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Fatigue testing and damage development in continuous fiber reinforced metal matrix composites

机译:连续纤维增强金属基复合材料的疲劳测试和损伤发展

摘要

A general overview of the fatigue behavior of metal matrix composites (MMC) is presented. The first objective is to present experimental procedures and techniques for conducting a meaningful fatigue test to detect and quantify fatigue damage in MMC. These techniques include interpretation of stress-strain responses, acid etching of the matrix, edge replicas of the specimen under load, radiography, and micrographs of the failure surfaces. In addition, the paper will show how stiffness loss in continuous fiber reinforced metal matrix composites can be a useful parameter for detecting fatigue damage initiation and accumulation. Second, numerous examples of how fatigue damage can initiate and grow in various MMC are given. Depending on the relative fatigue behavior of the fiber and matrix, and the interface properties, the failure modes of MMC can be grouped into four categories: (1) matrix dominated, (2) fiber dominated, (3) self-similar damage growth, and (4) fiber/matrix interfacial failures. These four types of damage will be discussed and illustrated by examples with the emphasis on the fatigue of unnotched laminates.
机译:概述了金属基复合材料(MMC)的疲劳行为。第一个目标是介绍用于进行有意义的疲劳测试以检测和量化MMC中疲劳损伤的实验程序和技术。这些技术包括应力-应变响应的解释,基体的酸蚀,载荷下样品的边缘复制品,射线照相以及破坏表面的显微照片。此外,本文还将展示连续纤维增强金属基复合材料的刚度损失如何成为检测疲劳损伤的开始和累积的有用参数。其次,给出了许多关于如何在各种MMC中引发和加剧疲劳损伤的示例。根据纤维和基体的相对疲劳行为以及界面特性,MMC的失效模式可分为四类:(1)基体为主,(2)纤维为主,(3)自相似损伤的增长, (4)纤维/基质界面破坏。实例将讨论和说明这四种类型的损坏,重点是无缺口层压板的疲劳。

著录项

  • 作者

    Johnson W. S.;

  • 作者单位
  • 年度 1988
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  • 原文格式 PDF
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