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Bio mimetic-inspired joining of composite with metal structures: a survey of natural joints and application to single lap joints

机译:生物仿生启发的复合材料与金属结构的连接:自然关节的调查及其在单膝关节中的应用

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Joining composites with metal parts leads, inevitably, to high stress concentrations because of the material property mismatch. Since joining composite to metal is required in many high performance structures, there is a need to develop a new multifunctional approach to meet this challenge. This paper uses the biomimetics approach to help develop solutions to this problem. Nature has found many ingenious ways of joining dissimilar materials and making robust attachments, alleviating potential stress concentrations. A literature survey of natural joint systems has been carried out, identifying and analysing different natural joint methods from a mechanical perspective. A taxonomy table was developed based on the different methods/functions that nature successfully uses to attach dissimilar tissues (materials). This table is used to understand common themes or approaches used in nature for different joint configurations and functionalities. One of the key characteristics that nature uses to joint dissimilar materials is a transitional zone of stiffness in the insertion site. Several biomimetic-inspired metal-to-composite (steel-to-CFRP), adhesively bonded, Single Lap Joints (SLJs) were numerically investigated using a finite element analysis. The proposed solutions offer a transitional zone of stiffness of one joint part to reduce the material stiffness mismatch at the joint. An optimisation procedure was used to identify the variation in material stiffness which minimises potential failure of the joint. It was found that the proposed biomimetic SLJs reduce the asymmetry of the stress distribution along the adhesive area.
机译:由于材料不匹配,将具有金属部件的复合材料不可避免地引入高应力浓度。由于在许多高性能结构中需要将复合材料连接到金属,因此需要开发一种新的多功能方法来满足这一挑战。本文采用生物体方法帮助为此问题开发解决方案。自然已经发现了许多巧妙的方式加入异种材料并制作稳健的附件,减轻潜在的应力浓度。从机械角度进行了对自然关节系统的文献调查,识别和分析了不同的自然关节方法。基于本性成功用来附着不同组织(材料)的不同方法/功能开发了分类表。此表用于了解不同的联合配置和功能本质上使用的共同主题或方法。本质上用于联合异常材料的关键特征之一是插入部位中的刚度过渡带。使用有限元分析,使用有限元分析进行数值研究了几种仿生激发的金属待复合材料(钢到CFRP),粘接键合单圈接头(SLJ)。所提出的解决方案提供了一个关节部分的过渡带,以减少关节的材料刚度不匹配。优化过程用于识别材料刚度的变化,这最小化了关节的电位失效。发现该拟议的仿生SLJS减少了粘合剂区域的应力分布的不对称性。

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