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Flexural, torsional, and axial global stiffness properties of anisogrid lattice conical shells in composite material

机译:复合材料中等距晶格圆锥壳的挠曲,扭转和轴向整体刚度特性

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摘要

Flexural, torsional, and axial global stiffness properties of anisogrid lattice conical shells in composite material are analytically formulated in the paper. The conventional manufacturing process of this kind of structures is based on the continuous deposition of carbon fiber tows, by means of automated winding technology, which realizes regular systems of intersecting hoop and helical ribs. Winding trajectories of helical ribs are normally designed in order to be coincident with geodesics of the conical shell. As a consequence, given the geometry of the shell and the number of hoop and helical ribs, specific anisogrid configurations are determined that are feasible by winding. Various cross-sections of such ribs complete the specific solution. Each solution provides peculiar overall stiffness properties of the shell, which need to be predicted and optimized in order to fully meet the typical design requirements occurring in aerospace applications.
机译:本文对复合材料中等距网格圆锥形壳的挠曲,扭转和轴向整体刚度特性进行了解析分析。这种结构的常规制造过程是基于碳纤维丝束的连续沉积,该纤维束通过自动缠绕技术实现了环箍和螺旋肋相交的规则系统。螺旋肋的缠绕轨迹通常设计成与圆锥形壳体的测地线一致。结果,给定壳体的几何形状以及箍和螺旋肋的数量,确定了通过缠绕是可行的特定的异格栅结构。这种肋的各种横截面完成了特定的解决方案。每种解决方案都提供了特殊的壳体整体刚度特性,需要对其进行预测和优化,以完全满足航空航天应用中出现的典型设计要求。

著录项

  • 来源
    《Composite Structures》 |2016年第10期|738-745|共8页
  • 作者

    Totaro G.;

  • 作者单位

    CIRA Italian Aerosp Res Ctr, Struct & Mat Unit, Via Maiorise, I-81043 Capua, CE, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Global stiffness models; Anisogrid; Conical lattice shell;

    机译:整体刚度模型;各向异性网格;圆锥形格壳;

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