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Pack Density Limitations of Hybrid Parachutes

机译:包装密度限制杂种降伞

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The development and testing of the Orion crew capsule parachute system has provided a unique opportunity to study dense parachute packing techniques and limits, in order to establish a new baseline for future programs. The density of parachute packs has a significant influence on vibration loads, retention system stresses, and parachute mortar performance. Material compositions and pack densities of existing designs for space capsule recovery were compared, using the pack density of the Apollo main parachutes as the current baseline. The composition of parachutes has changed since Apollo, incorporating new materials such as Kevlar?, Vectran?, Teflon? and Spectra?. These materials have different specific densities than Nylon, so the densities of hybrid parachute packs cannot be directly compared to Nylon parachutes for determination of feasibility or volume allocation. Six parachute packs were evaluated in terms of weighted average solid density in order to achieve a non-dimensional comparison of packing density. Means of mitigating damage due to packing pressure and mortar firing were examined in light of the Capsule Parachute Assembly System (CPAS) and Apollo experience. Parachute design improvements including incorporation of modern materials and manufacturing processes serves to make CPAS the new knowledge base on which future spacecraft parachute systems will be built.
机译:猎户座船员胶囊降落伞系统的开发和测试提供了学习密集降落伞包装技术和限制的独特机会,以便为未来计划建立新的基准。降落伞包的密度对振动载荷,保留系统应力和降落伞砂浆性能具有显着影响。比较了空间胶囊恢复的现有设计的材料组合物和包装密度,使用Apollo Main Scarach的包密度作为当前基线。由于阿波罗以来,降落伞的组成发生了变化,并纳入了kevlar?,Vectran的新材料?,Teflon?和光谱?这些材料具有比尼龙不同的特异性密度,因此杂交降落伞包的密度不能直接与尼龙降落伞相比,以确定可行性或体积分配。根据加权平均固体密度评估六个降落伞包,以实现包装密度的不尺寸比较。根据胶囊降落伞组装系统(CPA)和Apollo体验,检查了由于包装压力和砂浆烧制引起的减轻损伤的方法。降落伞设计改进包括现代材料和制造工艺的融合,使CPA成为将建立未来航天器降落伞系统的新知识库。

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