首页> 外文会议>International Conference on Computational Methods and Experimental Measurements(CMEM XII); 2005; Malta(MT) >Static and dynamic properties of a motorcycle frame: experimental and numerical approach
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Static and dynamic properties of a motorcycle frame: experimental and numerical approach

机译:摩托车车架的静态和动态特性:实验和数值方法

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It is well known how the main frame of a motorcycle plays an important rule in vehicle dynamics. In order to understand the main influences of this component, a dedicated test rig was design and realized. Numerical and experimental experiences were done with the aim to identify static stiffness, natural frequencies and vibration modes of a motorcycle frame. A dedicated test rig was designed and realized in order to load the chassis in torsional and flexural configuration, both within and without the engine. By the use of a hydraulic actuator, displacement controlled, a load ramp was applied to stress the frame in elastic yield, as in real conditions, and the structure flexure was measured with laser transducers. The test rig components were monitored by the use of laser transducers in order to include constraints compliances into the identification step. In this phase, the flexural and torsional static stiffness of the main frame were identified, paying attention to distinguish the engine's contribute. A modal analysis, processing experimental date, was performed using the frequency response function measured in six different points of the frame. Natural frequencies, deflection modes and damping were identified. At the same time, a detailed numerical model of the main frame was developed. It was processed by the use of the finite element method in order to reproduce the experimental experiences. Numerical and experimental results were compared to validate the model of the chassis. All the obtained parameters are mainly being used in a dynamic study of motorcycle behaviour. Firstly, identified stiffness will be implemented as concentred springs, obtaining a significant model of the vehicle. Following this a multi-body model of the vehicle will be defined, including deformability of structures, using modal coordinates, and just introducing the most interesting modes.
机译:众所周知,摩托车的主机架是如何在车辆动力学中起重要作用的。为了了解该组件的主要影响,设计并实现了专用的测试台。为了确定摩托车车架的静态刚度,固有频率和振动模式,进行了数值和实验经验。设计并实现了专用的测试设备,以便在发动机内部和外部均以扭转和弯曲配置加载底盘。与实际情况一样,通过使用受位移控制的液压致动器,施加负载斜坡以弹性屈服对框架施加应力,并使用激光换能器测量结构的挠曲度。通过使用激光换能器来监控测试装置的组件,以便将约束条件合规性包括在识别步骤中。在此阶段,确定了主机架的挠曲和扭转静态刚度,并注意区分发动机的作用。使用在框架的六个不同点测得的频率响应函数进行模态分析,处理实验数据。确定了固有频率,偏转模式和阻尼。同时,开发了主机的详细数值模型。为了再现实验经验,使用了有限元方法对其进行了处理。比较了数值和实验结果以验证底盘模型。所有获得的参数主要用于摩托车行为的动态研究。首先,将确定的刚度实现为集中弹簧,从而获得车辆的重要模型。在此之后,将定义车辆的多体模型,包括结构的可变形性,使用模态坐标并仅介绍最有趣的模式。

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