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New construction: zero cycle aspects, modern methods and promising materials

机译:新建筑:零周期方面,现代方法和有前途的材料

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This work is aimed at studying the physicochemical processes and establishing the functional dependence of the strength parameters on the sulfur concentration in the composite. The introduction of sulfur in the composite contributes to a change in strength properties, an increase in frost resistance. The dependence of strength on sulfur concentration was studied. The experimental function is determined analytically by solving a system of linear algebraic equations consisting of canonical equations of a given approximating function. The behavior of the dependence of strength on the concentration of nanotubes at two intervals is plotted graphically. Further studies are needed to gain a complete picture of the composite and its characteristics. Nowadays, the results of determining the deformative characteristics are being processed, the impact of the water-cement ratio, the equivalent economic assessment are being studied. At present, an analytical description of the physicochemical and physicomechanical dependencies is being carried out, and an aggregate mathematical model is being built. The results will be presented to the public at subsequent scientific and research conferences.
机译:这项工作旨在研究理化过程,并确定强度参数对复合材料中硫浓度的功能依赖性。在复合物中引入硫有助于改变强度性能,提高抗冻性。研究了强度对硫浓度的依赖性。通过求解由给定逼近函数的典范方程组成的线性代数方程组,可以解析地确定实验函数。以图形方式绘制了强度在两个间隔上对纳米管浓度的依赖性行为。需要进一步研究以获得复合材料及其特性的完整图片。如今,正在处理确定变形特性的结果,研究水灰比的影响以及等效的经济评估。目前,正在对物理化学和物理机械依赖性进行分析描述,并正在建立一个综合数学模型。研究结果将在以后的科学研究会议上向公众介绍。

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