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Dynamics of multilayered viscoelastic beams

机译:多层粘弹性梁的动力学

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摘要

Viscoelastic materials store as well as dissipate energy to the thermal domain under deformation. Two efficient modelling techniques reported in literature use coupled (thermo-mechanical) ATF (Augmenting Thermodynamic Fields) displacements and ADF (Anelastic Displacement Fields) displacements, to represent the constitutive relationship in time domain by using certain viscoelastic parameters. Viscoelastic parameters are first extracted from the storage modulus and loss factor normally reported in hand books with the help of Genetic Algorithm and then constitutive relationships are used to obtain the equations of motion of the continuum after discretizing it with finite beam elements. The equations of motion are solved to get the frequency response function and modal damping ratio. The process may be applied to study the dynamic behaviour of composite beams and rotors comprising of several viscoelastic layers. Dynamic behaviour of a composite beam, formed by concentric layers of steel and aluminium is studied as an example.
机译:粘弹性材料在变形时将能量存储并散发到热域。文献中报道了两种有效的建模技术,它们使用耦合的(热机械)ATF(增强热力学场)位移和ADF(非弹性位移场)位移,通过使用某些粘弹性参数来表示时域的本构关系。首先通过遗传算法从通常在手册中报告的储能模量和损耗因子中提取粘弹性参数,然后使用本构关系在用有限梁单元离散化连续体后获得连续体的运动方程。求解运动方程,得到频率响应函数和模态阻尼比。该方法可用于研究由多个粘弹性层组成的复合梁和转子的动力特性。以钢和铝的同心层组成的复合梁的动力特性为例进行了研究。

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