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高强钢不锈钢丝网增强ECC与混凝土界面粘结性能的数值分析与理论研究

Numerical Analysis and Theoretical Study on the Interfacial Bonding Behavior of High-Strength Steel Stainless Wire Mesh-Reinforced ECC and Concrete.

作者信息

Li Chao, Zou Yao, Li Ziyuan, Zou Xuyan, Li Ke, Zhu Juntao, Xiao Hongbo, Fan Jianwei

机构信息

Department of Civil Engineering, Zhengzhou University, Zhengzhou 450001, China.

Henan Provincial Government Offices Administration, Zhengzhou 450008, China.

出版信息

Materials (Basel). 2024 Dec 3;17(23):5912. doi: 10.3390/ma17235912.

Abstract

In order to investigate the interfacial bonding properties of high-strength steel stainless wire mesh-reinforced ECC (HSSWM-ECC) and concrete, a finite element model was established for two types of interfaces based on experimental research. The results show that the failure modes observed in the 21 groups of simulations can be classified into three categories: debonding failure, ECC extrusion failure and concrete splitting failure. The failure mode was mainly affected by the type of interface. The effective anchorage length is inversely proportional to the strength of the concrete and proportional to the stiffness and thickness of the HSSWM-ECC. The capacity of the roughening interface is positively correlated with the concrete strength and bonding length, but negatively correlated with the interfacial width ratio. Increasing both the number and width of grooves within the effective range enhances the interfacial capacity, whereas higher concrete strengths tend to reduce it. Based on the above results, calculation models for the effective anchorage length and bearing capacity were established separately for the two types of interfaces. The theoretical model for the interfacial bonding property between HSSWM-ECC and concrete has been refined. These advancements establish a theoretical groundwork for the design of concrete structures strengthened with HSSWM-ECC.

摘要

为研究高强钢不锈钢丝网增强ECC(HSSWM - ECC)与混凝土的界面粘结性能,基于试验研究建立了两种界面类型的有限元模型。结果表明,21组模拟中观察到的破坏模式可分为三类:脱粘破坏、ECC挤压破坏和混凝土劈裂破坏。破坏模式主要受界面类型影响。有效锚固长度与混凝土强度成反比,与HSSWM - ECC的刚度和厚度成正比。粗糙化界面的承载力与混凝土强度和粘结长度呈正相关,但与界面宽度比呈负相关。在有效范围内增加凹槽数量和宽度可提高界面承载力,而较高的混凝土强度往往会降低其承载力。基于上述结果,分别建立了两种界面类型的有效锚固长度和承载力计算模型。完善了HSSWM - ECC与混凝土界面粘结性能的理论模型。这些进展为HSSWM - ECC加固混凝土结构的设计奠定了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9b8/11643742/e8487e48ab25/materials-17-05912-g001.jpg

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