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41.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(3):421-442
This paper presents the influence of dynamic and geometrical soil parameters on the propagation of ground vibrations induced by external loads. The proposed approach is based on a three-dimensional model, focusing on realistic excitation sources like impulse loads and moving railway vehicles. For the latter, a complete vehicle/track model is developed. The simulation is performed in time domain, offering an interesting approach, compared with classic cyclic analyses. The ground is modelled initially as an elastic homogeneous half-space and additionally as a layered half-space. First, the effect of homogeneous soil properties on ground vibration is analysed. Soil stratification is then taken into account, using various configurations. Analysis reveals that as receiver distance increases ground wave reflection in a layered ground plays an important role in the reduction of ground surface motion. This effect is magnified when the phase velocity wavelength becomes large compared with the depth of the surface layer. 相似文献
42.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(6):711-733
The traction control system (TCS) might prevent excessive skid of the driving wheels so as to enhance the driving performance and direction stability of the vehicle. But if driven on an uneven low-friction road, the vehicle body often vibrates severely due to the drastic fluctuations of driving wheels, and then the vehicle comfort might be reduced greatly. The vibrations could be hardly removed with traditional drive-slip control logic of the TCS. In this paper, a novel fuzzy logic controller has been brought forward, in which the vibration signals of the driving wheels are adopted as new controlled variables, and then the engine torque and the active brake pressure might be coordinately re-adjusted besides the basic logic of a traditional TCS. In the proposed controller, an adjustable engine torque and pressure compensation loop are adopted to constrain the drastic vehicle vibration. Thus, the wheel driving slips and the vibration degrees might be adjusted synchronously and effectively. The simulation results and the real vehicle tests validated that the proposed algorithm is effective and adaptable for a complicated uneven low-friction road. 相似文献
43.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(12):1935-1951
In this study, in order to examine the effects of a wheelset driving system suspension parameters on the re-adhesion performance of locomotives, the stick–slip vibration was analysed according to theoretical and simulation analysis. The decrease of the slip rate vibration amplitude improved the stability of the stick–slip vibration and the re-adhesion performance of locomotives. Increasing the longitudinal guide stiffness of the wheelset and the motor suspension stiffness were proposed as effective measures to improve the re-adhesion performance of locomotives. These results showed that the dynamic slip rate was inversely proportional to the series result of the square root of the longitudinal guide and motor suspension stiffness. The larger the motor suspension stiffness was, the smaller the required longitudinal guidance stiffness was at the same re-adhesion time once the wheel slip occurred, and vice versa. The simulation results proved that the re-adhesion time of the locomotive was approximately proportional to amplitude of the dynamic slip rate. When the stick–slip vibration occurred, the rotary and the longitudinal vibrations of the wheelset were coupled, which was confirmed by train's field tests. 相似文献
44.
超深振捣对混凝土成品质量有害无益,研究超深振捣引起模板侧压力增大的规律,可为规避其害提供依据。为此设计4个混凝土墙体试件,实测在浇筑过程中模板侧压力的变化情况。基于振捣液化和液体压力平衡理论,建立了超深振捣情况下混凝土模板侧压力计算模型,推导了计算公式,并与实验数据进行对比验证。研究结果表明,振捣深度是影响混凝土墙体模板侧压力的重要因素,本文提出的计算模型能很好地预测墙体结构超深振捣位置的模板侧压力。 相似文献
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以船用大功率低速柴油机柔性体曲轴为对象,在考虑气体力、运动部件惯性力、扭纵耦合效应等因素的情况下,建立曲轴、连杆、活塞的刚柔混合动力学模型。通过数值仿真,分别对连杆推力、连杆法向力和切向力对曲轴轴向振动的影响进行分析。分析结果表明:法向力是曲轴轴向振动的直接激励源,切向力是曲轴轴向振动的间接激励源-切向力引起曲轴扭振,进而引起曲轴纵振;同时法向力和切向力对曲轴轴向振动的影响非常相近;而连杆推力(法向力和切向力合力)引起的曲轴轴向振动是扭纵耦合振动的结果,并非两种分力作用结果的简单叠加。 相似文献
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49.
环向加肋对充液圆柱壳振动特性的影响分析 总被引:1,自引:0,他引:1
文章研究了环向加肋对充液圆柱壳耦合振动的影响。基于Love壳体理论,考虑壳体内部完全充液,采用波动法建立充液环肋圆柱壳耦合振动的频率特征方程,得到了不同边界条件下的耦合频率值。通过与已有文献数据对比,验证了文中研究方法的有效性和正确性。最后通过算例,分析了环肋参数对充液圆柱壳结构耦合振动的影响。结果表明,肋骨尺寸、数目的增加,对充液圆柱壳振动频率的提升影响明显,而内、外加肋形式所产生的影响则相对有限;肋骨对频率的影响主要表现在周向波数较大时;肋骨高度变化对耦合振动频率的影响更明显。 相似文献
50.
为确保带减速齿轮箱主推进系统的可靠性,文章对船舶轴系的扭转振动进行了研究。首先根据各组成部件的特点将轴系分解为连续和离散的两个子系统,分别利用波分析法和多自由度系统分析法列出连续子系统的波动形式及离散子系统的振动微分方程,同时考虑了减速齿轮箱油膜刚度的影响。然后根据两子系统连接处的动态平衡和连续条件,建立整个轴系在扭转振动模式下总运动方程,通过求解总方程得到系统的位移响应。该扭转振动分析被应用到某LNG船带减速齿轮箱的轴系振动计算中,通过考虑轴系减速齿轮箱啮合齿面间油膜刚度使轴系扭转振动模型更接近轴系实际运转工况。计算结果显示:随着减速齿轮箱啮合齿面间油膜刚度的增加,最大轴系扭转应力向低转速区域偏移。这对船舶轴系转速禁区的划分产生极大的影响。有助于防止因不良轴系振动计算引起轴系事故的发生。 相似文献