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Memorization and detection of an arrested crackin a foam-core sandwich structureusing a crack arrester with embedded metal wires and FBG sensors

机译:记忆和检测捕获的泡沫芯三明治,嵌入金属线和FBG传感器的裂缝避雷器

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A crack arrester has been recently developed to suppress crack propagation along the interface between the facesheet and the core of foam core sandwich structures. The crack arrester is a semi-cylindrical stiff material inserted into the interface. The crack arrester decreases an energy release rate at the crack tip by suppressing local deformation around the crack. If the arrested crack can be instantaneously detected, damage tolerance of foam core sandwich structures is dramatically improved. This study establishes an innovative crack detection technique using metal wires and fiber Bragg grating (FBG) sensors embedded at both edges of the arrester. Specific strain distribution induced by arresting the interface crack is first memorized by the metal wire and the consequent residual strain is then picked up by the FBG sensor as a damage signal. This study began by simulating sensor response to evaluate the feasibility of the proposed technique. A verification test was then conducted, confirming the spectral change of the FBG can indicate propagation direction and tip location of the arrested crack.
机译:最近已经开发出裂缝避雷器来抑制沿着面板之间的界面和泡沫芯夹层结构的核心之间的裂缝传播。裂缝避雷器是插入界面中的半圆柱形刚性材料。裂缝避雷器通过抑制裂缝周围的局部变形来降低裂纹尖端的能量释放速率。如果可以瞬时检测到被捕的裂缝,泡沫芯夹层结构的损伤容差显着改善。本研究建立了一种采用金属线和纤维布拉格光栅(FBG)传感器的创新裂缝检测技术,嵌入在避雷器的两个边缘。通过阻止界面裂缝引起的特定应变分布首先通过金属线存储,然后通过FBG传感器作为损坏信号拾取所从而拾取的残余应变。本研究开始通过模拟传感器响应来评估所提出的技术的可行性。然后进行验证测试,确认FBG的光谱变化可以指示被动裂缝的传播方向和尖端位置。

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