无筋混凝土拱形结构3D打印建造与力学性能分析
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作者:
作者单位:

1.a河北工业大学,土木与交通学院 天津 300401;2.b 河北工业大学,建筑3D打印河北省工程研究中心,天津 300401

作者简介:

侯壬乾(2000- ),男,主要从事3D打印混凝土结构研究,E-mail:1316581093@qq.com。
HOU Renqian (2000- ), main research interest: 3D printed concrete structures, E-mail: 1316581093@qq.com.

通讯作者:

王里(通信作者),男,教授,博士生导师,E-mail:wangl1@126.com。

中图分类号:

TU375.5;U448.22

基金项目:

“十四五”国家重点研发计划(2023YFC3806902);国家自然科学基金(52322804);天津市自然科学基金(23JCZDJC00360)


3D printed construction and mechanical properties analysis of unreinforced concrete arch structure
Author:
Affiliation:

1.aSchool of Civil and Transportation Engineering, Tianjin 300401, P. R. China;2.bEngineering Research Center on 3D Construction Printing of Hebei, Hebei University of Technology, Tianjin 300401, P. R. China

Fund Project:

National Key R & D Program Project (No. 2023YFC3806902); National Natural Science Foundation of China (No. 52322804); National Natural Science Foundation of Tianjin (No. 23JCZDJC00360)

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    摘要:

    从设计、建造及承载性能3个方面开展3D打印轻量化混凝土拱形结构的可行性研究。基于拱结构构造和3D打印工艺特点,提出一种拱结构精准、快速拼装方法;在此基础上制作5根3D打印轻量化拱试件,通过试验研究两点集中、三点集中和均布荷载3种工况以及π形、W形、M形3种截面打印路径对拱结构承载性能的影响规律,并通过有限元方法计算分析矢跨比为1/4、1/6和1/8时3D打印混凝土拱结构的力学性能。结果表明:均布荷载下试件各节段的协同变形能力最优,承载能力最高,3D打印混凝土材料的抗压优势得以充分发挥;集中荷载易造成拱试件局部压溃,相较于均布荷载,两点及三点集中荷载下拱试件的峰值荷载分别降低30.2%和14.2%;采用M形横截面打印路径的试件传力效果最优,单位质量峰值荷载较π形、W形试件分别提高23.2%和28.4%;在规范建议采用的矢跨比范围内,随着矢跨比的减小,3D打印混凝土拱结构的承载力逐渐降低;试验的5根试件均具有良好的承载性能。

    Abstract:

    This paper presents a feasibility study on 3D printed lightweight concrete arch structures, examining three key aspects: design, construction, and load-bearing performance. Based on the characteristics of arch structures and 3D printing technology, a segment-assembly method was proposed to realize the accurate and fast assembly of arch structures. On this basis, five 3D printed lightweight arch structure specimens were constructed. The influence of three conditions, namely two-point concentrated load, three-point concentrated load, and uniformly distributed load, as well as the printing paths of “π”, “W”, and “M” cross-sections, was studied through experiments on the bearing performance of arch structures. Additionally, the mechanical behavior of 3D printed concrete arch structures with rise-span ratios of 1/4, 1/6, and 1/8 was analyzed using finite element calculations. The results show that the cooperative deformation ability of each segment and bearing capacity of the specimens under uniformly distributed load are the best, and the compressive advantage of 3D printed concrete materials can be fully utilized. The local collapse of the arch structure is easy to be caused by concentrated load, and the ultimate bearing capacity of arch specimens under two-point and three-point concentrated loads decreases by 30.2% and 14.2% respectively compared to that under uniformly distributed load. The specimen with “M” cross section printing path has the best force transfer mechanism, and the peak load per unit mass increases by 23.2% and 28.4%, respectively, compared with the specimens with “π” and “W” printing paths. Within the recommended range of rise-span ratios specified, the bearing capacity of 3D printed concrete arch structures gradually decreases as the rise-span ratio decreases. All five specimens investigated in this experiment demonstrate good load-bearing performance.

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侯壬乾,林文宇,白刚,王里.无筋混凝土拱形结构3D打印建造与力学性能分析[J].土木与环境工程学报(中英文),2026,48(3):206-216. HOU Renqian, LIN Wenyu, BAI Gang, WANG Li.3D printed construction and mechanical properties analysis of unreinforced concrete arch structure[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(3):206-216.10.11835/j. issn.2096-6717.2024.037

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  • 收稿日期:2024-02-07
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  • 在线发布日期: 2026-06-10
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