Akhmetov Daniyar Akbulatovich, Pukharenko Yuri Vladimirovich, Vatin Nikolai Ivanovich, Akhazhanov Sungat Berkinovich, Akhmetov Akbulat Raiymbekovich, Jetpisbayeva Ainur Zhenisbekkyzy, Utepov Yelbek Bakhitovich
NIISTROMPROJECT (LLP), Almaty 050000, Kazakhstan.
Department of Building Materials and Metrology, Saint Petersburg State University of Architecture and Civil Engineering, 190005 Saint Petersburg, Russia.
Materials (Basel). 2022 Apr 4;15(7):2648. doi: 10.3390/ma15072648.
Manufacturers of building materials strive to optimize the three basic concrete properties-strength, durability, and shrinkage deformation, of which the focus is generally on the durability in the structure when designing and monitoring the poured concrete. Studying concretes' structural performance and the change in their characteristics over time enables the solution of many important issues associated with the design of reliable, durable, and cost-effective buildings and structures. This article presents studies aimed at improving the physical, technical, and operational characteristics of cement concrete and reducing cement consumption in heavy concretes through the use of complex modifiers and volumetric fiber reinforcement. Four concrete compositions of widely recognized grades were developed, of which samples were molded and tested for compressive and flexural strength, frost resistance, volumetric water absorption, and density. Test results confirmed the possibility of binder (cement) economy up to 18% and increasing frost resistance up to W300 when using microsilica, reduction in volumetric water absorption of up to 40% when using both microsilica and hyperplasticizer, and increasing flexural strength by over 30% when using polymer fiber. The developed compositions passed the industrial tests, and were successfully introduced in the production process of the operating reinforced concrete products' manufacturer.
建筑材料制造商努力优化混凝土的三个基本性能——强度、耐久性和收缩变形,在设计和监测现浇混凝土时,通常重点关注其在结构中的耐久性。研究混凝土的结构性能及其特性随时间的变化,有助于解决许多与可靠、耐用且经济高效的建筑物和结构设计相关的重要问题。本文介绍了旨在通过使用复合改性剂和体积纤维增强来改善水泥混凝土的物理、技术和使用性能,并减少重混凝土中水泥用量的研究。开发了四种广泛认可等级的混凝土配方,并制作了样本,测试其抗压强度、抗折强度、抗冻性、体积吸水率和密度。测试结果证实,使用微硅粉时,胶凝材料(水泥)可节省多达18%,抗冻性提高到W300;同时使用微硅粉和高效减水剂时,体积吸水率可降低多达40%;使用聚合物纤维时,抗折强度可提高30%以上。所开发的配方通过了工业试验,并成功应用于现有钢筋混凝土产品制造商的生产过程中。