石膏木复合材料的结构和变形强度性能与构件组成关系的数学模型

N. Lukuttsova, A. Pykin, A. Lukash, S. Shvachko, V. Krasnyy
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引用次数: 0

摘要

由于木材填料中存在可提取物质,这些物质对水泥的水化作用、形成的水化结晶的形状和大小以及凝结时间产生不利影响,导致水泥-木复合材料(CWC)的强度特性下降,使其生产困难。与CWC相比,石膏木复合材料(GWC)对可提取物质的影响不太敏感,但其强度和变形性较低。为了提高石膏木复合材料的结构性能和变形强度性能,本文建立了石膏木复合材料的组成对其平均密度、开孔率、抗压强度和弹性模量的影响的数学模型。石膏木复合材料用于各种用途的建筑隔断和围护结构。建立了新伐硬木中建筑石膏、脲醛树脂和木材填料用量对GWC性能影响的数学模型。根据Student’s和Fisher’s标准,对所得数学模型的统计显著性和充分性进行了评价,从而确定了平均密度为1250 ~ 1370 kg/m3、开孔率为25 ~ 36%、抗压强度为25 ~ 30 MPa、弹性模量为1210 ~ 1780 MPa的GWC的制造和运行中各配方因子的合理值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MATHEMATICAL MODELS OF THE DEPENDENCE OF THE STRUCTURAL AND DEFORMATION-STRENGTH PROPERTIES OF THE GYPSUM-WOOD COMPOSITE ON THE COMPONENT COMPOSITION
The production of cement-wood composites (CWC) is difficult due to the presence of extractable substances in the wood filler, which have a negative effect on the hydration of cement, the shape and size of the resulting crystalline hydrates, and the setting time, which leads to a decrease in the strength characteristics of the CWC. Gypsum-wood composites (GWC), in contrast to CWC, are less sensitive to the effects of extractable substances, but they are characterized by low strength and deformability. In order to improve the structural and deformation-strength properties of the GWC, the article presents a mathematical modeling of the effect of the component composition on the average density, open porosity, compressive strength and modulus of elasticity of a gypsum-wood composite for the installation of partitions and enclosing structures in buildings for various purposes. Mathematical models of the dependence of GWC properties on the amount of building gypsum, urea-formaldehyde resin and wood filler from freshly cut hardwood are presented. According to Student's and Fisher's criteria, an assessment was made of the statistical significance and adequacy of the obtained mathematical models, which make it possible to determine the rational values of recipe factors in the manufacture and operation of GWC with an average density of 1250-1370 kg/m3, an open porosity of 25-36%, and a compressive strength of 25-30 MPa, modulus of elasticity 1210-1780 MPa.
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