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Structurally transmitted dynamic power in discretely joined damped component assemblies

机译:分立连接的阻尼组件中的结构传递动力

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In this paper, a formulation for computing the vibration transmitted among components joined at discrete locations is presented. The formulation is based on a component modal synthesis approach. Natural frequencies and modes of individual components subject to specific boundary conditions at joint locations are used to compute the modal properties of assemblies from a variational formulation. Lagrange multipliers are used to enforce constraints that motions of components be identical at joint locations, and the assembly forced response is obtained from the normal mode method. Since the Lagrange multipliers used to enforce the motion constraints are equal to the interfacial forces, evaluating these from the assembly response provides an efficient means for computing the dynamic forces and moments at joints and the mechanical power transmitted among components. The formulation is initially developed for proportionally damped assemblies. Because localized damping at joint locations is often the most significant source of damping in component assemblies, the modal synthesis and vibration transmission formulations are subsequently extended to structures with arbitrary viscous damping. Simple illustrative examples of proportionally damped and nonproportionally damped assemblies of lumped parameter systems are included.
机译:在本文中,提出了一种用于计算在离散位置连接的组件之间传递的振动的公式。该配方基于组分模态综合方法。在关节位置处受特定边界条件约束的单个零件的固有频率和模态,用于根据变化公式计算组件的模态特性。拉格朗日乘数用于强制约束,即零部件的运动在关节位置相同,并且装配强制响应可从常规模式方法获得。由于用于执行运动约束的拉格朗日乘子等于界面力,因此从装配响应中评估它们可以提供一种有效的方法来计算关节处的动态力和力矩以及组件之间传递的机械动力。该配方最初是针对比例阻尼组件开发的。由于在关节位置处的局部阻尼通常是组件装配中阻尼的最主要来源,因此模态合成和振动传递公式随后扩展到具有任意粘性阻尼的结构。包括集总参数系统的按比例阻尼和不按比例阻尼的组件的简单说明性示例。

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