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Elastic behavior of 3-D braided composites under compressive loading.

机译:3-D编织复合材料在压缩载荷下的弹性行为。

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摘要

In this study, a systematically conducted experiment has been carried out to characterize the compressive properties of 3-D braided composites. Two analytical models have also been modified and incorporated into finite element codes to predict the elastic behavior of 3-D braided composites under compressive loading.; On the experimental characterization, three different composite systems, each reinforced by carbon, S-2 glass and Kevlar fibers, respectively, were employed to study the material effect on the compressive properties. Four different braided structures were used to study the effect of fiber architecture. In addition, two compression test fixtures, namely, the shear-loaded fixture (IITRI) and the end-loaded fixture, were used. The experimental results reveal that fiber architecture plays a significant role in carbon and S-2 glass braided composites under compressive loading. Kevlar composites are not sensitive to fiber architecture. The compressive strength and modulus of braided composites are comparable with those of equivalent ({dollar}{lcub}pm{rcub}theta{dollar}/0) laminates.; In theoretical analysis, two models are used to predict the elastic behavior of 3-D braided composites under compressive loading. The Fabric Geometry Model (FGM) based on the micromechanics of composite materials and the Finite Cell Model (FCM) based on a frame-truss structural finite element method have been modified and implemented into finite element codes. In general, Fabric Geometry Model is seen to yield much better predictions than Finite Cell Model does. For carbon and S-2 glass braided composites, FGM predictions of all properties agree quite well with the experimental results for all four different braiding percentages. FCM, on the other hand, works only for composites with lower (i.e., 25% or 50%) braiding percentage. Besides, neither FGM or FCM does not account the non-linear behavior of Kevlar braided composites.
机译:在这项研究中,已进行了系统地进行的实验,以表征3-D编织复合材料的压缩性能。还修改了两个分析模型,并将其合并到有限元代码中,以预测3-D编织复合材料在压缩载荷下的弹性行为。在实验表征中,分别使用碳,S-2玻璃和凯夫拉尔纤维增强的三种不同的复合体系研究了材料对压缩性能的影响。四种不同的编织结构用于研究纤维结构的影响。另外,使用了两个压缩测试夹具,即剪切加载夹具(IITRI)和端加载夹具。实验结果表明,纤维结构在压缩载荷下对碳和S-2玻璃编织复合材料具有重要作用。凯夫拉尔复合材料对纤维结构不敏感。编织复合材料的抗压强度和模量可与同等({dollar} {lcub} pm {rcub} theta {dollar} / 0)层压板相当。在理论分析中,使用两个模型来预测3-D编织复合材料在压缩载荷下的弹性行为。基于复合材料微力学的织物几何模型(FGM)和基于框架结构有限元方法的有限单元模型(FCM)已被修改并实现为有限元代码。通常,与有限元模型相比,织物几何模型的预测结果要好得多。对于碳和S-2玻璃编织复合材料,所有特性的FGM预测与所有四个不同编织百分比的实验结果非常吻合。另一方面,FCM仅适用于编织百分比较低(即25%或50%)的复合材料。此外,FGM或FCM均未考虑凯夫拉尔编织复合材料的非线性行为。

著录项

  • 作者

    Liao, David.;

  • 作者单位

    Drexel University.;

  • 授予单位 Drexel University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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