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玄武岩纤维形态对沥青结合料及混合料性能的影响

Influence of Basalt Fiber Morphology on the Properties of Asphalt Binders and Mixtures.

作者信息

Cai Chenhao, Lou Keke, Qian Fuxin, Xiao Peng

机构信息

College of Civil Science and Engineering, Yangzhou University, Yangzhou 225127, China.

Administration of Urban Facilities, Yangzhou 225003, China.

出版信息

Materials (Basel). 2024 Nov 1;17(21):5358. doi: 10.3390/ma17215358.

Abstract

Basalt fiber (BF) has been proven to be an effective additive for improving the properties of asphalt mixtures. However, the influence of basalt fiber morphology on the properties of asphalt binders and mixtures remains inadequately explored. In this study, chopped basalt fiber (CBF) and flocculent basalt fiber (FBF) were selected to make samples for testing the influence of the two types of basalt fibers on asphalt materials. Fluorescence microscopy was used to obtain the dispersion of fiber in asphalt binders. Then, a temperature sweep test and a multiple stress creep recovery (MSCR) test were carried out to appraise the rheological characteristics of the binder. Moreover, the performance of the fiber-reinforced asphalt mixture was evaluated by a wheel tracking test, a uniaxial penetration test, an indirect tensile asphalt cracking test (IDEAL-CT), a low-temperature bending test, a water-immersion stability test, and a freeze-thaw splitting test. The results indicate that the rheological behavior of asphalt binders could be enhanced by both types of fibers. Notably, FBFs exhibit a larger contact area with asphalt mortar compared to CBFs, resulting in improved resistance to deformation under identical shear conditions. Meanwhile, the performance of the asphalt mixture underwent different levels of enhancement with the incorporation of two morphologies of basalt fiber. Specifically, as for the road property indices with FBFs, the enhancement extent of DS in the wheel tracking test, that of R in the uniaxial penetration test, that of the CT in the IDEAL-CT test, and that of ε in the low-temperature trabecular bending test was 3.1%, 6.8%, 15.1%, and 6.5%, respectively, when compared to the CBF-reinforced mixtures. Compared with CBFs, FBFs significantly enhanced the elasticity and deformation recovery ability of asphalt mixtures, demonstrating greater resistance to high-temperature deformation and a more pronounced effect in delaying the onset of middle- and low-temperature cracking. Additionally, the volume of the air void for asphalt mixtures containing FBFs was lower than that containing CBFs, thereby reducing the likelihood of water damage due to excessive voids. Consequently, the moisture susceptibility enhancement of CBFs to asphalt mixture was not obvious, while FBFs could improve moisture susceptibility by more than 20%. Overall, the impact of basalt fibers with different morphologies on the properties of asphalt pavement materials varies significantly, and the research results may provide reference values for the choice of engineering fibers.

摘要

玄武岩纤维(BF)已被证明是一种改善沥青混合料性能的有效添加剂。然而,玄武岩纤维形态对沥青结合料和混合料性能的影响仍未得到充分研究。在本研究中,选择了短切玄武岩纤维(CBF)和絮状玄武岩纤维(FBF)来制作样品,以测试这两种玄武岩纤维对沥青材料的影响。采用荧光显微镜观察纤维在沥青结合料中的分散情况。然后,进行温度扫描试验和多应力蠕变恢复(MSCR)试验来评估结合料的流变特性。此外,通过车辙试验、单轴贯入试验、间接拉伸沥青开裂试验(IDEAL-CT)、低温弯曲试验、浸水稳定性试验和冻融劈裂试验来评估纤维增强沥青混合料的性能。结果表明,两种纤维均可增强沥青结合料的流变性能。值得注意的是,与CBF相比,FBF与沥青胶浆的接触面积更大,在相同剪切条件下抗变形能力更强。同时,掺入两种形态的玄武岩纤维后,沥青混合料的性能得到了不同程度的提升。具体而言,对于FBF增强的混合料,与CBF增强的混合料相比,车辙试验中的动稳定度(DS)提高了3.1%,单轴贯入试验中的贯入度(R)提高了6.8%,IDEAL-CT试验中的低温劲度模量(CT)提高了15.1%,低温小梁弯曲试验中的弯拉应变(ε)提高了6.5%。与CBF相比,FBF显著提高了沥青混合料的弹性和变形恢复能力,表现出更强的高温抗变形能力,对延迟中低温开裂的效果更显著。此外,含FBF的沥青混合料的空隙率低于含CBF的沥青混合料,从而降低了因空隙过多导致水损害的可能性。因此,CBF对沥青混合料水稳定性的提高不明显,而FBF可使水稳定性提高20%以上。总体而言,不同形态的玄武岩纤维对沥青路面材料性能的影响差异显著,研究结果可为工程纤维的选择提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f20/11547675/ce822b397bb1/materials-17-05358-g001.jpg

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