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DEVELOPMENT AND CHARACTERIZATION OF AN OPEN- ENDED SHOCK TUBE FOR THE STUDY OF BLAST MTBI

机译:爆炸MTBI研究用无定形冲击管的研制与表征

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Shock tubes can be used to study traumatic brain injuries due to blast waves in a laboratory setting without the use of explosives. A literature review shows that several shock tubes used in these type of studies are large in size and have a high cost of conducting tests and maintaining the device. The purpose of this study was to design and characterize small shock tubes to simulate open field blast waves, which can be used in a laboratory with limited space and has low cost of operation. In addition, the shock tube can be used to induce localized blast in a small region to study the injury mechanisms in the desired region. Furthermore, the animal is placed outside of the shock tube, which provides the ability to expose the animal to a pure primary blast wave. A helium-driven shock tube with driven length of 3.04 m and driver length of 0.30 m was used in the present study. Transducers were placed at multiple locations and distances to characterize the blast wave outside the shock tube. The versatile design of the shock tube can generate a wide range of peak overpressure, rise times and durations. The shock tube was able to generate peak overpressure ranging from 25 kPa to 508 kPa and positive durations ranging from 97 us to 797 us. The literature review also showed several studies where the data were collected and analyzed improperly. The under-sampling or improper filtering can significantly affect the data. Additionally, the orientation of the transducer with respect to the shock wave can also affect the recorded peak overpressure. This paper reports various peak overpressures, durations and rise-times that can be developed with a small open-ended shock tube and the methodology to properly collect and analyze blast wave data generated by the shock tube.
机译:冲击管可用于在实验室环境中研究爆炸波引起的颅脑外伤,而无需使用炸药。文献综述表明,在这类研究中使用的几种减震管尺寸较大,并且进行测试和维护设备的成本很高。这项研究的目的是设计和表征小型激波管,以模拟露天爆炸波,可在空间有限且操作成本低的实验室中使用。此外,电击管可用于在小区域引发局部爆炸,以研究所需区域的损伤机制。此外,将动物放置在激波管的外部,这使动物能够暴露于纯原始冲击波。在本研究中使用了氦气驱动的冲击管,其驱动长度为3.04 m,驱动器长度为0.30 m。换能器放置在多个位置和多个距离处,以表征冲击管外部的爆炸波。减震管的通用设计可产生各种峰值超压,上升时间和持续时间。冲击管能够产生25 kPa至508 kPa的峰值过压,正持续时间范围为97 us至797 us。文献综述还显示了几项研究,其中对数据的收集和分析不当。采样不足或过滤不当会严重影响数据。另外,换能器相对于冲击波的方向也会影响所记录的峰值过压。本文报告了使用小型开放式冲击管可以产生的各种峰值超压,持续时间和上升时间,以及适当收集和分析由冲击管产生的爆炸波数据的方法。

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