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Title: Ultra high-performance fiber reinforced concrete panel subjected to high velocity impact // Magazine of Civil Engineering. – 2021. – № 7 (107). — С. 10703
Creators: Mai V. C.; Luu X. B.; Nguyen V. T.
Imprint: 2021
Collection: Общая коллекция
Subjects: Строительство; Строительные конструкции; fiber concrete panels; ultra-efficient fiber concrete panels; fiber reinforcement; high-speed strikes; fiber reinforced concrete strength; fiber reinforced concrete damage; фибробетонные панели; сверхэффективные фибробетонные панели; армирование волокнами; высокоскоростные удары; прочность фибробетонов; повреждение фибробетонов
UDC: 624.01
LBC: 38.5
Document type: Article, report
File type: PDF
Language: English
DOI: 10.34910/MCE.107.3
Rights: Свободный доступ из сети Интернет (чтение, печать, копирование)
Record key: RU\SPSTU\edoc\67967

Allowed Actions: Read Download (0.8 Mb)

Group: Anonymous

Network: Internet

Annotation

In the last few decades, several full-scale tests have been performed to study the behavior of Ultra High-Performance Fiber Reinforced Concrete (UHPFRC). However, only limited research has been devoted to simulate performance of UHPFRC subjected to special load and impact, such as high-velocity impact. Accurate modeling and simulation of the UHPFRC panel subjected to high velocity impact is a big challenge involving costly experimental characterization of material and verification of ballistic impact response with actual test data. This article investigates the dynamic behavior of UHPFRC panel against multiple bullet impacts using the Holmquist-Johnson-Cook damage model incorporating both the damage and residual material strength. The projectile used in this study is chosen with high-speed and low-weight like the fragments which can be formed by industrial accidents or in an explosion. The kinetic and internal energies of the UHPFRC panel are also evaluated. The analysis results are compared to the High Strength Concrete (HSC) in terms of capability to absorb energy and reduce the damage on target panel.

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Table of Contents

  • Long-term strength of polyethylene pipes with increased temperature resistance without reinforcement
  • Ultra high-performance fiber reinforced concrete panel subjected to high velocity impact
    • 1. Introduction
    • 2. Materials and Methods
    • 3. Results and Discussion
    • 4. Conclusions
    • 5. Conflict of Interests

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