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열응력을 받은 하이브리드 섬유보강 시멘트 복합체의 내충격성능 평가
Evaluation of Impact Resistance of Hybrid Fiber Reinforced Cementitious Composites Subjected to Thermal Stress
한승현 ( Han Seung-hyeon ) , 김규용 ( Kim Gyu-yong ) , 이예찬 ( Lee Yae-chan ) , 유하민 ( Eu Ha-min ) , 박준영 ( Park Jun-young ) , 남정수 ( Nam Jung-soo )
UCI I410-ECN-151-24-02-088702054
This article is 4 pages or less.

In this study, the effect of hybrid fiber reinforcement on the residual strength and impact resistance of high-strength cementitious composites exposed to high temperatures was investigated. A cementitious composites was manufactured in which 0.15 vol% of polypropylene fiber (PP) and 1.0 vol% of smooth steel fiber (SSF) were double-mixed, and a residual strength test was conducted while thermal stress was applied by heating test, and then a high-velocity impact test was performed. In the case of general cementitious composites, the rear surface is damaged due to explosion and low tensile strength during high temperature or impact, while hybrid fiber reinforced cementitious composites can repeatedly absorb and distribute stress until multiple fibers are damaged to suppress the propagation of impact and resistance to explosion. Therefore, this study analyzed the residual strength of cementitious composites exposed to high temperatures depending on whether hybrid fibers were mixed or not, and collected research data on fracture behavior through high-speed impact tests to evaluate impact resistance and mechanical properties.

[자료제공 : 네이버학술정보]
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