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Fabrication and Experimental Study of Mechanical Behavior of Hollow Glass Fiber-Based Self-healing Polymer Composite

  • 2021
  • OriginalPaper
  • Chapter
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Abstract

The chapter focuses on the fabrication and experimental study of mechanical behavior in hollow glass fiber-based self-healing polymer composites. It begins by introducing the concept of self-healing materials and their importance in addressing material degradation and failure under various loading conditions. The authors concentrate on fiber-reinforced polymer composites, highlighting their simpler self-repair mechanisms and ability to preserve functional self-repair elements. The fabrication process of the composite is detailed, including the creation of hollow glass fibers and their embedding in an epoxy resin matrix. Experimental studies on the tensile behavior of the self-healing composite are presented, showcasing the material's brittle nature and the impact of self-healing agents on its mechanical properties. The chapter concludes by discussing the potential benefits of local strengthening during the healing process and the influence of loading rates on the composite's self-healing properties.

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Title
Fabrication and Experimental Study of Mechanical Behavior of Hollow Glass Fiber-Based Self-healing Polymer Composite
Authors
Anuj Kumar Jain
Rajeev Kumar
Pikesh Bansal
Copyright Year
2021
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-33-6029-7_10
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