值(ar.m。AP-VSS的均方根压实力最大值(Fr.m。选取捣固者的S)作为目标函数。试验和仿真结果表明,采用AP-VSS设计参数后,AP-VSS的路面质量和压实效率较低。为了提高AP-VSS的性能,采用多目标优化算法对运行参数进行优化。优化结果表明,捣固器与热混合沥青相互作用的压缩能比未优化时提高了36.2%。与此同时,未经优化的热混合沥青相比,ar.m.s和Fr.m.s值在铺层地板和表面长度上均有所增加,且分布均匀。因此,AP-VSS的路面质量和压实效率得到了显著提高。
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Optimization of Operating Parameters of the Asphalt-Paver Vibration-Screed System in Improving Compaction Efficiency and Pavement Quality for Driving Vehicle Performance
The operating parameters of the asphalt-paver vibration-screed system (AP-VSS) including the excitation frequencies of the tampers and vibratory screed (ft and fs ) and the angular deviations of the tampers (α 1 and α 2) affect not only the pavement quality but also compaction efficiency. Based on the dynamic model of the AP-VSS and the interaction model of the tamper and hot-mixed asphalt, the experimental and numerical simulation studies of AP-VSS are performed to analyze in detail the influence of operating parameters of the AP-VSS on AP-VSS pavement quality and compaction efficiency. The maximum value of the root-mean-square acceleration (ar.m.s ) of the AP-VSS and the maximum value of the root-mean-square compaction force (Fr.m.s ) of the tampers are selected as the objective functions. The experimental and simulation results indicate that by using the AP-VSS design parameters, the pavement quality and compaction efficiency of the AP-VSS are quite low. To enhance the AP-VSS performance, the operation parameters are then optimized by the multi-objective optimization algorithm. The optimal result shows that the compression energy of the tampers and hot-mixed asphalt interaction is greatly increased by 36.2% in comparison without the optimization. Concurrently, both the values of ar.m.s and Fr.m.s are also increased and uniformly distributed over the length of the screed floor and surface of the hot-mixed asphalt in comparison without the optimization. Therefore, the pavement quality and compaction efficiency of the AP-VSS are remarkably improved.
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Reviewers Contribution to the Objective Evaluation of Combined Longitudinal and Lateral Vehicle Dynamics in Nonlinear Driving Range Active Vibration Control of Electric Drive System in Electric Vehicles Based on Active Disturbance Rejection Current Compensation under Impact Conditions Damping Magnetorheological Systems Based on Optimal Neural Networks Preview Control Integrated with New Hybrid Fuzzy Controller to Improve Ride Comfort Letter from the Special Issue Editors
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