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Multi-Story Volumetric Blocks Buildings with Lower Frame Floors

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dc.contributor.author Teshev, Ilia
dc.contributor.author Bespayev, Aliy
dc.contributor.author Zhambakina, Zauresh
dc.contributor.author Murat, Tamov
dc.contributor.author Altigenov, Ulan
dc.contributor.author Zhussupov, Timur
dc.contributor.author Tolegenova, Aigerim
dc.date.accessioned 2024-12-11T11:58:37Z
dc.date.available 2024-12-11T11:58:37Z
dc.date.issued 2024
dc.identifier.citation Teshev, I.; Bespayev, A.; Zhambakina, Z.; Tamov, M.; Altigenov, U.; Zhussupov, T.; Tolegenova, A. Multi-Story Volumetric Blocks Buildings with Lower Frame Floors. Buildings 2024, 14, 1655. https://doi.org/10.3390/ buildings14061655 ru
dc.identifier.issn 0007-3725
dc.identifier.other doi.org/10.3390/ buildings14061655
dc.identifier.uri http://rep.enu.kz/handle/enu/20109
dc.description.abstract This article presents the results of experimental studies of the stress–strain state of volumetric blocks based on the underlying frame structures. The aim of the research is to evaluate the stress–strain state and the nature of damage development as a result of an increase in the load up to a critical level. Based on the analysis of the nature of the damage, recommendations have been developed to strengthen the destruction zone. Data were collected on the redistribution of stresses and deformations, the formation of cracks and joint openings, the magnitude of horizontal displacements, and the failure mode of volumetric blocks and floor frames. Five full-scale volumetric blocks were tested under the loading of hydraulic jacks, differing in concrete type, reinforcement, presence of doors, and dimensions of the stylobate beams. When the volumetric modules were supported by a frame floor the results revealed that the maximum destructive load of 10,462 kN was observed in the first specimen; the horizontal displacements of the walls decreased by 13–18 mm, and there was a decrease in the crack opening width to 0.5 mm. The cracks decreased the strength of the walls, leading to a redistribution of the compressive stresses and their increase in the support zone. The most significant compressive strains in concrete in the corner parts of longitudinal walls were in the range of (600–620) × 10−6 , and in the middle part of the walls, 370 × 10−6 were observed. Furthermore, the largest cracks caused significant horizontal displacements (deplanation) of the walls, which decreased the stiffness of the conjunction of longitudinal walls with the floor slab and created an additional eccentricity of the vertical force. Based on the findings, the correlation between the measured parameters of each specimen at all stages of vertical load increase is demonstrated and illustrated in graphs of the measured parameters. The importance of quantity compliance with the initial rigid connection between the longitudinal wall and ceiling plate has been estimated. ru
dc.language.iso en ru
dc.publisher Buildings ru
dc.relation.ispartofseries 14, 1655;
dc.subject volumetric blocks ru
dc.subject compressive stress ru
dc.subject stiffness ru
dc.subject block strength ru
dc.subject damages ru
dc.subject stylobate beam ru
dc.subject crack resistance ru
dc.subject displacementsvolumetric blocks ru
dc.subject compressive stress ru
dc.subject stiffness ru
dc.subject block strength ru
dc.subject damages ru
dc.subject stylobate beam ru
dc.subject crack resistance ru
dc.subject displacements ru
dc.title Multi-Story Volumetric Blocks Buildings with Lower Frame Floors ru
dc.type Article ru


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