木屑填充石膏粘结剂优选复合材料实验方法的数学规划实现

IF 0.1 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Russian Journal of Building Construction and Architecture Pub Date : 2023-05-15 DOI:10.36622/vstu.2023.2.58.004
T. I. Gorokhov, A. Erofeev, B. Bondarev, A. Korneeva
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引用次数: 0

摘要

问题的陈述。复合材料最优成分的选择是一项复杂的任务,可以用实验的数学规划方法来解决。开发一种新型复合装饰建筑材料,其基础是填充木屑的石膏粘合剂,其条件是需要找到方法来解决降低装饰材料成本的问题,同时保持其环境友好性和其他操作参数。结果。本文对以木屑填充石膏粘结剂为基础的新型建筑饰面材料的最佳组合选择进行了数学规划实验。得到了石膏粘结剂单位体积消耗量、密度、导热系数、横向抗弯强度和抗压性能的响应方程。结论。基于对材料特性感知水平的分析(应用专家评估方法),实验获得的回归评估结果允许人们根据木屑对石膏粘结剂的感知来确定新整理材料的组成。
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Implementation of the Mathematical Planning of an Experiment Method in Selecting Optimal Composite Material Based on Gypsum Binder Filled with Wood Filings
Statement of the problem. The selection of composite material optimal composition is a complex task that can be solved using the method of mathematical planning of an experiment. The development of a new composite finishing building material based on a gypsum binder filled with wood filings is conditioned by the need to find ways to solve the problem of reducing the cost of finishing materials while maintaining their environmental friendliness and other operational parameters. Results. The article carried out the mathematical planning of an experiment on the selection of the optimal composition of a new building finishing material based on a gypsum binder filled with wood filings. Response equations are obtained for the following characteristics of the material: gypsum binder consumption per unit volume, density, thermal conductivity coefficient, transverse bending strength and compression. Conclusions. Based on the analysis of the level of perception of the characteristics of the material (application of an expert assessment method), the experimentally obtained results of the regression assessment allow one to determine the composition of a new finishing material based on the perception of gypsum binder by wood filings.
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来源期刊
Russian Journal of Building Construction and Architecture
Russian Journal of Building Construction and Architecture CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
50.00%
发文量
28
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