您的位置: 首页 > 外文期刊论文 > 详情页

Effect of elevated temperature on flexural behavior and fibers-matrix bonding of recycled PP fiber-reinforced cementitious composite

作   者:
Francioso, VitoMoro, CarlosCastillo, AlbertoVelay-Lizancos, Mirian
作者机构:
Lyles Sch Civil EngnPurdue Univ IN 47907 USA W Lafayette
关键词:
High-temperature exposureFiber-matrix bondingToughnessCoolingThermal shockRecycled PP fibersFlexural strengthFiber-reinforced mortarITZDIC
期刊名称:
Construction and Building Materials
i s s n:
0950-0618
年卷期:
2021 年 269 卷 Feb.1 期
页   码:
121243.1-121243.9
页   码:
摘   要:
This research aims to study the effects of elevated temperature exposure on the flexural performance of recycled polypropylene (PP) fiber-reinforced cementitious composites. Four mixtures with different percentages of PP fibers (0%, 0.5%, 1%, and 1.5% by volume) were studied. For each mortar, 9 samples of 40 x 40 x 160 mm were cast and cured for 28 days. While 3 samples of each mixture were tested under standard conditions, the other 6 were exposed to high temperature (200 degrees C) for 2 h and cooled in two different ways before testing (3 were tested hot and 3 were let cool down completely). Flexural strength test, Differential Image Correlation (DIC) and digital microscopy techniques were employed to evaluate the effects of high-temperature exposure and cooling procedures on flexural strength, toughness and bonding. Results showed that the use of recycled PP fibers had a negligible effect on flexural strength in normal conditions. However, fibers provided mortars a residual strength and ductile behavior after peak-load. Besides, flexural strength, post-peak residual strength, secondary strength and secondary toughness were enhanced after exposure to 200 degrees C and slow cooling, improving the behavior of the composite under flexural stresses. These results, along with the optical microscope images, suggest an improved bonding between the mortar matrix and the PP recycled fibers after exposure to 200 degrees C (temperature close to the melting point of fibers). (C) 2020 Elsevier Ltd. All rights reserved.
相关作者
载入中,请稍后...
相关机构
    载入中,请稍后...
应用推荐

意 见 箱

匿名:登录

个人用户登录

找回密码

第三方账号登录

忘记密码

个人用户注册

必须为有效邮箱
6~16位数字与字母组合
6~16位数字与字母组合
请输入正确的手机号码

信息补充