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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Comparison of the Q3 and hybrid III 3-year-old dummy heat and neck response during side air bag loading
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Comparison of the Q3 and hybrid III 3-year-old dummy heat and neck response during side air bag loading

机译:Q3和Hybrid III 3岁假人在侧面安全气囊加载过程中的热和颈部反应的比较

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摘要

This paper presents the results of 20 tests designed to compare the head and neck response of the Q3 dummy and the Hybrid III 3-year-old dummy subject to loading by a deploying side air bag. In a static test environment, experiments were conducted in two positions using three seat-mounted thoracic side air bags that varied only in the level of inflator output. Substantial kinematic and kinetic differences were observed owing to differences in head geometry and mass, and neck stiffness between the two dummies. The Hybrid III head is 18 per cent heavier than the Q3 and resulted in peak head centre of gravity accelerations significantly lower (p=0.01) than those observed in the Q3. The stiffer Hybrid III neck resulted in 41 ± 29 per cent higher neck flexion moment compared with the Q3. While the stiffness properties for the Q3 neck are similar in all directions, the Hybrid III neck has preferred anterior-posterior stiffness properties. This difference was observed in tests where lateral loading of the head forced lateral bending in which the Hybrid HI recorded a 101 ± 80 per cent higher lateral bending moment compared with the Q3. Although there is considerable uncertainty as to the validity of published injury criteria owing to the lack of child biomechanical data, these tests suggest that separate injury criteria are needed for each dummy.
机译:本文介绍了20个测试的结果,这些测试旨在比较Q3假人和3岁的Hybrid III 3岁假人在部署侧气囊时的头颈部反应。在静态测试环境中,使用三个安装在座椅上的胸侧气囊在两个位置进行了实验,这些气囊仅在充气机输出水平上有所变化。由于两个头部假人的头部几何形状和质量以及颈部僵硬程度的差异,观察到了很大的运动学和动力学差异。 Hybrid III的头部比Q3重18%,导致峰值头部重心加速度明显低于Q3(p = 0.01)。与Q3相比,较硬的Hybrid III颈部导致颈部屈曲力矩高41±29%。虽然Q3颈部的各个方向的刚度特性相似,但Hybrid III颈部具有较好的前后刚度特性。在测试中观察到了这种差异,Hybrid HI记录了头部的侧向载荷,使得其横向弯曲力矩比Q3高101±80%。尽管由于缺乏儿童生物力学数据,已公布的伤害标准的有效性存在很大的不确定性,但这些测试表明,每个假人都需要单独的伤害标准。

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