Wang Zhenhui, Guo Rongxin, Liu Guoshou, Guo Luxin, Yan Yong
Faculty of Civil Engineering and Mechanics, Kunming University of Science and Technology, Kunming 650504, China.
Yunnan Key Laboratory of Disaster Reduction in Civil Engineering, Kunming 650504, China.
Polymers (Basel). 2022 Jul 22;14(15):2979. doi: 10.3390/polym14152979.
Polyoxymethylene (POM) fiber is a new polymer fiber with the potential to improve the performance of airport pavement concrete. The effect of POM fiber on the flexural fatigue properties of concrete is an important issue in its application for airport pavement concrete. In this study, four-point flexural fatigue experiments were conducted using ordinary performance concrete (OPC) and POM fiber airport pavement concrete (PFAPC) with fiber volume contents of 0.6% and 1.2%, at four stress levels, to examine the flexural fatigue characteristics of these materials. A two-parameter Weibull distribution test of flexural fatigue life was performed, after examining the change in flexural fatigue deformation using the cycle ratio (/). A flexural fatigue life equation was then constructed considering various failure probabilities (survival rate). The results show that POM fiber had no discernible impact on the static load strength of airport pavement concrete, and the difference between PFAPC and OPC in terms of static load strength was less than 5%. POM fiber can substantially increase the flexural fatigue deformation capacity of airport pavement concrete by almost 100%, but POM fiber had a different degree of detrimental impact on the fatigue life of airport pavement concrete compared to OPC, with a maximum decrease of 85%. The fatigue lives of OPC and PFAPC adhered to the two-parameter Weibull distribution, the single- and double-log fatigue equations considering various failure probabilities had a high fitting degree based on the two-parameter Weibull distribution, and their was essentially over 0.90. The ultimate fatigue strength of PFAPC was roughly 4% lower than that of OPC. This study on the flexural fatigue properties of POM fiber airport pavement concrete has apparent research value for the extension of POM fiber to the construction of long-life airport pavements.
聚甲醛(POM)纤维是一种新型聚合物纤维,具有改善机场道面混凝土性能的潜力。POM纤维对混凝土弯曲疲劳性能的影响是其在机场道面混凝土应用中的一个重要问题。本研究采用普通性能混凝土(OPC)和纤维体积含量分别为0.6%和1.2%的POM纤维机场道面混凝土(PFAPC),在四个应力水平下进行四点弯曲疲劳试验,以研究这些材料的弯曲疲劳特性。在使用循环比(/)研究弯曲疲劳变形变化后,对弯曲疲劳寿命进行了双参数威布尔分布试验。然后构建了考虑各种失效概率(存活率)的弯曲疲劳寿命方程。结果表明,POM纤维对机场道面混凝土的静载强度没有明显影响,PFAPC与OPC在静载强度方面的差异小于5%。POM纤维可使机场道面混凝土的弯曲疲劳变形能力大幅提高近100%,但与OPC相比,POM纤维对机场道面混凝土的疲劳寿命有不同程度的不利影响,最大降幅达85%。OPC和PFAPC的疲劳寿命均符合双参数威布尔分布,基于双参数威布尔分布考虑各种失效概率的单对数和双对数疲劳方程拟合度较高,其 基本超过0.90。PFAPC的极限疲劳强度比OPC约低4%。本研究对POM纤维机场道面混凝土弯曲疲劳性能的研究,对于将POM纤维推广应用于长寿命机场道面建设具有明显的研究价值。