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CRYOTANK SKIN/STRINGER BONDLINE ANALYSIS

机译:Cryotank Skin / Stringer Condline分析

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The need for light weight structure for advanced launch Systems have presented great challenges and led to the usage of composites materials in variety of structural assemblies where joining of two or more components is imperative. Although joints can be mechanically bolted, adhesive bonding has always been a very desirable method for joining the composite components, particularly for the cryotank systems, to achieve maximum structural efficiency. This paper presents the analytical approach resulted from the conceptual development of the DC-Y composite cryotank, conducted under the NASA/Boeing NRA 5-12 Partnership, to support the continued progress of SSTO (Single-Stage-To-Orbit) concepts. One of the critical areas of design was identified as the bonded interface between the skin (tank wall) and stringer. The approach to analyze this critical area will be illustrated through the steps which were used to evaluate the structural integrity of the bondline. Detailed finite element models were developed and numerous coupon test data were also gathered as part of the approach. Future plan is to incorporate this approach as a building block in analyzing bondline for the cryotank systems of RLVs (Reusable Launch Vehicles).
机译:对于高级发射系统的轻度结构的需求呈现出巨大的挑战,并导致了组合材料的使用各种结构组件,其中两个或更多个组件的连接是必要的。尽管接头可以机械螺栓固定,但是粘合剂粘合始终是加入复合部件的非常理想的方法,特别是用于冷冻系统,以实现最大的结构效率。本文介绍了在美国宇航局/波音NRA 5-12合作伙伴关系下进行的DC-Y复合冷冻机的概念发展产生的分析方法,以支持SSTO(单阶段到轨道)概念的持续进展。设计的一个关键设计领域是皮肤(罐墙)和纵梁之间的粘合界面。分析该关键区域的方法将通过用于评估键合的结构完整性的步骤来说明。开发了详细的有限元模型,并作为方法的一部分聚集了许多优惠券测试数据。未来的计划是将这种方法纳入构建块,在分析RLV的CryotaND系统(可重复使用的发射车)。

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