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木纤维增强石膏基复合材料的耐水增韧改性

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[目的]木纤维增强石膏基复合材料的耐水性和韧性较差,限制了其在建筑领域进一步的发展,针对此材料上述 2 种缺点开展木纤维增强石膏基复合材料的耐水增韧改性研究,扩展石膏基复合材料的应用领域,提高其经济效益。[方法]以硅酸盐水泥为无机改性剂、聚乙烯醇溶液(PVA)为增韧剂,探究两者协同对木纤维增强石膏基复合材料力学性能和耐水性能的影响,通过X-射线衍射(XRD)、傅立叶红外光谱(FT-IR)和扫描电子显微镜(SEM)对复合材料的微观结构进行了表征。[结果]硅酸盐水泥和PVA在复合材料中产生了协同作用,可以弥补单掺水泥强度低和单掺PVA耐水性差的缺点。复合材料抗折强度和抗压强度分别为5。56和10。01 MPa,较改性前分别提升了40%和63%,2 h吸水率和24 h吸水率分别为19。83%和20。14%,比改性前分别降低了 10。17%和 11。97%,软化系数提高了 0。4。XRD、FT-IR、SEM结果显示水泥与石膏的水化反应产生了钙钒石和硅酸钙凝胶等水化物,水化物填充水泥石膏基体。孔结构分析结果显示,水泥和PVA的加入降低了复合材料的孔隙率,减少超大孔的出现,复合材料的耐水性和力学性能得到提升。[结论]硅酸盐水泥的加入使复合材料内部水化反应受到影响,导致复合材料的力学强度受到影响。加入PVA后的复合材料内部物质连接紧密,提高了复合材料的力学性能,但是耐水性较差。硅酸盐水泥和PVA协同能提高复合材料的力学性能和耐水性能,弥补了单掺硅酸盐水泥复合材料力学下降和单掺PVA复合材料耐水性差的缺点。
Water-resistant toughening modification of wood fiber-reinforced gypsum-based composites
[Objective]The poor water resistance and toughness of wood fiber-reinforced gypsum-based composites limit their further development,and the water resistance and toughening modification of wood fiber-reinforced gypsum-based composites were carried out for the above two defects of this material to improve the application fields and economic benefits of gypsum-based composites.[Method]The effect of silicate cement as inorganic modifier and polyvinyl alcohol solution(PVA)as toughening agent was investigated on the mechanical properties and water resistance of wood fiber-reinforced gypsum-based composites in synergy,and the microstructure of the composites was characterized by X-ray diffraction(XRD),Fourier infrared spectroscopy(FT-IR)and scanning electron microscopy(SEM).[Result]Silicate cement and PVA produced synergistic effect in the composites,and the synergistic effect could make up for the defects of low strength of single admixture of cement and poor water resistance of single admixture of PVA.The flexural and compressive strengths of the composites were 5.56 MPa and 10.01 MPa,respectively,which were 40%and 63%higher than those before modification.2 h water absorption and 24 h water absorption were 19.83%and 20.14%,respectively,which were 10.17%and 11.97%lower than those before modification,and the softening coefficient was increased by 0.4.XRD,FT-IR,and SEM results showed that the hydration reaction of cement with gypsum produced hydrates such as calcium vanadate and calcium silicate gel,and the hydrates filled the cement gypsum matrix.The results of pore structure analysis showed that the addition of cement and PVA reduced the porosity of the composites and reduced the appearance of oversized pores,and the water resistance and mechanics of the composites were improved.[Conclusion]The addition of silicate cement affects the internal hydration reaction of the composites,resulting in the mechanical strength of the composites.The addition of PVA results in a tightly connected material inside the composites,which improves the mechanical properties of the composites,but the water resistance is poor.The synergy of silicate cement and PVA can improve the mechanical properties and water resistance of the composites,and make up for the defects of the composites with reduced mechanical properties of silicate cement alone and poor water resistance of the composites with PVA alone.

silicate cementpolyvinyl alcoholwood fibergypsum-based compositeswater resistancetoughness

黄琴琴、李新功、吴义强、郑霞

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中南林业科技大学 材料科学与工程学院,湖南 长沙 410004

硅酸盐水泥 聚乙烯醇 木纤维 石膏基复合材料 耐水性能 韧性

国家自然科学基金项目湖南省科技创新团队项目湖南省教育厅科学研究项目

321718822021RC406220K143

2024

中南林业科技大学学报
中南林业科技大学

中南林业科技大学学报

CSTPCD北大核心
影响因子:1.442
ISSN:1673-923X
年,卷(期):2024.44(2)
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