Improving the Structural Characteristics of Heavy Concrete by Combined Disperse Reinforcement
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A. Beskopylny | B. Meskhi | S. Stel’makh | E. Shcherban’ | L. Mailyan | A. Shilov | A. Smolyanichenko | D. El'shaeva | D. El’shaeva
[1] A. El-Nemr,et al. The performance of fiber GGBS based alkali-activated concrete , 2021 .
[2] Su Jin Lee,et al. Strength and Durability of Hybrid Fiber-Reinforced Latex-Modified Rapid-Set Cement Preplaced Concrete for Emergency Concrete Pavement Repair , 2021, Applied Sciences.
[3] B. Mladenović,et al. Experimental Analysis of Continuous Beams Made of Self-Compacting Concrete (Scc) Strengthened with Fiber Reinforced Polymer (Frp) Materials , 2021, Applied Sciences.
[4] Mohammad AlHamaydeh,et al. Data for Interaction Diagrams of Geopolymer FRC Slender Columns with Double-Layer GFRP and Steel Reinforcement , 2021, Data.
[5] I. Parinov,et al. Investigation of Integral and Differential Characteristics of Variatropic Structure Heavy Concretes by Ultrasonic Methods , 2021, Applied Sciences.
[6] Chang-Sik Choi,et al. Evaluation of the Ultimate Strength of the Ultra-High-Performance Fiber-Reinforced Concrete Beams , 2021 .
[7] P. Narloch,et al. Designing the Composition of Cement-Stabilized Rammed Earth with the Association Analysis Application , 2021, Materials.
[8] Wisal Ahmed,et al. Production of sustainable and structural fiber reinforced recycled aggregate concrete with improved fracture properties: A review , 2021 .
[9] M. Kharun,et al. Basalt fiber reinforced expanded clay concrete for building structures , 2021 .
[10] I. Parinov,et al. Effects of the Geometric Parameters of Mixer on the Mixing Process of Foam Concrete Mixture and Its Energy Efficiency , 2020, Applied Sciences.
[11] G. Nesvetaev,et al. On the Influence of Cross-Section and Reinforcement of Reinforced Concrete Constructions on the Concentration of Coarse Aggregate in Concrete with Frame Structure , 2020 .
[12] S. Singh,et al. Durability studies on recycled fine aggregate concrete , 2020 .
[13] Omar A. Sediek,et al. Collapse Behavior of Hollow Structural Section Columns under Combined Axial and Lateral Loading , 2020 .
[14] Hubert Anysz,et al. Artificial Neural Networks in Classification of Steel Grades Based on Non-Destructive Tests , 2020, Materials.
[15] A. Zeyad. Effect of fibers types on fresh properties and flexural toughness of self-compacting concrete , 2020 .
[16] P. Konečný,et al. Comparison of Material Properties of SCC Concrete with Steel Fibres Related to Ingress of Chlorides , 2020, Crystals.
[17] A. Sysoev,et al. Influence of Type of Filler and Dispersive Reinforcement on the Nature of Structured Formation and Deformative Properties of Vibrocentrifuged Concrete , 2020, IOP Conference Series: Materials Science and Engineering.
[18] A. Fawzy,et al. Influence of silica fume on the pervious concrete with different levels of recycled aggregates , 2020 .
[19] V. Jósa,et al. Fine-grained concrete with various types of fibers , 2020 .
[20] Karpenko,et al. Destruction of powder-activated concrete with fixation of destruction by a laser interferometer , 2020 .
[21] S. Stelmakh,et al. Effect of Disperse Reinforcement on the Structural Quality Factor of Vibrated and Centrifuged Concretes on the Сombined Aggregate , 2019 .
[22] D. Mailyan,et al. The Cut Span Effect on the Beams Inclined Sections Strength Reinforced with External Composite Reinforcement , 2019 .
[23] B. Yazyev,et al. Effect of Dosage of Redispersible Powders on the Properties of Fine Concrete , 2019 .
[24] S. Stelmakh,et al. Efficiency Comparison of Fiber Reinforcement in Vibrated аnd Centrifuged Concretes at Different Types of the Applied Heavy Aggregate , 2019 .
[25] Baydaa Hussain Maula,et al. An Empirical Relationship between Compressive Strength and Ultrasonic Pulse Velocity for Concrete , 2019 .
[26] Ahmad B. A. Hassanat,et al. Predicting Compressive Strength of Cement-Stabilized Rammed Earth Based on SEM Images Using Computer Vision and Deep Learning , 2019, Applied Sciences.
[27] Kefei Li,et al. Crack-altered durability properties and performance of structural concretes , 2019, Cement and Concrete Research.
[28] Doo-Yeol Yoo,et al. Effects of fiber shape and distance on the pullout behavior of steel fibers embedded in ultra-high-performance concrete , 2019, Cement and Concrete Composites.
[29] J. Torrenti,et al. Optimization of concrete mix design to account for strength and hydration heat in massive concrete structures , 2019, Cement and Concrete Composites.
[30] P. Lura,et al. Properties of early-age concrete relevant to cracking in massive concrete , 2019, Cement and Concrete Research.
[31] I. Patnaikuni,et al. Effects of hybrid fibers on the development of high volume fly ash cement composite , 2019, Construction and Building Materials.
[32] M. Ramli,et al. The constituents, properties and application of heavyweight concrete: A review , 2019, Construction and Building Materials.
[33] Henrik Stang,et al. Limit states for sustainable reinforced concrete structures , 2019, Cement and Concrete Research.
[34] Hans Beushausen,et al. Durability, service life prediction, and modelling for reinforced concrete structures – review and critique , 2019, Cement and Concrete Research.
[35] N. Muhamad Bunnori,et al. Durability performance of a novel ultra-high-performance PET green concrete (UHPPGC) , 2019, Construction and Building Materials.
[36] Hubert Anysz,et al. Designing the Composition of Cement Stabilized Rammed Earth Using Artificial Neural Networks , 2019, Materials.
[37] Wen-Yao Lu,et al. Tests of high-strength concrete deep beams , 2019, Magazine of Concrete Research.
[38] D. Mailyan,et al. Initial crack effect on the strength of oblique cross sections of reinforced concrete beams strengthened with carbon fiber , 2019, E3S Web of Conferences.
[39] A. Belyaev,et al. Design Features of Three-Layer Slab Reinforced Concrete Structures , 2018, Materials Science Forum.
[40] M. F. Ruiz,et al. Compressive Strength and Deformation Capacity of Concrete under Sustained Loading and Low Stress Rates , 2018, Journal of Advanced Concrete Technology.
[41] Konrad Oleksik,et al. The Effect of the Morphology of Coarse Aggregate on the Properties of Self-Compacting High-Performance Fibre-Reinforced Concrete , 2018, Materials.
[42] O. Fischer,et al. Analysis-oriented stress–strain model of CRFP-confined circular concrete columns with applied preload , 2018 .
[43] S. Georgiev,et al. The strength of compressed structures with CFRP materials reinforcement when exceeding the cross-section size , 2018 .
[44] Dmitry Mailyan,et al. Innovative methods of strengthening reinforced concrete structures , 2018 .
[45] Serdar Yazyev,et al. Optimization of thick-walled spherical shells at thermal and power influences , 2017 .
[46] Klara Vasilievna Talantova,et al. Developing Basic Data for Designing Steel Fiber Concrete Based Structures , 2016 .
[47] Togay Ozbakkaloglu,et al. High-performance fiber-reinforced concrete: a review , 2016, Journal of Materials Science.
[48] T. Trapko. Effect of eccentric compression loading on the strains of FRCM confined concrete columns , 2014 .
[49] Jurij Pucharenko,et al. A Structural Model and Strength Predicting of Fiber-Reinforced Concrete , 2013 .
[50] Susan L. Tighe,et al. The effect of recycled concrete aggregate properties on the bond strength between RCA concrete and steel reinforcement , 2011 .
[51] Guangjing Xiong,et al. Load carrying capacity and ductility of circular concrete columns confined by ferrocement including steel bars , 2011 .
[52] Xiao-Hui Wang,et al. A strain-softening model for steel-concrete bond , 2003 .