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Effective testing of personal protective equipment in blast loading conditions in shock tube: Comparison of three different testing locations

机译:在冲击管爆炸载荷条件下对个人防护设备的有效测试:三种不同测试位置的比较

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摘要

We exposed a headform instrumented with 10 pressure sensors mounted flush with the surface to a shock wave with three nominal intensities: 70, 140 and 210 kPa. The headform was mounted on a Hybrid III neck, in a rigid configuration to eliminate motion and associated pressure variations. We evaluated the effect of the test location by placing the headform inside, at the end and outside of the shock tube. The shock wave intensity gradually decreases the further it travels in the shock tube and the end effect degrades shock wave characteristics, which makes comparison of the results obtained at three locations a difficult task. To resolve these issues, we developed a simple strategy of data reduction: the respective pressure parameters recorded by headform sensors were divided by their equivalents associated with the incident shock wave. As a result, we obtained a comprehensive set of non-dimensional parameters. These non-dimensional parameters (or amplification factors) allow for direct comparison of pressure waveform characteristic parameters generated by a range of incident shock waves differing in intensity and for the headform located in different locations. Using this approach, we found a correlation function which allows prediction of the peak pressure on the headform that depends only on the peak pressure of the incident shock wave (for specific sensor location on the headform), and itis independent on the headform location. We also found a similar relationship for the rise time. However, for the duration and impulse, comparable correlation functions do not exist. These findings using a headform with simplified geometry are baseline values and address a need for the development of standardized parameters for the evaluation of personal protective equipment (PPE) under shock wave loading.
机译:我们将一个装有10个压力传感器的头模暴露在与表面齐平的位置上,以三种名义强度分别为70、140和210 kPa的冲击波。头模以刚性配置安装在Hybrid III颈部上,以消除运动和相关的压力变化。我们通过将头模放在减震管的内部,末端和外部来评估测试位置的效果。冲击波强度在冲击管中传播得越远,其强度就会逐渐降低,最终效果会降低冲击波特性,这使得比较在三个位置获得的结果变得困难。为了解决这些问题,我们开发了一种简单的数据缩减策略:将头形传感器记录的各个压力参数除以与入射冲击波相关的等效参数。结果,我们获得了一套完整的无量纲参数。这些无量纲的参数(或放大系数)可以直接比较由一系列强度不同的入射冲击波产生的压力波形特征参数,以及位于不同位置的头模的比较结果。使用这种方法,我们发现了一个相关函数,该函数可以预测头模上的峰值压力,该峰值压力仅取决于入射冲击波的峰值压力(对于头模上的特定传感器位置),而与头模位置无关。我们还发现上升时间具有类似的关系。但是,对于持续时间和冲动,不存在可比的相关函数。这些使用具有简化几何形状的头模的发现是基线值,满足了开发标准参数以评估冲击波载荷下的个人防护设备(PPE)的需求。

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