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BLAST CONTAINMENT CHAMBER DEVELOPMENT AND TESTING

机译:高炉围护室的开发和测试

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Explosive containment chambers are produced for a number of purposes. Some chambers are designed to protect personnel from a single accidental explosion, such as storage in a manufacturing process. Other chambers are designed for multiple intended detonations such as a chamber used for explosive research and testing.Several bomb containment vessels are produced that are used for explosives storage and transportation, as well as the destruction of conventional and chemical-biological improvised explosive devices (IED). Multiple spherical vessels exist that are rated for multiple detonations of explosives that range from 10-lbs TNT equivalent to more than 25-lbs TNT in what would be considered a venting mode of operation. Additionally, there are similar chambers designed to limit the risk of exposure to hazardous materials during the transportation and destruction of an IED that has an associated chemical or biological hazard. The charge rating for these chambers is typically less due to the naturernof the threat. A new type of bomb containment vessel has emerged to contain the effects of a device found in luggage or smaller shipping packages. These chambers are typically intended to contain IEDs that do not have an associated chemical or biological hazard. Often times these units do not have the preferred geometrical shape of a sphere because of use and spatial restrictions. Additionally, these units are designed for a single detonation of the design charge weight (I.e., it is not reusable). It is expected to undergo severe permanent displacement during an event, but will not rupture.Other explosive containment chambers are used to destroy military munitions. Many of these chambers have survived hundreds or even thousands or detonations.Typically, these chambers are designed using a dynamic non-linear finite element analysis (FEA) during initial design. Following the design phase, these vessels are tested to confirm performance, and (in the case of a sealed chamber) characterize the leakage characteristics.
机译:生产爆炸性容纳室有多种目的。某些腔室旨在保护人员免受单个意外爆炸的影响,例如在制造过程中存放。其他的炸药室设计用于多种爆炸目的,例如用于炸药研究和测试的炸药室。生产了几枚炸弹密闭容器,用于炸药的存储和运输,以及销毁常规和化学生物简易爆炸装置(IED) )。存在多个球形容器,其额定爆炸能力为多种炸药,在被认为是排气操作模式下,其爆炸范围从10磅TNT到大于25磅TNT。另外,有类似的腔室设计用于限制在运输和销毁具有相关化学或生物危害的IED期间暴露于有害物质的风险。由于威胁的性质,这些小室的额定电荷通常较小。出现了一种新型的炸弹遏制容器,用于容纳在行李箱或较小的运输包装中发现的装置的作用。这些腔室通常用于容纳没有相关化学或生物危害的简易爆炸装置。通常,由于使用和空间限制,这些单位不具有球形的首选几何形状。另外,这些单元设计用于单次引爆设计装药重量(即不可重复使用)。预计在事件中会发生严重的永久性位移,但不会破裂。其他爆炸性收容室用于摧毁军火。这些腔室中有许多已经幸存了数百甚至数千次爆炸。通常,这些腔室是在初始设计时使用动态非线性有限元分析(FEA)设计的。在设计阶段之后,对这些容器进行测试以确认其性能,并且(在密闭腔室的情况下)表征泄漏特性。

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