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Damage detection in laminar thermoplastic composite materials by means of embedded optical fibers

机译:层状热塑性复合材料中嵌入光纤的损伤检测

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This paper investigates the possibility of applying optical fibers as sensors for investigating low energy impact damage in laminar thermoplastic composite materials, in real time. Impact toughness testing by a Charpy impact pendulum with different loads was conducted in order to determine the method for comparative measurement of the resulting damage in the material. For that purpose intensity-based optical fibers were built in to specimens of composite materials with Kevlar 129 (the DuPont registered trade-mark for poly(p-phenylene terephthalamide)) woven fabric as reinforcement and thermoplastic PVB (poly(vinyl butyral)) as the matrix. In some specimens part of the layers of Kevlar was replaced with metal mesh (50% or 33% of the layers). Experimental testing was conducted in order to observe and analyze the response of the material under multiple low-energy impacts. Light from the light-emitting diode (LED) was launched to the embedded optical fiber and was propagated to the phototransistor-based photo detector. During each impact, the signal level, which is proportional to the light intensity in the optical fiber, drops and then slowly recovers. The obtained signals were analyzed to determine the appropriate method for real time damage monitoring. The major part of the damage occurs during impact. The damage reflects as a local, temporary release of strain in the optical fiber and an increase of the signal level. The obtained results show that intensity-based optical fibers could be used for measuring the damage in laminar thermoplastic composite materials. The acquired optical fiber signals depend on the type of material, but the same set of rules (relatively different, depending on the type of material) could be specified. Using real time measurement of the signal during impact and appropriate analysis enables quantitative evaluation of the impact damage in the material. Existing methods in most cases use just the intensity of the signal before and after the impact, as the measure of damage. This method could be used to monitor the damage in real time, giving warnings before fatal damage occurs.
机译:本文研究了将光纤用作传感器以实时研究层状热塑性复合材料中低能冲击损伤的可能性。为了确定比较测量材料中产生的损伤的方法,使用了具有不同载荷的夏比冲击摆进行了冲击韧性测试。为此,在复合材料的样品中内置了基于强度的光纤,其中的纤维为Kevlar 129(杜邦注册的聚对苯二甲酰对苯二甲酰胺商标)机织织物,热塑性塑料为PVB(聚乙烯醇缩丁醛)。矩阵。在某些样品中,凯夫拉尔纤维层的一部分被金属网代替(占金属层的50%或33%)。为了观察和分析材料在多种低能量冲击下的响应,进行了实验测试。来自发光二极管(LED)的光发射到嵌入式光纤,并传播到基于光电晶体管的光电探测器。在每次撞击期间,与光纤中的光强度成比例的信号电平下降,然后缓慢恢复。对获得的信号进行分析,以确定用于实时损伤监测的适当方法。损坏的大部分发生在撞击过程中。损坏反映为光纤中应变的局部临时释放和信号电平的增加。所得结果表明,基于强度的光纤可用于测量层状热塑性复合材料的损伤。所获取的光纤信号取决于材料的类型,但是可以指定相同的规则集(相对不同,取决于材料的类型)。在冲击过程中使用信号的实时测量和适当的分析,可以对材料中的冲击损伤进行定量评估。在大多数情况下,现有方法仅使用撞击前后的信号强度来衡量损害程度。此方法可用于实时监视损坏,在致命损坏发生之前发出警告。

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