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Vertical drop test of a narrow-body transport fuselage section with overhead stowage bins

机译:窄体运输机身段的垂直滴定试验与架空存放箱

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A 10-foot-long fuselage section from a Boeing 737-100 airplane was dropped from a height of 14 feet generating a final impact velocity of 30 feet per second. The fuselage section was configured to simulate the load density at the maximum takeoff weight condition. The final weight of 8870 pounds included cabin seats, dummy occupants, overhead stowage bins with contents, and cargo compartment luggage. The fuselage section was instrumented with strain gages, accelerometers, and high-speed cameras. The fuselage sustained severe deformation of the cargo compartment. The luggage influenced the manner in which the fuselage crushed, affecting the gravitational (g) forces experienced by the test section. The seat tracks experienced 15 g's vertical deceleration. Although numerous fuselage structural members fractured during the test, a habitable environment was maintained for the occupants, and the impact was considered survivable. The overhead stowage bins maintained their structural integrity and remained attached to the fuselage. The bins sustained 14 g's vertical deceleration. Distribution of the loads, among the bin supports, was different in the dynamic versus static case.
机译:来自波音737-100飞机的10英尺长的机身部分从14英尺的高度滴下,产生最终冲击速度为每秒30英尺。机身部分被配置为在最大起飞重量条件下模拟负载密度。最终重量为8870磅,包括舱室座位,假人的乘客,带内容的架空存放箱和货舱行李箱。机身部分用应变计,加速度计和高速相机仪表。机身持续严重变形货舱。行李影响了机身压碎的方式,影响试验部分所经历的引力(G)力。座椅轨道经历了15克的垂直减速。虽然在试验期间裂缝的许多机身结构构件,但为乘员维持了一个可居住的环境,并且认为受到影响的影响。架空吊销箱保持了它们的结构完整性,并保持着装有机身。垃圾箱持续了14克的垂直减速。在动态与静态外壳中,箱支撑件的负载分布不同。

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