首页|混掺纤维水泥砂浆的高温性能研究

混掺纤维水泥砂浆的高温性能研究

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火灾产生的高温会对水泥基复合材料造成严重损伤,而混掺玄武岩纤维可一定程度上提高水泥基复合材料的耐高温性能.为研究不同种类玄武岩纤维与聚丙烯纤维混掺水泥砂浆经高温作用后的性能变化规律,测试了混掺纤维水泥砂浆高温后的基本力学性能,并借助扫描电子显微镜(SEM)和压汞试验对混掺纤维水泥砂浆的微观结构进行分析.结果表明:不同种类的玄武岩纤维与聚丙烯纤维混掺后均能改善水泥砂浆的耐高温性能;温度在200℃时由于水泥砂浆内部发生二次水化,混掺纤维水泥砂浆的抗压强度和抗折强度显著提高.随着温度升高至800℃,水泥砂浆内部结构被破坏,孔隙率逐渐增大,力学性能逐渐下降,但混掺纤维水泥砂浆性能仍高于基准组,这是因为聚丙烯纤维高温熔化后留下大量的孔道,缓解水泥砂浆内部孔隙压力,且玄武岩纤维在水泥砂浆内部起到桥接作用,缓解了高温裂纹的扩展.
High Temperature Performance of Blended Fiber Cement Mortar
The high temperature caused by fire will cause serious damage to cement-based composites,and mixing basalt fiber can improve the high temperature resistance of cement-based composites to some extent.In order to study the performance changes of cement mortar mixed with different kinds of basalt fiber and polypropylene fiber after high temperature,the basic mechanical properties of blended fiber cement mortar after high temperature were tested,and the microstructure of blended fiber cement mortar was analyzed by means of scanning electron microscope(SEM)and mercury intrusion test.The results show that the mixture of different types of basalt fiber and polypropylene fiber can improve the high temperature resistance of cement mortar.When the temperature is 200 ℃,due to the secondary hydration in the cement mortar,the compressive strength and flexural strength of blended fiber cement mortar are significantly improved.As the temperature rises to 800 ℃,the internal structure of cement mortar is destroyed,the porosity gradually increases,and the mechanical properties gradually decline.However,the performance of blended fiber cement mortar is still higher than that of the reference group,because the polypropylene fiber leaves a large number of pores after melting at high temperature,alleviating the internal pore pressure of cement mortar,and the basalt fiber plays a bridging role in cement mortar,and the propagation of high temperature cracks is alleviated.

polypropylene fiberbasalt fiberhigh temperaturemechanical propertyporositymicrostructure

郭子荣、杨鼎宜、曹忠露、贾向锋、赵健、陈龙祥、毛翔

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扬州大学建筑科学与工程学院,扬州 225127

中交天津港湾工程研究院有限公司,天津 300222

扬州华运新材料科技有限公司,扬州 225000

聚丙烯纤维 玄武岩纤维 高温 力学性能 孔隙率 微观结构

江苏省重点研发计划(社会发展项目)扬州市-扬州大学合作共建科技创新平台项目中交第一航务工程局有限公司"揭榜挂帅"项目

BE2022776YZ20202622022-YHJJBGS-02

2024

硅酸盐通报
中国硅酸盐学会 中材人工晶体研究院

硅酸盐通报

CSTPCD北大核心
影响因子:0.698
ISSN:1001-1625
年,卷(期):2024.43(3)
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