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首页> 外文期刊>International Journal of Distributed Sensor Networks >Evaluation and identification of dynamic strain on a blast door subjected to blast loading using fibre Bragg grating sensors:
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Evaluation and identification of dynamic strain on a blast door subjected to blast loading using fibre Bragg grating sensors:

机译:使用光纤布拉格光栅传感器评估和评估爆破门上爆破门上的动态应变:

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摘要

Tunnels and subway blast doors are effective barriers to terrorist attacks and emergencies, and research into the mechanical properties of blast doors under explosive dynamic loads can improve and enhance the performance thereof. In this article, surface strain measurements on subway blast door models under dynamic load are carried out using quasi-distributed fibre Bragg grating sensors. The principle underpinning fibre Bragg grating sensing is introduced before the experiment. In the experiment, a model of an explosion-proof door was designed, and the experimental foundation pit was designed to be used to fix the explosion-proof door. Then, eight fibre Bragg grating sensors are placed at different positions on the surface of the explosion door to measure the strain at the time of explosion. Through the experiment we found that the optical fibre grating sensing system can be used under explosive loading surface strain: the strain distribution on the surface of the protective door is revealed under large dynamic strain. At the same time, the rebound effect of the protective door in the explosion was found through the strain phenomenon in double peak phenomenon. The strain distribution and rebound effect in the test results can provide a useful reference for the mechanical design of the blasting door and the strain monitoring of reinforced concrete structures under dynamic load.
机译:隧道和地铁爆破门是防止恐怖袭击和紧急情况的有效屏障,对爆炸门在爆炸动态载荷下的机械性能进行研究可以改善和增强其性能。在本文中,使用准分布光纤布拉格光栅传感器在动载荷下对地铁爆破门模型进行了表面应变测量。实验前介绍了支撑光纤布拉格光栅传感的原理。在实验中,设计了防爆门的模型,并设计了实验基坑用于固定防爆门。然后,将八个光纤布拉格光栅传感器放置在防爆门表面的不同位置,以测量爆炸时的应变。通过实验,我们发现光纤光栅传感系统可以在爆炸性载荷表面应变下使用:在大的动态应变下,防护门表面的应变分布可以显示出来。同时,通过双峰现象中的应变现象发现了防护门在爆炸中的回弹效果。试验结果中的应变分布和回弹效果可为爆破门的机械设计和动荷载下钢筋混凝土结构的应变监测提供有益的参考。

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