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聚乙烯醇纤维增强磷石膏基复合材料的工作性能与力学性能研究

Investigation of Workability and Mechanical Properties of PVA Fiber-Reinforced Phosphogypsum-Based Composite Materials.

作者信息

Huang Ronggui, Tao Zhong, Wu Lei, Shen Jinjin, Xu Weijie

机构信息

Faculty of Civil Engineering and Architecture, Kunming University of Science and Technology, Kunming 650599, China.

Earthquake Engineering Researching Center of Yunnan, Kunming 650599, China.

出版信息

Materials (Basel). 2023 Jun 8;16(12):4244. doi: 10.3390/ma16124244.

Abstract

To address the poor characteristics of low strength and poor toughness in phosphogypsum-based construction material, this study investigates the influence of different diameters, lengths, and dosages of polyvinyl alcohol (abbreviated as PVA) fibers on the workability and mechanical properties of phosphogypsum-based construction material. The results show that as the length and dosage of PVA fibers increase, the flowability of the slurry gradually decreases, and the setting time also shortens. With an increase in the diameter of PVA fibers, the rate of decrease in flowability slows down, and the rate of shortening of setting time also gradually slows down. Moreover, the inclusion of PVA fibers significantly improves the mechanical strength of the specimens. When PVA fibers with a diameter of 15 μm, length of 12 mm, and dosage of 1.6% are used, the phosphogypsum-based construction material reinforced with PVA fibers exhibits optimal performance. Under this mixing ratio, the strength values of the specimens for flexural strength, bending strength, compressive strength, and tensile strength are 10.07 MPa, 10.73 MPa, 13.25 MPa, and 2.89 MPa, respectively. Compared to the control group, the strength enhancements are 273.00%, 164.29%, 15.32%, and 99.31%, respectively. SEM scanning of the microstructure provides a preliminary explanation for the mechanism of how PVA fibers affect the workability and mechanical properties of phosphogypsum-based construction material. The findings of this study can provide a reference for the research and application of fiber-reinforced phosphogypsum-based construction material.

摘要

为解决磷石膏基建筑材料强度低、韧性差的不良特性,本研究探讨了不同直径、长度和用量的聚乙烯醇(简称PVA)纤维对磷石膏基建筑材料工作性能和力学性能的影响。结果表明,随着PVA纤维长度和用量的增加,浆料的流动性逐渐降低,凝结时间也缩短。随着PVA纤维直径的增加,流动性降低的速率减慢,凝结时间缩短的速率也逐渐减慢。此外,加入PVA纤维显著提高了试件的力学强度。当使用直径为15μm、长度为12mm、用量为1.6%的PVA纤维时,PVA纤维增强的磷石膏基建筑材料表现出最佳性能。在此配合比下,试件的抗折强度、抗弯强度、抗压强度和抗拉强度值分别为10.07MPa、10.73MPa、13.25MPa和2.89MPa。与对照组相比,强度提高分别为273.00%、164.29%、15.32%和99.31%。微观结构的SEM扫描为PVA纤维影响磷石膏基建筑材料工作性能和力学性能的机理提供了初步解释。本研究结果可为纤维增强磷石膏基建筑材料的研究与应用提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97dc/10300962/12fc98147f98/materials-16-04244-g001.jpg

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