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Topology Optimization of Lightweight Structural Composites Inspired by Cuttlefish Bone

机译:墨鱼骨启发的轻质结构复合材料的拓扑优化

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摘要

Lightweight material structure is a crucial subject in product design. The lightweight material has high strength to weight proportion which turns into an immense fascination and a territory of investigation for the researchers as its application is wide and expanding consistently. Lightweight composite material design is accomplished by choice of the cellular structure and its optimization. Cellular structure is utilized as it has wide multifunctional properties with lightweight characteristics.;Unless it has been topologically optimized, each part in a assembly most likely weighs more than it needs to. Additional weight implies abundance materials are being utilized, loads on moving parts are higher than would normally be appropriate, energy effectiveness is being reduced and increase in costs. Presently, with Topology Optimization innovation, products can be design durable, lightweight for any kind of applications.;In this thesis, the design and forecast of cellular structure's performance are presented for developing lightweight cellular composites strengthened by carbon fibers. A 3D cuttlefish bone structure inspired by bio material is presented. With help of topology optimization and finite element analysis, analysis was directed on different volume percentage to characterize the cellular structure for its strength and stiffness. In addition, non-linear analysis was conducted to examine the behavior of the cellular structure with an-isotropic properties.
机译:轻巧的材料结构是产品设计中的关键主题。轻质材料具有很高的强度/重量比,这成为了一种巨大的吸引力,因为它的应用范围广且不断扩展,这对于研究人员来说是一个研究领域。轻质复合材料的设计是通过选择蜂窝结构及其优化来完成的。利用了蜂窝状结构,因为它具有宽泛的多功能特性和轻巧的特性。除非对其进行了拓扑优化,否则组件中的每个零件都可能比其所需的重量更大。额外的重量意味着要使用大量的材料,运动部件上的负载要比正常情况下要高,能源效率正在降低并且成本增加。目前,随着拓扑优化的创新,产品可以设计出耐用,轻巧的产品,可用于任何类型的应用。本论文介绍了用于开发碳纤维增强的轻质蜂窝复合材料的蜂窝结构性能的设计和预测。介绍了受生物材料启发的3D乌贼骨结构。借助拓扑优化和有限元分析,针对不同的体积百分比进行分析,以表征细胞结构的强度和刚度。另外,进行非线性分析以检查具有各向异性特性的细胞结构的行为。

著录项

  • 作者

    Gadipudi, Varun Kumar.;

  • 作者单位

    South Dakota State University.;

  • 授予单位 South Dakota State University.;
  • 学科 Mechanical engineering.;Materials science.;Engineering.
  • 学位 M.S.
  • 年度 2018
  • 页码 62 p.
  • 总页数 62
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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