在复杂土壤条件下采用水平构件加固土壤法的应用原则

V. Shvets, Marianna Postolatii, Maksym J. Zhylowskyi
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引用次数: 0

摘要

文章探讨了通过在制备建筑产品的混合物中引入聚苯乙烯泡沫、炭黑和发泡剂来改善建筑产品的热性能和机械性能的问题。文章对建筑材料的主要热性能进行了比较,并考虑了新材料添加剂和骨料的选择。提出了几种通过不同添加剂的优化组合来改善材料隔热性能的方法。强调了需要改进的主要热工特性,如密度、抗冻性、强度、导热性和能效。研究了发泡聚苯乙烯对减轻建筑材料重量的影响,以及因此对减轻地基负荷的影响。研究了主要等级的炭黑及其主要特性。研究了不同类型的碳黑对导热性和材料整体抗负荷能力的影响。研究了通过提高粘结剂的化学活性、降低水灰比和使用粘结剂的机械化学活化来确保无机基体强度的方法。研究了发泡剂的类型及其技术特点对混凝土性能的影响。研究了塑化添加剂对减少用水量和水泥用量的影响。研究了创造一种经济上可行且节能的新型建筑材料的问题,以及使用发泡聚苯乙烯和炭黑提高建筑材料整体效率的前景。分析了在生产新型建筑材料过程中降低能耗的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PRINCIPLES OF APPLICATION OF THE SOIL EINFORCEMENT METHOD WITH HORIZONTAL ELEMENTS IN COMPLEX SOIL CONDITIONS
The article considers the issue of improving the thermal and mechanical characteristics of building products by introducing polystyrene foam, carbon black, and foaming agent into the mixture for their preparation. A comparison of the main thermal performance of building materials is made, and options for additives and aggregates for the new material are considered. Several approaches to improving the thermal insulation properties of the material through the optimal combination of different additives are proposed. The main thermal engineering characteristics for improvement, such as density, frost resistance, strength, thermal conductivity, and energy efficiency, are highlighted. The options for combining fillers to ensure the density and strength of the newly formed material are considered.The influence of expanded polystyrene on reducing the weight of building material and, as a result, on reducing the load on foundations is studied. The main grades of carbon black and their main characteristics are considered. The influence of different types of carbon black on thermal conductivity and overall resistance of the material to loads is investigated. Methods for ensuring the strength of the inorganic matrix by increasing the chemical activity of the binder, reducing the water-cement ratio, and using mechanochemical activation of the binder are studied. The influence of the type of foaming agents and their technological features on the properties of concrete is investigated. The effect of plasticizing additives on reducing water consumption and, as a result, cement consumption is considered.The problems of creating a new economically feasible and energy-efficient new building material and the prospects of using expanded polystyrene and carbon black to improve the overall efficiency of building materials are investigated. The possibilities of reducing energy consumption in the production of new building materials are analyzed.
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