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首页> 外文期刊>Polymer Testing >Distributed fiber-optic strain sensing with millimeter spatial resolution for the structural health monitoring of multiaxial loaded GFRP tube specimens
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Distributed fiber-optic strain sensing with millimeter spatial resolution for the structural health monitoring of multiaxial loaded GFRP tube specimens

机译:具有毫米空间分辨率的分布式光纤应变对多轴加载GFRP管样本结构健康监测的影响

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摘要

Due to their high strength-to-weight ratio and excellent fatigue resistance, glass fiber reinforced polymers (GFRP) are used as a construction material in a variety of applications including composite high-pressure gas storage vessels. Thus, an early damage detection of the composite material is of great importance. Material degradation can be determined via measuring the distributed strain profile of the GFRP structures. In this article, swept wavelength interferometry based distributed strain sensing (DSS) was applied for structural health monitoring of internal pressure loaded GFRP tube specimens. Measured strain profiles were compared to theoretical calculation considering Classical Lamination Theory. Reliable strain measurements with millimeter resolution were executed even at elongations of up to 3% in the radial direction caused by high internal pressure load. Material fatigue was localized by damaged-induced strain changes during operation, and detected already at 40% of burst pressure.
机译:由于其高强度重量比和优异的疲劳性能,玻璃纤维增​​强聚合物(GFRP)用作各种应用中的结构材料,包括复合高压气体储存容器。因此,复合材料的早期损坏检测非常重要。可以通过测量GFRP结构的分布式应变分布来确定材料劣化。在本文中,扫描的波长干涉测量基于基于波长的分布式应变感测(DSS)用于内部压力负载的GFRP管样本的结构健康监测。考虑到经典层压理论的理论计算比较了测量的应变型材。即使在高内部压力载荷引起的径向上的径向高达3%的伸长率,也执行具有毫米分辨率的可靠应变测量。材料疲劳通过损坏诱导的菌株在操作期间造成的损伤,并且已经以40%的脉冲压力检测到。

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