Study of Concrete Filled UPVC Tubes as Column under Axial Loading

IF 0.1 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Russian Journal of Building Construction and Architecture Pub Date : 2023-05-15 DOI:10.36622/vstu.2023.2.58.005
M. Sharma, M. Ansari, N. Islam
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Abstract

Statement of the problem. This article aims to examine the behavior of UPVC bounded columns reinforced with polypropylene fibers under axial compression. Results. To develop this model, a number of samples of concrete filled UPVC pipe (CFUT) with different geometric properties were tested. To obtain the specimens, different material volume levels were used to investigate the sensitivity of these columns to various parameters. 3, 4 and 5 class pipes with 160-, 200- and 225-mm diameters and 800 mm length with 0.6, 0.8 and 1.0 MPa nominal/working pressure were taken and M30 and M40 grades of concrete were to fill the tubes. The effect of each variable on the ultimate strength, ductility and confinement efficiency of the samples was investigated. All the specimens were compressed by applying load only to the concrete core to obtain the load-displacement variations and the corresponding deformation mode. All the specimens failed with the development of shear cracks and slightly bulging macrocracks. Conclusions. A finite element model was developed using the proposed stress-strain variation of confined concrete with UPVC tubes to simulate axial compression of CFUT specimens. According to the results obtained, the effect of the change in the diameter-thickness ratio failure stress of concrete limited by (D/t) is obtained and discussed with an empirical relationship. Polypropylene fibers were found to slightly increase the column strength up to a certain volume fraction, after which the strength generally expe-rienced a decrease.
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轴向荷载作用下UPVC管填充混凝土柱的研究
问题的陈述。本文旨在研究聚丙烯纤维增强UPVC有界柱在轴压作用下的性能。结果。为了建立该模型,对具有不同几何特性的UPVC管(CFUT)混凝土填充样品进行了测试。为了获得样品,采用不同的材料体积水平来研究这些柱对各种参数的敏感性。采用直径为160、200和225毫米、长度为800毫米、公称工作压力为0.6、0.8和1.0 MPa的3、4和5级管道,管内填充M30和M40级混凝土。研究了各变量对试样的极限强度、延性和约束效率的影响。所有试件仅对混凝土芯部施加荷载进行压缩,得到荷载-位移变化规律及相应的变形模式。所有试样均以剪切裂纹和微胀形宏观裂纹的发展而破坏。结论。利用所提出的UPVC管约束混凝土的应力-应变变化模型,建立了模拟CFUT试件轴压的有限元模型。根据所得结果,得出了受(D/t)限制的混凝土径厚比破坏应力变化的影响,并以经验关系进行了讨论。聚丙烯纤维在达到一定体积分数后,柱强度略有提高,超过一定体积分数后,柱强度普遍下降。
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来源期刊
Russian Journal of Building Construction and Architecture
Russian Journal of Building Construction and Architecture CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
50.00%
发文量
28
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