Cryogenic pullout behavior of steel fibers from ultra-high-performance concrete under impact loading

  • Kim, Min-Jae
  • Yoo, Doo-Yeol
Citations

WEB OF SCIENCE

51
Citations

SCOPUS

52

초록

This study investigates the effect of impact loading condition on the pullout property of steel fibers from ultra-high-performance concrete (UHPC) under various temperatures. For this, static and impact loads, ambient and cryogenic (-170 degrees C) temperatures, three steel fiber types, i.e., straight, half-hooked, and twisted, and two inclination angles of 0 degrees and 45 degrees were considered. From the test results and analysis, it was found that the steel fibers mostly had positive values of dynamic increasing factor (DIF) for the average bond strength at ambient temperature, but these were significantly reduced when the fibers were geometrically deformed, inclined, or tested under cryogenic temperature. Slip capacities generally decreased under the influence of the impact loading condition, and this effect was more severe at cryogenic temperature. There was no obvious impact loading rate effect on the probabilities of fiber and UHPC matrix damages at both ambient and cryogenic temperatures. The DIF values for pullout energies normally decreased or even became negative when the fibers were inclined, geometrically deformed, or tested at cryogenic temperature.

키워드

Ultra-high-performance concreteSteel fiber typePullout responseImpact loadingCryogenic conditionSILICA FUMESTRENGTHMATRIXBOND
제목
Cryogenic pullout behavior of steel fibers from ultra-high-performance concrete under impact loading
저자
Kim, Min-JaeYoo, Doo-Yeol
DOI
10.1016/j.conbuildmat.2019.117852
발행일
2020-04
유형
Article
저널명
Construction and Building Materials
239
페이지
1 ~ 12