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Inverse characterisation of frequency-dependent properties of adhesives

机译:粘合剂依赖性特性的逆表征

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Traditional damping treatments are usually applied to the vibrating structure by means of adhesive layers. Environmental parameters, such as frequencies of excitation, may influence the behaviour of the bonding layer and modify the damping efficiency of the treatment. Therefore it is desired to take into account the viscoelastic behaviour of the adhesive layer in the finite element model. The goal of this work is to present a procedure to characterise and model the adhesive layer. To that purpose, an experimental-numerical method for inverse characterisation of the frequency dependent properties of the adhesive layer is applied. The proposed inverse approach is based on a four-parameter fractional derivative model whose parameters are identified by minimising the difference between the simulated and the measured dynamic response of a multi-layered structure assembled by bonding. In the finite element model used for the optimisation, the adhesive layer is modelled by interface finite elements. The influence of the adhesive layer on the efficiency of a damping treatment is evidenced by performing dynamic testing on a sandwich structure with a viscoelastic core, assembled by bonding. The proposed approach is applied to the characterisation of a pressure-sensitive adhesive.
机译:通常通过粘合剂层将传统的阻尼处理应用于振动结构。环境参数,例如激发频率,可能影响粘合层的行为并改变治疗的阻尼效率。因此,希望考虑有限元模型中粘合剂层的粘弹性行为。这项工作的目标是提出一种程序来表征和模拟粘合剂层。为此目的,施加用于施加粘合层的频率依赖性性质的逆表征的实验 - 数值方法。所提出的逆方法基于四参数分数衍生模型,其通过最小化通过粘合组装的多层结构的模拟和测量的动态响应之间的差异来识别的参数。在用于优化的有限元模型中,粘合剂层通过接口有限元建模。粘合剂层对阻尼处理效率的影响通过在用粘合芯的夹层结构上进行动态测试,通过粘合组装。所提出的方法适用于压敏粘合剂的表征。

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