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首页> 外文期刊>International Journal of Adhesion & Adhesives >Numerical model for optimal design of composite patch repair of cracked aluminum plates under tension
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Numerical model for optimal design of composite patch repair of cracked aluminum plates under tension

机译:拉伸裂纹铝板复合补片优化设计的数值模型。

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摘要

In the present work, a numerical model for the optimization of composite patch repair of aluminum plate containing a central crack is developed. The patch is bonded over a cracked aluminum sheet using a small adhesive layer placed in between. The developed model allows us to predict the patch effect on the behavior of the cracked plate under tensile loading and its consequence on the integrity of the structure. To achieve this goal, a finite element model is developed to determine the evolution of the stress intensity factor at the crack tip. After model validation and parametric study, the optimization of the patch volume is formulated and solved by two zero-order and first-order methods. By considering the design variables as the patch height, width and thickness, in addition to adhesive thickness, large reduction of patch material volume can be achieved by applying the developed model. The sensitivity of optimal patch parameters is investigated under various crack lengths. Several stacking sequences and material properties are also considered to reduce the stress concentration in the vicinity of the crack tip, leading to strong volume reduction.
机译:在目前的工作中,建立了一个优化模型的数值模型,该模型可以优化包含中心裂纹的铝板的复合修补。使用置于其间的小粘合剂层将贴片粘合在破裂的铝板上。开发的模型使我们能够预测在拉伸载荷下裂纹板行为的斑块效应及其对结构完整性的影响。为了达到这个目的,开发了一个有限元模型来确定裂纹尖端应力强度因子的变化。经过模型验证和参数研究后,通过两种零阶和一阶方法制定并解决了贴片体积的优化问题。通过考虑设计变量,例如贴剂的高度,宽度和厚度,以及粘合剂的厚度,可以通过应用开发的模型实现贴剂材料体积的大幅减少。研究了在不同裂纹长度下最佳贴片参数的敏感性。还考虑了几种堆叠顺序和材料特性,以减少裂纹尖端附近的应力集中,从而导致体积明显减小。

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