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Experimental and Analytical Investigations of the Dynamic Analysis of Adhesively Bonded Joints for Composite Structures

机译:复合结构粘合接头动态分析的实验分析研究

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Adhesively bonded joints are used extensively in various industries. Some imperfections like holes, thermal residual stresses occurring in the bolted, welded, riveted, and soldered joints don't take place in adhesively bonded joints. Hence, the main advantages of bonded joint are lightness, sealing, corrosion resistance, heat and sound isolation, damping, and quickly mounting facility which have been highly proved. This paper introduces an attempt to study the dynamic analysis of adhesively bonded joint for composite structures to investigate mainly the influences of lamina code number, bonded adhesive line configuration and boundary condition on the dynamic behavior of the test specimens containing composite assembly. The numerical based on the use of finite element model (FEM) modified by introducing unified mechanical properties are represented and applied to compute efficiently the Eigen-nature for composite bonded structures. The experimental tests are conducted to investigate such adhesive bonded joints using two different techniques. The first technique includes an ultrasonic technique in which the magnetostractive pulse echo delay-line for material characterization of composite material is used. The second technique is bassed on the use of the frequency response function method (FRF) applying the hammering method. The comparison between the numerical and experimental results proves that the suggested finite element models of the composite structural beams with bonded joints provide an efficient by accurate tool for the dynamic analysis of adhesive bonded joints. The damping capacity is inversely proportional to the stiffness of the bonded joint specimens. The type of the proportionality depends mainly on the bond line configuration type, lamina orientation, and boundary conditions. This in turn enables an accurate evaluation for selecting the proper characteristics of the specimens for controlling the present damping capacity and the proper resistance against deformation during the operating process. The present study provides an efficient non-destructive technique for the prediction of dynamic properties for an adhesive bonded joint for the studied composite structure systems. The coordination of the experimental and numerical techniques makes it possible to find an efficient tool for studying the dynamic performance of adhesively bonded joint for composite structures.
机译:粘合的接头在各个行业中广泛使用。一些缺陷像孔一样,螺栓,焊接,铆接和焊接接头中发生的热残余应力不会在粘合的接头中进行。因此,粘合接头的主要优点是高度证实的粘合性,密封,耐腐蚀,热和隔音,阻尼和快速安装设施。本文介绍了研究复合结构的粘粘合接头的动态分析,主要研究了层压码号,粘结粘合线构造和边界条件对含复合组件的试样的动态行为的影响。基于通过引入统一的机械性能改性的有限元模型(FEM)的数值表示并应用于有效地计算复合粘合结构的特征性。进行实验试验以使用两种不同的技术研究这种粘合剂接头。第一技术包括超声波技术,其中使用了用于材料表征复合材料的磁性吸引脉冲回波延迟线。第二种技术在使用施加锤击方法的频率响应函数方法(FRF)的使用时差别。数值和实验结果之间的比较证明,具有粘合接头的复合结构梁的建议有限元模型通过精确的工具提供了一种有效的工具,用于粘合接头的动态分析。阻尼能力与粘合的关节标本的刚度成反比。比例的类型主要取决于键合线配置类型,薄层取向和边界条件。这又能够精确评估,用于选择试样的适当特性,以控制当前阻尼能力和在操作过程中对变形的适当阻力。本研究提供了一种有效的非破坏性技术,用于预测研究的复合结构系统的粘合接头的动态性能。实验和数值技术的协调使得可以找到一种高效的工具,用于研究用于复合结构的粘合接头的动态性能。

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