首页> 外文期刊>Journal of vibration and control: JVC >Refined response axis decoupling axiom for a coupled vibrating system with spectrally-varying mount properties
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Refined response axis decoupling axiom for a coupled vibrating system with spectrally-varying mount properties

机译:具有光谱 - 不同安装特性的耦合振动系统的精制响应轴解耦公理

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摘要

Real-life engine mounts inherently exhibit considerable frequency- and amplitude-dependent characteristics, and the base flexibility has a significant effect on engine vibration and forces transmitted to the vehicle body. A new analytical formulation is proposed that incorporates spectrally-varying stiffness and damping properties of multi-dimensional mounts in the presence of a compliant base (with many vibration modes over the applicable lower frequency regime). A refined analytical axiom for the response axis decoupling of coupled system is also mathematically formulated using spectral response axis decoupling indices. Two examples are chosen to prove the refined axiom. Firstly, a powertrain mounting system with two hydraulic mounts is redesigned in terms of their stiffness and damping properties, and mount locations for both powertrain and sub-frame systems used the refined axiom in torque roll axis (TRA) direction. Frequency and time domain results demonstrate that the TRA of the redesigned powertrain mounting system is indeed decoupled from other powertrain motions. The effects of parameter uncertainties on the response axis decoupling indices are also examined. Then, a laboratory experiment consisting of a powertrain, three powertrain mounts including two hydraulic mounts, a sub-frame, and four bushings is then used to mathematically validate the refined axiom in vertical axis direction. The quasi-linear system formulation of the coupled system is also verified by comparing the frequency responses with the results obtained by the direct (matrix) inversion method and measurements.
机译:现实生活中的发动机悬置固有地表现出相当大的频率和振幅依赖性特征,并且基座柔性对发动机振动和传递到车身的力有显著影响。提出了一种新的分析公式,该公式结合了在柔顺基座(在适用的低频范围内具有许多振动模式)存在的多维支座的谱变刚度和阻尼特性。利用谱响应轴解耦指数,从数学上建立了耦合系统响应轴解耦的精确解析公理。选择两个例子来证明改进的公理。首先,根据刚度和阻尼特性重新设计了带有两个液压支座的动力总成悬置系统,并在扭矩滚动轴(TRA)方向上使用改进的公理对动力总成和副车架系统的悬置位置进行了重新设计。频域和时域结果表明,重新设计的动力总成悬置系统的TRA确实与其他动力总成运动解耦。还研究了参数不确定性对响应轴解耦指标的影响。然后,通过一个由动力总成、三个动力总成悬置(包括两个液压悬置)、一个副车架和四个衬套组成的实验室实验,在垂直轴方向上对改进的公理进行数学验证。通过将频率响应与直接(矩阵)反演方法和测量结果进行比较,验证了耦合系统的拟线性系统公式。

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