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Direct measurement of fiber failure in fiber bundles and in fiber-reinforced composite materials.

机译:直接测量纤维束和纤维增强复合材料中的纤维破坏。

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摘要

The mechanical failure behavior of individual reinforcing fibers is an important performance aspect of fiber reinforced composite systems. This is particularly true of ceramic matrix fiber composites in which the majority of the work of failure occurs during fiber failure and pullout in the post-matrix cracking and post-ultimate strength region. This dissertation seeks to understand the statistical behavior of fiber failure in brittle matrix composites and to develop methods for determining the onset of fiber failure as a signal for the onset of irreversible failure of the reinforcing structure.; Fiber failure in aligned fiber bundles, both free and in model composites, was tested under tensile loading to determine the onset of fiber failure and the statistical distribution of fiber failures by direct interrogation of the continuity of model fibers. Fiber interrogation monitored in real time the electrical continuity of aluminum metal coated glass fibers. A model composite consisting of the aluminum-coated glass fibers in an epoxy resin matrix was studied to determine the failure behavior of individual fibers in a composite environment. Glass fibers in an epoxy matrix was selected as a composite model due to the high E{dollar}rmsb{lcub}f{rcub}/Esb{lcub}m{rcub},{dollar} high {dollar}rmsigmasb{lcub}f{rcub}/sigmasb{lcub}m{rcub}{dollar} and nearly brittle behavior of the epoxy matrix selected. An electronic high speed analog/digital interface was used to monitor the electrical, and hence mechanical, continuity of the fibers under test. These data were used to assess the onset of the individual fiber failure, the calculation of apparent fiber strengths, and the determination of Weibull distribution of the apparent fiber strength values.; The procedure developed in this work for assessing fiber failure in bundles and composites has been shown to be sufficiently sensitive to resolve the onset of fiber failure in bundles and in model composites prior to measurable reductions in load carrying capacity, thus providing a means for early detection of fiber failure. The procedure is also a means by which the failure mode of fibers in composites can be compared to classical bundle theory failure, thus supporting or refuting a popular model.
机译:单个增强纤维的机械破坏行为是纤维增强复合材料系统的重要性能方面。对于陶瓷基纤维复合材料尤其如此,其中大部分破坏工作发生在纤维破坏和后基体开裂和最终强度区域的拉拔过程中。本论文试图了解脆性基体复合材料中纤维破坏的统计行为,并开发确定纤维破坏开始的方法,以作为增强结构不可逆破坏开始的信号。在拉伸载荷下测试了对齐的纤维束(无论是自由纤维还是模型复合材料)中的纤维破坏,通过直接询问模型纤维的连续性来确定纤维破坏的开始和纤维破坏的统计分布。光纤询问实时监控铝金属涂层玻璃纤维的电连续性。研究了由环氧树脂基体中的铝涂层玻璃纤维组成的模型复合材料,以确定单个纤维在复合环境中的破坏行为。由于高E {dollar} rmsb {lcub} f {rcub} / Esb {lcub} m {rcub},{dollar}高{dollar} rmsigmasb {lcub} f高,因此选择了环氧基质中的玻璃纤维作为复合模型{rcub} / sigmasb {lcub} m {rcub} {dollar}和所选环氧基质的几乎脆性。电子高速模拟/数字接口用于监视被测光纤的电气连续性,以及因此的机械连续性。这些数据被用来评估单个纤维破坏的开始,表观纤维强度的计算以及表观纤维强度值的威布尔分布的确定。这项工作中开发的用于评估束和复合材料中纤维破坏的程序已被证明足够敏感,可以在可测量的承载能力降低之前解决束和复合材料中纤维破坏的发生,从而为早期检测提供了一种手段光纤故障。该程序也是将复合材料中纤维的破坏模式与经典束理论破坏进行比较的一种方法,从而支持或驳斥了一种流行的模型。

著录项

  • 作者

    Toffoli, Samuel Marcio.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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