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New concepts for strength enhancement of co-cured composite single lap joints.

机译:增强共固化复合单搭接接头强度的新概念。

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摘要

Often the benefits of utilizing composites are diminished by the poor performance of their joint designs. This research examines designs that seek to improve the performance of composite co-cured single lap joints under static and fatigue loading, with only minor alteration to the geometry or lay-up of a base design. The minor alteration criterion was chosen in order to reduce the cost of implementing these designs in replacing existing joints or altering existing manufacturing methods. The approach consisted of two phases, denoted Phase I and II. Phase I consisted of monotonic tests for all the proposed designs as well as Finite Element Analysis of the design showing the most improvement. The objective of Phase I was to determine whether the designs would improve monotonic strength at the joint interface and identify the most effective designs. The designs tested during Phase I may be categorized as Single Nested Overlap, Half Slice, Full Slice and Transverse Layer. The preliminary tests consisted of single lap joint composites with altered and unaltered interfaces tested under uniform extension. The configurations examined include a quasi-isotropic lay-up and a unidirectional lay-up, however the designs are applicable to any lay-up. A comparison of ultimate strengths indicated that these designs offered improvement in strength. During testing, acoustic emission equipment was used to monitor damage progression as well as detect damage initiation and accumulation. The most consistent and practical design improvements were determined to be the Single Nested Overlap and Transverse Layer configurations. A Finite Element Analysis (FEA) of the Reference joint and the Single Nested Overlap joint was performed. FE predictions of the effectiveness of the nested overlap design support the test data through a reduction in shear stress and a reversal of peel stresses.
机译:使用复合材料的好处通常会因其接头设计的不良性能而降低。这项研究检查了旨在提高复合共固化单搭接接头在静态和疲劳载荷下的性能的设计,这些设计仅对基础设计的几何形状或布局进行了很小的改动。选择较小的变更标准是为了减少更换现有接头或更改现有制造方法时实施这些设计的成本。该方法包括两个阶段,分别表示为第一阶段和第二阶段。第一阶段包括对所有拟议设计的单调测试,以及对设计表现出最大改进的有限元分析。第一阶段的目的是确定设计是否会提高关节界面的单调强度并确定最有效的设计。在阶段I中测试的设计可以分为单层重叠,半层,全层和横向层。初步测试由单搭接接头复合材料组成,该复合材料的界面经过改变和未改变,并在均匀延伸下进行了测试。所检查的配置包括准各向同性叠层和单向叠层,但是这些设计适用于任何叠层。极限强度的比较表明,这些设计提高了强度。在测试过程中,使用了声发射设备来监测损坏的进程以及检测损坏的开始和累积。确定的最一致和实用的设计改进是“单嵌套重叠”和“横向层”配置。对参考关节和单嵌套重叠关节进行了有限元分析(FEA)。嵌套重叠设计有效性的有限元预测通过减小剪应力和反向剥离应力来支持测试数据。

著录项

  • 作者

    Coates, Cameron Wayne.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

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