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首页> 外文期刊>Mechanical systems and signal processing >Efficient Techniques For Forced Response Involving Linear Modal Components Interconnected By Discrete Nonlinearrnconnection Elements
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Efficient Techniques For Forced Response Involving Linear Modal Components Interconnected By Discrete Nonlinearrnconnection Elements

机译:涉及离散非线性连接元素互连的线性模态分量的强迫响应的有效技术

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摘要

Generally, response analysis of systems containing discrete nonlinear connection elements such as typical mounting connections require the physical finite element system matrices to be used in a direct integration algorithm to compute the nonlinear response analysis solution. Due to the large size of these physical matrices, forced nonlinear response analysis requires significant computational resources.rnUsually, the individual components of the system are analyzed and tested as separate components and their individual behavior may essentially be linear when compared to the total assembled system. However, the joining of these linear subsystems using highly nonlinear connection elements causes the entire system to become nonlinear. It would be advantageous if these linear modal subsystems could be utilized in the forced nonlinear response analysis since much effort has usually been expended in fine tuning and adjusting the analytical models to reflect the tested subsystem configuration.rnSeveral more efficient techniques have been developed to address this class of problem. Three of these techniques given as:rnequivalent reduced model technique (ERMT);rnmodal modification response technique (MMRT); andrncomponent element method (CEM);rnare presented in this paper and are compared to traditional methods.
机译:通常,包含离散非线性连接元素(例如典型的安装连接)的系统的响应分析需要在直接积分算法中使用物理有限元系统矩阵来计算非线性响应分析解决方案。由于这些物理矩阵的大小,强制非线性响应分析需要大量的计算资源。通常,系统的各个组件作为独立的组件进行分析和测试,并且与整个组装系统相比,它们的单个行为基本上是线性的。但是,使用高度非线性的连接元素将这些线性子系统连接在一起会导致整个系统变为非线性。如果可以将这些线性模态子系统用于强迫非线性响应分析,那将是有利的,因为通常会在精调和调整分析模型以反映被测子系统的配置方面投入大量精力。为了解决这个问题,人们开发了几种更有效的技术。问题类别。其中的三种技术为:等价简化模型技术(ERMT);模态修改响应技术(MMRT);本文提出并与传统方法进行比较。

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