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Anisogrid composite lattice structures for spacecraft and aircraft applications

机译:用于航天器和飞机的Anisogrid复合晶格结构

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The paper is concerned with Anisogrid (Anisotropic Grid) composite lattice structures whose load-bearing shell is formed by systems of geodesic unidirectional composite ribs made by automatic wet winding process. Developed about 25 years ago for spacecraft application, Anisogrid structures are now under serial production in the Russian Central Research Institute for Special Machinery and demonstrate high weight and cost efficiency in comparison with rib-stringer stiffened traditional aluminum prototypes and their composite analogues. Existing methods of design, analysis and manufacturing of Anisogrid structures are summarized and discussed in application to aerospace structures. Particular emphasis is placed on the correspondence between the Geodesic structural concept developed for wooden and metal airplanes more than 60 years ago and modern Anisogrid composite structures. It is advocated that the combination of the geodesic airframe structures whose load-bearing capacity is provided by the system of properly directed ribs and the Anisogrid technology which allows us to make unidirectional composite ribs with extremely high specific strength and stiffness by continuous winding can result in the structures whose weight and cost efficiency is considerably higher than is demonstrated by traditional stiffened structures (made of metals or composites).
机译:本文涉及的是Anisogrid(各向异性网格)复合网格结构,其承重壳是由通过自动湿绕法制成的测地线单向复合肋骨系统形成的。大约25年前开发的Anisogrid结构已经在航天器应用中投入使用,目前正在俄罗斯中央特种机械研究所进行批量生产,与肋筋加强的传统铝制原型及其复合类似物相比,它具有较高的重量和成本效益。总结并讨论了各向异性网格结构的设计,分析和制造的现有方法,并将其应用于航空航天结构。特别强调的是60年前为木制和金属飞机开发的测地线结构概念与现代Anisogrid复合结构之间的对应关系。提倡将通过适当定向的肋骨系统提供支撑能力的测地线飞机结构与Anisogrid技术相结合,可以使我们通过连续缠绕来制造具有极高比强度和刚度的单向复合肋骨。其重量和成本效率大大高于传统加劲结构(由金属或复合材料制成)所展示的结构。

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