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Finite element modeling of sandwich structures with viscoelastic core.

机译:具有粘弹性芯层的夹心结构的有限元建模。

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摘要

The present study emerges from the need for reduction of noise and vibrations in almost all industrial fields and the need for an accurate and reliable low-cost numerical model capable of predicting the vibro-acoustic response of structures containing viscoelastic materials. Indeed, the use of steel/viscoelastic/steel sandwich panels has motivated the development of accurate prediction methods for their vibration and acoustic indicators. Moreover, such theories may support the development of new damping materials while prioritizing strategies for low cost and weight and maintaining component rigidity and feasibility.A new sandwich finite element is presented for the specific case of unsymmetrical three-layered damped sandwich beam with internal viscoelastic damping. The model is based on a discrete displacement approach and accounts for the curvature effect. The element uses C° continuous linear and cubic polynomials to interpolate the in-plane and transverse displacement fields, respectively. The rotational influence of the transversal shearing in the core on the skins' behaviours ensures displacement consistency over the interfaces between the viscoelastic core and the elastic skins, resulting in accurate representations of the physics. To take the frequency dependence into account, viscoelastic models such as ADF, GHM and MSE models are implemented. The element is extended to the vibration of unsymmetrical damped sandwich plates. Two efficient finite element sandwich plates are developed refined rectangular and triangular elements having four and three-corner nodes, respectively. Each node of both elements contains seven degrees of freedom. To allow for analysis with arbitrary orientation in three-dimensional space, two drilling degrees of freedom are added. A formulation with nine degrees of freedom per node is thus employed. The present sandwich element is easy to interface with classical elements. The element is fully validated through both experimental tests and classical 3D FE modeling to prove its accuracy and computational efficiency. The tests consist of various configurations of sandwich panels in a coupled and uncoupled plate-cavity system. A parametric study is finally presented to highlight the effects of skin and core properties on the vibration and radiation of such structures under both airborne and structure-borne excitations. Finally, to illustrate practical use of the element, NVH simulations were conducted on laminated steel panels with added sound packages and compared to steel panels.
机译:本研究源于几乎所有工业领域中对降低噪声和振动的需求,以及对能够预测包含粘弹性材料的结构的声声响应的准确可靠的低成本数值模型的需求。确实,钢/粘弹性/钢夹芯板的使用促进了其振动和声学指标的精确预测方法的发展。此外,这些理论可能会支持新型阻尼材料的开发,同时优先考虑低成本和轻量化的策略,并保持组件的刚度和可行性。针对不对称三层阻尼夹层梁内部粘弹性阻尼的特殊情况,提出了一种新的夹层有限元。 。该模型基于离散位移方法,并说明了曲率效应。该单元使用C&deg连续线性多项式和三次多项式分别对平面内和横向位移场进行插值。芯部中的横向剪切对表皮行为的旋转影响确保了粘弹性芯部和弹性表皮之间的界面上的位移一致性,从而获得了精确的物理表示。为了考虑频率依赖性,实现了诸如ADF,GHM和MSE模型的粘弹性模型。该单元扩展到非对称阻尼夹心板的振动。开发了两个有效的有限元夹层板,分别具有四个和三个角节点的精制矩形和三角形单元。两个元素的每个节点都包含七个自由度。为了允许在三维空间中以任意方向进行分析,添加了两个钻孔自由度。因此采用每个节点具有九个自由度的公式。本发明的夹心元件易于与经典元件连接。该元素已通过实验测试和经典3D FE建模进行了充分验证,以证明其准确性和计算效率。测试包括耦合和非耦合板腔系统中夹心板的各种配置。最后进行了一项参数研究,以突出表皮和核心特性对这种结构在空中和结构激励下的振动和辐射的影响。最后,为了说明该元件的实际用途,在添加了隔音包装的层压钢板上进行了NVH模拟,并与钢板进行了比较。

著录项

  • 作者

    Amichi, Kamel.;

  • 作者单位

    Universite de Sherbrooke (Canada).;

  • 授予单位 Universite de Sherbrooke (Canada).;
  • 学科 Engineering Automotive.Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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