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首页> 外文期刊>Journal of Biomechanics >A novel surrogate lung material for impact studies: Development and testing procedures
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A novel surrogate lung material for impact studies: Development and testing procedures

机译:用于影响研究的新型替代肺部材料:开发和测试程序

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Abstract This work focuses on the development of a surrogate lung material (SLM) that reproduces the dynamic response of a human lung under various loading conditions and also allows for the analysis of the extent and distribution of damage. The SLM consists of polyurethane foam used to mimic the spongy lung tissue and fluid-filled gelatine microcapsules used to simulate the damage of alveoli. The bursting pressure of the microcapsules was investigated by conducting low and high rate compression tests on single microcapsules. A bursting pressure of around 5bar was measured which is comparable to the reported lung overpressure at injury level. Low and high rate compression tests were conducted on the SLMs. From the measured mechanical properties and mass density, the stress wave speed was calculated and found to be well in the range of the reported values for human lungs (16–70m/s). In order to study the extent and distribution of damage in the SLMs, as represented by burst microcapsules, a CT scan analysis was carried out before and after the impacts. The CT scan results clearly demonstrated the magnitude and distribution of damage within the specimen. The results are then compared to the Bowen curves, the most often used criteria for predicting blast injuries in humans. An excellent agreement was found between the observed damage in the surrogate lungs and the expected damage in real human lungs. In general, the SLM showed similar stress wave speed, bursting pressure and damage to that of the real lungs.
机译:摘要本工作侧重于在各种装载条件下再现人肺的动态响应的替代肺部材料(SLM),并且还允许分析损伤的程度和分布。 SLM由用于模拟海绵状肺组织和流体填充的明胶微胶囊的聚氨酯泡沫组成,用于模拟肺泡的损伤。通过在单个微胶囊上进行低速率的压缩试验来研究微胶囊的爆破压力。测量了5bar约5bar约5bar的爆破压力,其与报告的肺部过度损伤水平相当。在SLM上进行低速率压缩测试。从测量的机械性能和质量密度来看,计算应力波速度并发现在报告的人肺值(16-70m / s)的范围内。为了研究SLMS损伤的程度和分布,如突发微胶囊所代表,在冲击之前和之后进行CT扫描分析。 CT扫描结果清楚地证明了样本内损坏的大小和分布。然后将结果与Bowen曲线进行比较,最常用的方法是预测人类爆破伤害的标准。在替代肺部的观察到损伤和真正的人肺中的预期损伤之间存在一个很好的协议。通常,SLM显示出类似的应力波速度,压力和真实肺部的损伤。

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