蒸压加气混凝土墙板双面加固砖砌体墙抗压承载性能研究
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1.浙江省建筑设计研究院有限公司;2.浙江工业大学 土木工程学院;3.华固杭州建筑技术有限公司;4.浙江工业大学工程设计集团有限公司

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TU362

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国家自然科学基金项目(面上项目)(52378270,52408302,52402036),浙江省建设科研项目(2023K144)


Study on the Compressive Bearing Performance of Masonry Walls Reinforced with Double-Sided Prefabricated Autoclaved Aerated Concrete Panels
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Affiliation:

1.Zhejiang Province Institute Of Architectural Design And Research;2.College of Civil Engineering,Zhejiang University of Technology;3.Huagu Hangzhou Construction Technology Co;4.Zhejiang University of Technology Engineering Design Group Co,Ltd

Fund Project:

General Program of the National Natural Science Foundation of China (No. 52378270,52408302,52402036); Zhejiang Provincial Construction Research Project(No. 2023K144)

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    摘要:

    为研究蒸压加气混凝土(AAC)墙板加固砖砌体墙的抗压承载性能,设计制作了2片AAC墙板双面加固砖砌体墙和2片作为对比试件的未加固砖砌体墙,通过抗压承载力试验和有限元数值分析,研究AAC板加固砖砌体墙的受压破坏形态和承载性能。试验和数值分析结果表明:蒸压加气混凝土墙板面层可对砖砌体墙形成约束作用,延缓砖墙开裂,提高墙体的受压承载力、刚度、延性和整体性;与未加固砌体墙相比,在试验中双面AAC板加固的墙体受压承载力最大提高了71.3%,在数值模拟中最大提高了67.5%。基于试件的破坏形态、受力特征及界面传力、协同工作特点,提出了蒸压加气混凝土板面层加固方法的受压承载力简化计算公式,给出了加气混凝土强度利用系数和钢筋强度利用系数。

    Abstract:

    To investigate the compressive bearing performance of brick masonry walls reinforced with prefabricated autoclaved aerated concrete (AAC) panels, two brick masonry walls reinforced with double-sided prefabricated AAC panels and two unreinforced brick masonry walls as control specimens were designed and fabricated. Through compressive bearing capacity tests and finite element simulation software, the failure modes and compressive bearing performance of the brick masonry walls reinforced with prefabricated AAC panels were studied. Both the experimental and simulation results indicate that the reinforced layer of prefabricated AAC panels can provide confinement to the wall, delaying the cracking of the brick masonry wall and enhancing its compressive bearing capacity, ductility, and integrity. Compared to the unreinforced masonry walls, the compressive bearing capacity of the double-sided prefabricated AAC panel-reinforced walls increased by a maximum of 71.3% in the tests and by a maximum of 67.5% in the simulations. Based on the failure modes of the specimens and considering the contribution of the prefabricated autoclaved aerated concrete panel reinforcement layer, a formula for calculating the compressive bearing capacity of this reinforcement method was proposed. Furthermore, the strength utilization coefficient of autoclaved aerated concrete for this calculation method was fitted and determined based on the experimental and simulation results.

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  • 收稿日期:2025-01-17
  • 最后修改日期:2025-04-16
  • 录用日期:2025-06-01
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