框架建筑复合材料的生产、物理、机械性能的计算和化学、生物性能指标的技术基础理论

V. Erofeev
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引用次数: 1

摘要

各种用途的建筑物和构筑物的节能和运行可靠性取决于其建造中使用的建筑材料和产品的耐久性。迄今为止,框架建筑复合材料是在多结构理论的基础上发展起来的。用于制造建筑产品的框架技术包括从粗孔混合物中初步制造框架,然后用基质塑化粘合剂,细分散或细颗粒组合物填充硬化框架中的空隙,而框架和基体可以在各种粘合剂上形成。这项技术使建筑材料和产品的组合成为可能,这些材料和产品结合了最多样化甚至不相容的粘合剂,具有预定的一组特性,即开辟了定向材料科学的道路。本文介绍了框架复合建筑材料的工艺物理力学性能的理论研究和计算结果。揭示了框架复合材料在框架与矩阵的形成以及两者结合时的结构形成规律。确定了用基体浸渍骨架的过程遵循自由分散或连通分散体系的运动规律。推导了硬化框架复合材料结构应力的计算公式。计算产品导热系数的解析依赖关系是从现象学位置得到的。得到了有序集料模型弹性模量的计算表达式,并给出了框架复合材料在荷载作用下的破坏动力学过程。建立了框架复合材料扩散系数计算与主要结构形成因素的理论依赖关系。
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Fundamentals of technology theory of production, calculation physical and mechanical properties and indicators chemical and biological properties of frame building composites
Energy saving, operational reliability of buildings and structures for various purposes is determined by the durability of building materials and products used in their construction. To date, frame building composites have been developed on the basis of polystructural theory. The frame technology for the manufacture of building products consists in the preliminary manufacture of frames from coarse-pored mixtures, followed by filling voids in the hardened frame with a matrix-plasticized binder, fine-dispersed or fine-grained composition, while the frames and matrix can be formed on various binders. This technology makes it possible to obtain building materials and products with a combination of the most diverse and even incompatible binders with a predetermined set of properties, i.e. opens the way to directional materials science. The paper presents the results of theoretical research and calculation of the technological physical and mechanical properties of frame composite building materials. The regularities of the structure formation of frame composites at the level of the formation of frames and matrices, as well as when they are combined, are revealed. It is established that the process of impregnating the frame with a matrix obeys the laws of motion of freely dispersed or connected dispersed systems. Formulas for calculating structural stresses in hardening frame composites are derived. Analytical dependences for calculating the thermal conductivity coefficient of products are obtained from phenomenological positions. Expressions for the calculation of the modulus of elasticity are obtained for models of ordered aggregates and the kinetics of the processes of destruction of frame composites under their loading is shown. Theoretical dependences for calculating the diffusion coefficient in frame composites on the main structure-forming factors are established.
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审稿时长
18 weeks
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