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Detection of Delamination Damage in a Composite Laminate Beam Utilising the Principle of Strain Compatibility

机译:利用应变相容原理检测复合材料层合梁中的层离损伤

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This paper presents an experimental investigation of a new method for damage detection based on the most fundamental concept in continuum mechanics: strain compatibility. Compliance with this principle implies a deformed material is free from discontinuities, which are indicative of many types of structural damage. Therefore the principle of strain compatibility, in its ability to identify discontinuities, is very promising as a new foundation for future research into nondestructive evaluation and structural health monitoring technologies. The proposed method has many advantages compared to existing damage detection techniques, such as its invariance to material properties, type and intensity of loading, and the geometry of the structure. In this paper, a proposed formulation of the strain compatibility equation for beam structures, which is invariant to loading intensity, is presented. An experimental investigation of the proposed algorithm was conducted on a delaminated cantilever beam, utilising a PSV-3D scanning laser vibrometer. The experiment demonstrated that the strain compatibility technique can accurately locate delamination damage in composite beam structures.
机译:本文提出了一种基于连续介质力学最基本概念的新的损伤检测方法的实验研究:应变兼容性。遵守该原则意味着变形的材料没有不连续性,这表明存在多种类型的结构损坏。因此,应变相容性原理具有识别不连续性的能力,作为将来对无损评估和结构健康监测技术进行研究的新基础,非常有前途。与现有的损伤检测技术相比,该方法具有许多优势,例如其对材料特性,载荷类型和强度以及结构几何形状的不变性。在本文中,提出了梁结构的应变相容性方程的拟议公式,该公式对于载荷强度是不变的。利用PSV-3D扫描激光振动计在分层的悬臂梁上对提出的算法进行了实验研究。实验表明,应变兼容技术可以准确地定位复合梁结构中的分层损伤。

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