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Substructuring using Impulse Response Functions for Impact Analysis

机译:利用脉冲响应函数进行影响分析的子结构

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In the present paper we outline the basic theory of assembling substructures for which the dynamics is described as impulse response functions. The assembly procedure computes the time response of a system by evaluating per substructure the convolution product between the impulse response functions and the applied forces, including the interface forces that are computed to satisfy the interface compatibility. We call this approach the Impulse Based Substmcturing method since it transposes to the time domain the Frequency Based Substmcturing approach. In the Impulse Based Substmcturing technique the impulse response functions of the substructures can be gathered either from experimental test using a hammer impact or from time-integration of numerical submodels. In this paper the implementation of the method is outlined for the case when the impulse responses of the substructures are computed numerically. A simple bar example is shown in order to illustrate the concept. Future work will concentrate on including in the assembly measured substructure impulse responses. The Impulse Based Substructuring allows fast evaluation of impact response of a structure when the impulse response of its components are known. It can thus be used to efficiently optimize designs of consumer products by including impact behavior at the early stage of the design.
机译:在本文中,我们概述了组装子结构的基本理论,其中动态被描述为脉冲响应函数。组装过程通过在脉冲响应函数和所应用的力之间的卷积产品(包括计算为满足所述接口兼容性的接口力)来计算系统的时间响应。我们称之为这种方法基于脉冲的倒置方法,因为它传递到时域的基于频率的倒置方法。在基于脉冲的刻伤技术中,可以使用锤击或从数值子模型的时间集成来从实验测试中收集子结构的脉冲响应函数。在本文中,当数值计算子结构的脉冲响应时,对该方法的实现是概述的。示出了一个简单的条形图,以便说明概念。未来的工作将集中注意,包括集会中的测量子结构脉冲响应。基于脉冲的子结构允许在已知其组分的脉冲响应时快速评估结构的影响。因此,它可以用于通过在设计的早期阶段包括影响行为,有效地优化消费产品的设计。

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