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Distributed sensing of composite over-wrapped pressure vessel using fiber Bragg gratings at ambient and cryogenic temperatures

机译:在环境温度和低温条件下使用光纤布拉格光栅对复合包裹压力容器进行分布式传感

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摘要

Fiber Bragg gratings are use to monitor the structural properties of composite pressure vessels. These gratings optically inscribed into the core of a single mode fiber are used as a tool to monitor the stress strain relation in laminate structure. The fiber Bragg sensors are both embedded within the composite laminates and bonded to the surface of the vessel with varying orientations with respect to the carbon fiber in the epoxy matrix. The response of these fiber-optic sensors is investigated by pressurizing the cylinder up to its burst pressure of around 2800 psi. This is done at both ambient and cryogenic temperatures using water and liquid nitrogen. The recorded response is compared with the response from conventional strain gauge also present on the vessel. Additionally, several vessels were tested that had been damaged to simulate different type of events, such as cut tow, delimitation and impact damage.
机译:光纤布拉格光栅用于监测复合压力容器的结构特性。这些光栅光学内接于单模光纤的纤芯中,用作监视层压结构中应力应变关系的工具。布拉格光纤传感器既嵌入复合层压板内,又相对于环氧基质中的碳纤维以不同的方向粘结到容器的表面。通过将钢瓶加压到其爆破压力约为2800 psi,研究了这些光纤传感器的响应。这是在环境温度和低温条件下使用水和液氮完成的。将记录的响应与同样存在于容器中的常规应变仪的响应进行比较。此外,测试了几艘已损坏的船只,以模拟不同类型的事件,例如割拖,划界和撞击损坏。

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