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Thoracic Response to Dynamic, Non-Impact Loading from a Hub, Distributed Belt, Diagonal Belt, and Double Diagonal Belts

机译:胸部反应动态,来自轮毂,分布式带,对角线带和双对角带的无冲击载荷

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This paper presents thoracic response corridors developed using fifteen post-mortem human subjects (PMHS) subjected to single and double diagonal belt, distributed, and hub loading on the anterior thorax. We believe this is the first study to quantify the force-deflection response of the same thorax to different loading conditions using dynamic, non-impact, restraintlike loading. Subjects were positioned supine on a table and a hydraulic master-slave cylinder arrangement was used with a high-speed materials testing machine to provide controlled chest deflection at a rate similar to that experienced by restrained PMHS in a 48-km/h sled test. All loading conditions were tested at a nominally non-injurious level initially. When the battery of non-injurious tests was completed, a single loading condition was used for a final, injurious test (nominal 40% chest deflection). To minimize the influence of repeated testing, all subjects were preconditioned prior to each loading condition using 10 cycles of a 1-Hz sine wave, and the order in which the loading conditions were tested was varied across subjects. Thoracic response was characterized using the deflection at the midline of the sternum and a load cell mounted between the subject and the loading table. Responses were defined by cross-plotting the mid-sternal deflection (normalized to 50th male) and the posterior force (scaled to a 45-year-old, 50th male based on size and modulus) and then forming a ±1-standard-deviation corridor that considered the variance in both force and deflection. Corridors were developed to a deflection level of 20% of the 50th percentile male's external chest depth. The distributed loading condition generated the stiffest response (3.33 kN at 4.6 cm), followed by the double diagonal belt condition (3.18 kN at 4.6 cm), the single diagonal belt (2.28 kN at 4.6 cm) and the hub (1.14 kN at 4.6 cm).
机译:本文呈现胸椎响应走廊使用进行单,双对角线带15验尸人类受试者(PMHS)开发的,分布的,并且轮毂载荷上的前胸部。我们相信这是第一次研究,以量化的胸部一样使用动态,无冲击,restraintlike负载不同负载条件下的力 - 变形响应。受试者被放置在桌子仰卧,并用高速材料试验机,以在类似于由在48公里/小时内敛PMHS经历的速率提供受控的胸部偏转用液压主从气缸装置台车试验。所有负载条件在名义上非伤害级别最初测试。当的非伤害性试验的电池已经完成,用于最终的,有害的测试(标称40%胸部偏转)的单个加载条件。为了尽量减少反复测试的影响,所有受试者使用10个周期的1赫兹正弦波的,并且其中所述加载条件进行了测试受试者两端是变化的顺序每个装载条件之前预处理。胸椎响应是使用偏转在胸骨中线特征和安装在主体和装载台之间的负载单元。应答通过限定的横标绘(基于尺寸和弹性模量调整为45岁,第50雄性)中间胸骨偏转(归一化至第50男性)和后力,然后形成一个±1标准偏差走廊是认为力和变形的差异。走廊被开发的第50百分位男性的外部胸深的20%偏转水平。分布式负载条件产生的硬的响应(3.33千牛在4.6厘米),然后用双对角带条件(3.18千牛在4.6厘米),单斜带(2.28千牛在4.6厘米)和轮毂(1.14千牛在4.6厘米)。

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