首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.3 >EFFICIENT STRESS ANALYSIS OF ADHESIVELY BONDED JOINTS BY FINITE ELEMENTS TECHNIQUES
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EFFICIENT STRESS ANALYSIS OF ADHESIVELY BONDED JOINTS BY FINITE ELEMENTS TECHNIQUES

机译:用有限元技术对胶接节点的有效应力分析

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The paper documents ongoing research on the field of stress calculations in the adhesive layer of bonded joints and bonded structures. Aim of the research is to develop simple, general, portable, efficient and accurate finite element techniques for adhesive stress analysis and strength assessment of the joint. Among four methods envisioned, two methods are presented for 2D configurations and applied to a reference single-lap configuration. In both methods, the adherends are described by means of beam elements and the adhesive layer by a single string of plane-stress solid elements. The plane-stress elements have either the original thickness of the true adhesive layer or an expanded thickness up to the offset between adherends. Beams and plane-stress elements are connected by standard constraining techniques (tied mesh) offered by the package employed (ABAQUS). The stress results provided by the two methods are compared step by step with the predictions of analytical models retrieved from the literature and with the outcome of a full, computationally-intensive finite element model using solid plane-stress elements for both adhesive and adherends. The simplified method using a single layer of plane-stress elements with the same thickness and properties as the true adhesive layer provides very promising results in terms of stress accuracy and computational efficiency.
机译:该论文记录了有关粘结接头和粘结结构的粘结层中应力计算领域的持续研究。该研究的目的是开发简单,通用,便携式,高效且准确的有限元技术,用于粘接应力分析和关节强度评估。在设想的四种方法中,针对2D配置提出了两种方法,并将两种方法应用于参考单圈配置。在这两种方法中,被粘物都是通过梁单元描述的,而粘合层是通过一串平面应力固体单元描述的。平面应力元件具有真实粘合剂层的原始厚度或扩展的厚度,直至被粘物之间的偏移量。梁和平面应力单元通过所使用的包装(ABAQUS)提供的标准约束技术(并列网格)进行连接。将这两种方法提供的应力结果与从文献中获取的分析模型的预测逐步进行比较,并与对粘合剂和被粘物都使用固体平面应力元素的完整的计算密集型有限元模型的结果进行比较。使用具有与真实粘合剂层相同的厚度和特性的单层平面应力元素的简化方法在应力精度和计算效率方面提供了非常有希望的结果。

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