Experimental Study on Structural Performance of Cast-in-Place Frame Printed Concrete Wall

IF 3.6 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY International Journal of Concrete Structures and Materials Pub Date : 2023-11-08 DOI:10.1186/s40069-023-00620-5
Yanan Fu, Ying Zhang, Lei Wu
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Abstract

Abstract A growing number of nations and regions have printed concrete structures thanks to the application of 3D printing technology in the field of civil engineering. However, the houses built with printed concrete are mostly printed concrete wall structures with composite load-bearing walls and cast-in-place frames. This structure solely takes into account the performance of the structure under vertical loads, which does not address its ability to withstand horizontal loads. In this paper, wall specimens were designed and tested under horizontal reciprocal loads in order to investigate the structural performance of this cast-in-place border-frame printed concrete wall structure under horizontal loads. Four factors are examined in order to determine how well the cast-in-place frame printed concrete wall structure performs when subjected to horizontal loads: column longitudinal reinforcement strain, hysteresis curve, skeleton curve, and energy dissipation capacity. According to the test results, the addition of the wall increased the bearing capacity and accumulated energy dissipation of the specimen, but the increase in stiffness also caused the structural ductility to decrease. As a result, cracks were more likely to generate at the wall–column joints, so the stiffness matching between the printed concrete wall and the cast-in-place side frame needed to be further coordinated to obtain a higher ductility. It turns out that the wall sections have little impact on the seismic performance of the members.

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现浇框架印花混凝土墙结构性能试验研究
随着3D打印技术在土木工程领域的应用,越来越多的国家和地区开始打印混凝土结构。然而,用打印混凝土建造的房屋大多是打印混凝土墙体结构,复合承重墙和现浇框架。这种结构只考虑了结构在垂直荷载下的性能,而没有考虑其承受水平荷载的能力。为了研究这种现浇边框印花混凝土墙体结构在水平荷载作用下的结构性能,本文设计了水平往复荷载作用下的墙体试件并进行了试验。为了确定现浇框架印刷混凝土墙体结构在水平荷载作用下的表现,我们考察了四个因素:柱纵向钢筋应变、滞回曲线、骨架曲线和耗能能力。试验结果表明,墙体的加入增加了试件的承载力和累积耗能,但刚度的增加也导致结构延性降低。因此,墙柱结合处更容易产生裂缝,因此需要进一步协调打印混凝土墙体与现浇侧框的刚度匹配,以获得更高的延性。结果表明,墙体截面对构件的抗震性能影响不大。
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来源期刊
International Journal of Concrete Structures and Materials
International Journal of Concrete Structures and Materials CONSTRUCTION & BUILDING TECHNOLOGY-ENGINEERING, CIVIL
CiteScore
6.30
自引率
5.90%
发文量
61
审稿时长
13 weeks
期刊介绍: The International Journal of Concrete Structures and Materials (IJCSM) provides a forum targeted for engineers and scientists around the globe to present and discuss various topics related to concrete, concrete structures and other applied materials incorporating cement cementitious binder, and polymer or fiber in conjunction with concrete. These forums give participants an opportunity to contribute their knowledge for the advancement of society. Topics include, but are not limited to, research results on Properties and performance of concrete and concrete structures Advanced and improved experimental techniques Latest modelling methods Possible improvement and enhancement of concrete properties Structural and microstructural characterization Concrete applications Fiber reinforced concrete technology Concrete waste management.
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