logo
calendar10 Iyun 2026
view27
Main language:Russian

Concretes for Additive Construction Production in Dry Hot Climate for Transport Infrastructure

Field of Science:Civil and Structural EngineeringMechanical Engineering
pdf

09_Shipacheva-Muradov_b....pdf

PDF

ARTICLE ANNOTATION

quote
The article examines the challenges and solutions for 3D concrete printing in arid, hot climates for transport infrastructure construction. It analyzes the detrimental effects of high temperatures, low humidity, and cyclic loading on the printing process and structural durability. Modern approaches to designing specialized concrete composites are presented, including mix designs with complex admixtures and reinforcement methods. The advantages of additive technologies for creating climate-adapted, functionally integrated, and cost-effective structures are highlighted.

AUTHORS

Y.Shipacheva

"TOSHKENT DAVLAT TRANSPORT UNIVERSITETI" DAVLAT MUASSASASI

Tags

# additive construction# 3D concrete printing# arid hot climate# transport infrastructure# printable concrete

SIMILAR ARTICLES

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

Article Identifiers

References

Шермухамедов, У. З., & Абдуахатова, М. А. (2018). Современное состояние и перспективы проектирования и строительства городских транспортных сооружений республики Узбекистан. Путевой навигатор, (36-37), 24-28.

U.Z. Shermuhamedov, M.M. Sobirova. O‘zbekiston Respublikasi avtomobil yo‘llaridagi temir-beton ko‘prik konstruksiyalarini ekspluatatsiya qilish tizimining hozirgi holati, “Yosh ilmiy tadqiqotchi” 1-xalqaro ilmiy-amaliy konferensiya maqolalari to‘plami. Toshkent, 2022-yil 1-2-aprel, bet. 30-35.

Салиханов, С. С., & Шермухамедов, У. З. (2020). Мостовое полотно железобетонных мостов с использованием нового типа гидроизоляции. Путевой навигатор, (42), 30-32.

Shermuxamedov, U. Z., & Zokirov, F. Z. (2019). Application of modern, effective materials in rail road reinforced bridge elements. Journal of tashkent institute of railway engineers, 15(3), 8-13.

Собирова, М. М. (2021). Разработка новых конструктивных решений сейсмозащиты железнодорожных мостов с учётом многоуровневого проектирования. Oriental renaissance: Innovative, educational, natural and social sciences, 1(9), 625-631.

Белый А.А. Мониторинг в системе управления техническим состоянием искусственных сооружений // Красная Линия. Дороги № 41/9/2009. СПб: ООО Журнал современных строительных технологий «Красная Линия», 2009. с. 90.4.

Карапетов Э.С., Белый А.А. Эксплуатационное состояние железобетонных мостовых сооружений Санкт-Петербурга // Сборник трудов «125 лет в мостостроении» под ред. докт. техн. наук В.Н. Смирнова. СПб:ПГУПС, 2008. с. 62-68.

Salixanov Saidxon, Zokirov Fakhriddin, & Azamov Nodirbek (2022). A new type of construction of the carriageway of road bridges using non-traditional waterproofing materials. Science and innovation, 1 (C3), 208-213. doi: 10.5281/zenodo.6784223

Latest Technologies in Construction. 3D Printer 2016 / Baryshnikov Alexander Anatolyevich, Mustafin Nail Shamilyevich

Innovative Construction of Buildings and Structures Using a 3D Printer 2018 / Leonova Anna Nikolaevna, Meged Tatyana Konstantinovna, Sogonova Margarita Yuryevna

Progressive Construction Technology of Printing Houses on 3D Printers 2020 / Gridina Darya Vladimirovna

Modern Three-Dimensional Printers for Additive Construction Production 2019 / Trebukhin A. F., Parri D. E.

Muradov Z. M. Investigation of Concrete Strength Considering Nonlinear Deformation Using Modern Electronic Means //Academy. – 2020. – No. 12 (63). – Pp. 108-110.

Karakulov Kh. M. et al. Technological Methods for Improving the Durability of Concretes in the Dry Hot Climate of Uzbekistan on the Example of Jizzakh Region //BST: Bulletin of Construction Equipment. – 2020. – No. 8. – Pp. 24-26.

Muradov Z. M. On Calculating Concrete Strength Considering Nonlinear Deformation Based on Fracture Mechanics //Science and Education. – 2022. – Vol. 3. – No. 2. – Pp. 367-374.

Additive Technology: Description, Definition, Application Features and Reviews. Additive Technologies in Industry [Electronic Resource]. Access Mode: https://fb.ru/article/231049/additivnaya-tehnologiya-opisanie-opredelenie-osobennosti-primeneniya-i-otzyivyi-additivnyie-tehnologii-v-promyishlennosti.

Review Article on 3D Construction Technologies [Electronic Resource]. Access Mode: https://habr.com/ru/post/224299/.

Ivanova, E. A. Methodology for Research of Materials for Construction 3D Printing / E. A. Ivanova // Prospects for the Development of Additive Technologies in the Republic of Belarus. Minsk: Belarus. Nauka, 2021. Pp. 15–26.

Concrete Mixes. Test Methods: STB 1545–2005. Introduced 01.07.2005. Minsk: Minstroiarkhitektury, 2005. 24 p.

Concretes. Methods for Determining Strength by Control Specimens: GOST 10180–2012. Introduced 01.07.2013. Moscow: Standartinform, 2018. 36 p.

Zafarov O., Gulomov D., Murodov Z. Conducting Engineering-Geological Researches on Bridges Located in Our Country and Diagnosing Their Superstructures, Methods of Eliminating Identified Defects //Problems in the Textile and Light Industry in the Context of Integration of Science and Industry and Ways to Solve Them:(Ptlicisiws-2022). – 2023. – Vol. 2789. – No. 1. – P. 040079.

Ganiev I. G. et al. Global Issue of Ageing Reinforced Concrete Bridge Infrastructure //Technical Science Integrated Research. – 2025. – Vol. 1. – No. 3. – Pp. 3-9.

Ganiev I. G. et al. Failure Mechanisms of Reinforced Concrete Bridges //Technical Science Integrated Research. – 2025. – Vol. 1. – No. 3. – Pp. 10-14.