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PERFORMANCE EVALUATION OF HIC COMPONENT TESTING DEVICE WITH A FLEXIBLE NECK USING COMPUTATIONAL MODEL

机译:使用计算模型的柔性颈部具有柔性颈部的HIC分量测试装置的性能评估

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The Head Injury Criteria (HIC) compliance is an important aircraft interior furnishing certification. This certification confirms the compliance of the HIC requirement as per 14CFR 23.562[1] and 14 CFR 25.562[2]. Full scale crash sled tests are widely used destructive test method to show the required compliance of head injury criteria. This method is costly, time consuming and non repeatable. Factors such as sled pulse shape, belt slack, seating posture of the dummy results change in the dynamic conditions which ultimately affect the HIC value. This poses a significant challenge and high costs to the manufactures to show the compliance of aircraft interior furnishings for the certification process. These factors compel the development of alternative method to certify the cabin furnishings for HIC compliance without consuming aircraft seats, which is more repeatable and non time consuming. The laboratory HIC component tester is the device developed to duplicate the full scale crash HIC result. This device is capable to produce similar dynamic conditions upon impact with the test article resulting duplication of the full scale crash test result. The current model is developed with the rigid neck of polycarbonate unlike the flexible neck of Hybrid II part 572 ATD (Anthropomorphic Test Dummy). This study investigates the scope of improvement in dynamic characteristic of the HCTD (HIC Component Testing Device) with flexible neck. Flexible neck performance is evaluated using validated computational mode! of the HCTD. The computational model is used to simulate the correlation between the HCTD with rigid neck and HCTD with flexible neck with FSST (Full Scale Sled Test). The result demonstrates that HTCD correlates well with the FSST when flexible neck is used and provides conservative results with rigid neck.
机译:头部损伤标准(HIC)遵守是一个重要的飞机内部家具认证。此认证根据14CFR 23.562 [1]和14 CFR 25.562 [2]确认符合HIC要求的顺应性。全尺寸崩溃橇式测试是广泛使用的破坏性测试方法,以显示头部损伤标准所需的符合性。这种方法昂贵,耗时和不可重复。橇式脉冲形状,皮带松弛,座椅姿势等因素,伪造结果的动态条件发生变化,最终影响HIC值。这对制造商构成了重大挑战和高成本,以表明飞机内部家具对认证过程的遵守。这些因素强制开发替代方法,以证明驾驶室家具的机舱符合性而不消耗飞机座椅,这是更可重复的和不耗时的。实验室HIC分量测试仪是开发的设备,用于复制全尺度崩溃HIC结果。该设备在利用测试制品的影响时,该设备能够产生类似的动态条件,从而产生了重复的全规模碰撞测试结果。目前的模型是用聚碳酸酯的刚性颈部开发的,与杂交II部分572 ATD的柔性颈(拟人检测假)为不同的聚碳酸酯。本研究调查了具有柔性颈部的HCTD(HIC部件测试装置)的动态特性的改善范围。使用验证的计算模式评估灵活的颈部性能! HCTD。计算模型用于模拟HCTD与刚性颈部和HCTD之间的相关性,具有柔性颈部,具有FSST(全尺寸滑雪测试)。结果表明,当使用柔性颈部时,HTCD与FSST良好相关,并通过刚性颈部提供保守效果。

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