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Honeycomb Paperboard Dynamic Properties Modeling and Parameters Estimation Using Free Response Data

机译:蜂窝纸板动态属性建模和参数使用自由响应数据估算

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摘要

A linear differential equation is adopted to account for the complexity of honeycomb paperboard properties under static and dynamic conditions. Based on the Laplace transform, honeycomb paperboard is modeled as a linear material with viscoelastic property. The free response of the mass loaded honeycomb paperboard system is expressed as the sum of complex exponentials. The residues and eigenvalue are obtained accurately using the structured nonlinear total least norm(SNTLN) method. A parameters estimation procedure is formulated using a substitution strategy. A experiment system is set up, a series of tests is carried out under different load condition, the free response data of the mass loaded honeycomb paperboard system are recorded and they are used to estimate the parameters. The stiffness coefficients, damping coefficients and viscoelastic coefficients are presented as the function of the load. The model in this work can be used to simulate the response of the mass loaded honeycomb paperboard system under shock condition.
机译:采用线性微分方程来考虑静态和动态条件下蜂窝纸板性能的复杂性。基于拉普拉斯变换,蜂窝纸板被建模为具有粘弹性性能的线性材料。大量装载蜂窝纸板系统的自由响应表示为复杂指数的总和。使用结构化非线性总量最低(SNTLN)方法精确地获得残留物和特征值。使用替代策略制定参数估计程序。建立了实验系统,在不同的负载条件下进行了一系列测试,记录了大规模装载蜂窝纸板系统的自由响应数据,它们用于估计参数。刚度系数,阻尼系数和粘弹性系数被呈现为负载的功能。该工作中的模型可用于模拟震动条件下批量装载蜂窝纸板系统的响应。

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