<p class="MsoNormal" style="background: white; vertical-align: baseline;"><span style="font-size: 11.0pt; color: #174e86; border: none windowtext 1.0pt; mso-border-alt: none windowtext 0cm; padding: 0cm;">This book attempts to develop an integrative method that combines the processing and mechanical simulations for z-pinned carbon fiber-reinforced polymer (CFRP) composites. The topics in this book cover experimental characterization, processing modeling, mechanical simulation, and the integrated analysis method for z-pinned CFRP composites. Explanations are made in detail about how to combine the processing induced residual stress and z-pin/composite interfacial debonding with tensile strength, failure mode, and bridging tractions modeling and simulations for z-pinned CFRP composites. This book is considered as a complementary work of existing books about composites mechanics and processing.</span></p><p class="MsoNormal" style="background: white; vertical-align: baseline;"><span style="font-size: 11.0pt; color: #174e86; border: none windowtext 1.0pt; mso-border-alt: none windowtext 0cm; padding: 0cm;">This book is used as a guideline for graduate students and research engineers who wish to learn the basic modeling techniques in processing and characterizing z-pinned CFRP composites. For reading the book, readers will need the technical background of mechanics and finite element method.</span></p>

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Modeling of Z-pinned Carbon Fiber-Reinforced Polymer (CFRP) Composite

  • Yingjie Xu,
  • Weihong Zhang

摘要

This book attempts to develop an integrative method that combines the processing and mechanical simulations for z-pinned carbon fiber-reinforced polymer (CFRP) composites. The topics in this book cover experimental characterization, processing modeling, mechanical simulation, and the integrated analysis method for z-pinned CFRP composites. Explanations are made in detail about how to combine the processing induced residual stress and z-pin/composite interfacial debonding with tensile strength, failure mode, and bridging tractions modeling and simulations for z-pinned CFRP composites. This book is considered as a complementary work of existing books about composites mechanics and processing.

This book is used as a guideline for graduate students and research engineers who wish to learn the basic modeling techniques in processing and characterizing z-pinned CFRP composites. For reading the book, readers will need the technical background of mechanics and finite element method.