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Propagation of guided waves in bonded composite structures with tapered adhesive layer

机译:带有粘结层的粘结复合结构中导波的传播

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Adhesively bonded composites are becoming increasingly important in engineering applications due to its advantages for structural repair and integrated manufacturing of advanced composite structures. Characteristics of guided waves propagation in bonded composite structures with tapered adhesive layer are investigated in this paper. Hamilton's principle and a semi-analytical finite element method are combined to study the wave propagation problem numerically that account for different properties of adhesive layer. Several adhesive bonded composite models are analyzed, including dimensions of adhered joints, local separation of adhesive and material degradation. Dispersion curves of different bonded states are studied numerically by accounts for effects of varying adhesive thickness. Results provided some suggestions in selecting more suitable mode for interrogating of adhesive bonded composite with different states.
机译:胶粘复合材料在结构修复和高级复合材料结构的集成制造方面具有优势,因此在工程应用中变得越来越重要。本文研究了具有粘结层的复合结构中导波的传播特性。结合汉密尔顿原理和半解析有限元方法,数值研究了引起胶粘剂层特性不同的波传播问题。分析了几种粘合复合材料模型,包括粘合接头的尺寸,粘合剂的局部分离和材料降解。通过考虑粘合剂厚度变化的影响,对不同键合状态的分散曲线进行了数值研究。结果为选择更合适的方式研究不同状态的胶粘复合材料提供了一些建议。

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