Strengthen of RC Members by Using CFRP

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Details

Carbon fibre reinforced polymer (CFRP) strengthening of concrete structures under impact loading has shown great potential in recent years. However, concrete structures often experience natural (e.g. earthquake, wind) as well as man-made (e.g. vehicular impact, blast) dynamic loading. Therefore, there is a growing interest among researchers to investigate the capability of CFRP strengthened members under such dynamic conditions. This book focuses on the experimental test and finite element (FE) numerical modelling and simulation of CFRP strengthened RC member under unequal trans-lateral impact loading to predict the behaviour and failure modes. Impact simulation process and the CFRP strengthened RC members are validated with the existing experimental results in this book. The validated FE model of CFRP strengthened RC member is then further used to investigate the effects of unequal trans-lateral impact loading on its structural performance. Comparisons between unstrengthened RC member and strengthened CFRP-RC member clearly indicate the performance enhancement of strengthened member under unequal trans-lateral impact loading.

Autorentext

Dr KHALIL MOHAMMED AL-BUKHAITI is a researcher in the field of Structural Engineering since 2008. His projects focus on the Strength of Reinforcement Concrete by using Fiber reinforcement Polymers and Impact Force. Southwest Jiaotong University, China is supporting his projects. Has an academic team working under Structural Engineering Laboratory.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09786139996247
    • Sprache Englisch
    • Genre Maschinenbau
    • Anzahl Seiten 120
    • Größe H220mm x B150mm x T8mm
    • Jahr 2020
    • EAN 9786139996247
    • Format Kartonierter Einband
    • ISBN 6139996244
    • Veröffentlichung 18.05.2020
    • Titel Strengthen of RC Members by Using CFRP
    • Autor Khalil Al-Bukhaiti , Liu Yanhui
    • Untertitel Study on Dynamic Response of CFRP-Reinforced Square RC Members Under Unequal Transverse Impact
    • Gewicht 197g
    • Herausgeber LAP LAMBERT Academic Publishing

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