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Exploiting Continuous Scanning Laser Doppler Vibrometry in timing belt dynamic characterisation

机译:在同步带动态表征中利用连续扫描激光多普勒振动法

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Dynamic behaviour of timing belts has always interested the engineering community over the years. Nowadays, there are several numerical methods to predict the dynamics of these systems. However, the tuning of such models by experimental approaches still represents an issue: an accurate characterisation does require a measurement in operating conditions since the belt mounting condition might severely affect its dynamic behaviour. Moreover, since the belt is constantly moving during running conditions, non-contact measurement methods are needed. Laser Doppler Vibrometry (LDV) and imaging techniques do represent valid candidates for this purpose. This paper aims at describing the use of Continuous Scanning LDV (CSLDV) as a tool for the dynamic characterisation of timing belts in IC (Internal Combustion) engines (cylinder head). The high-spatial resolution data that can be collected in short testing time makes CSLDV highly suitable for such application. The measurement on a moving surface, however, represents a challenge for CSLDV. The paper discusses how the belt in-plane speed influences CSLDV signal and how an order-based multi-harmonic excitation might affect the recovery of Operational Deflection Shapes in a CSLDV test. A comparison with a standard Discrete Scanning LDV measurement is also given in order to show that a CSLDV test, if well designed, can indeed provide the same amount of information in a drastically reduced amount of time.
机译:同步带的动态行为多年来一直引起工程界的关注。如今,有几种数值方法可以预测这些系统的动力学。但是,通过实验方法对此类模型进行调整仍然存在一个问题:要准确地表征特性,就需要在操作条件下进行测量,因为皮带安装条件可能会严重影响其动态性能。此外,由于皮带在运行条件下不断移动,因此需要非接触式测量方法。激光多普勒振动法(LDV)和成像技术确实代表了用于此目的的有效候选者。本文旨在描述连续扫描LDV(CSLDV)作为动态表征IC(内燃机)发动机(气缸盖)正时皮带的工具的用途。可在短时间内收集到的高空间分辨率数据使CSLDV非常适合此类应用。但是,在移动表面上进行测量对于CSLDV来说是一个挑战。本文讨论了皮带平面速度如何影响CSLDV信号,以及在CSLDV测试中基于阶次的多谐波激励如何影响操作偏转形状的恢复。还给出了与标准离散扫描LDV测量值的比较,以表明CSLDV测试如果设计得当,确实可以在大大减少的时间内提供相同数量的信息。

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