高早强高弹性混凝土(HES-HDC)与现有混凝土之间的粘结性能

IF 4.4 3区 工程技术 Q1 ENGINEERING, CIVIL
Jiasheng Yang, Mingke Deng, Yangxi Zhang, Hongkan Fan, Hao Lyu
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引用次数: 0

摘要

为了研究高早强高弹性混凝土(HES-HDC)与现有混凝土的界面粘结性能,采用108个粘结试件研究了混凝土基面粗糙度、HES-HDC中硅灰、羟丙基甲基纤维素(HPMC)和聚乙烯(PE)纤维的含量以及养护龄期和试验方法对HES-HDC与混凝土界面破坏模式、荷载-滑移曲线和界面粘结强度的影响。结果表明,所有粘结试样 2 h 时的界面粘结强度均超过 1.2 MPa,1 天时的界面粘结强度达到 28 天时的 60%,表现出显著的高早期强度特性,满足快速修复的要求。混凝土基底粗糙度对界面破坏模式和剪切荷载-滑移曲线特征有显著影响。界面剪切强度随混凝土基底粗糙度、HPMC 含量、纤维含量和养护龄期的增加而增加。硅灰含量为 6% 的 HES-HDC 与现有混凝土相比具有更高的界面剪切强度。根据实验结果,考虑到界面特性和材料强度,提出了 HES-HDC 与混凝土界面粘结强度的计算公式,该公式可用于使用不同的界面测试方法预测粘结强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bonding performance between high-early-strength high-ductility concrete (HES-HDC) and existing concrete

Bonding performance between high-early-strength high-ductility concrete (HES-HDC) and existing concrete

To investigate the interfacial bonding performance between high-early-strength high-ductility concrete (HES-HDC) and existing concrete, 108 bonding specimens were used to study the effects of concrete substrate roughness, the content of silica fume, hydroxypropyl methylcellulose (HPMC), and polyethylene (PE) fiber in HES-HDC, as well as curing age and testing methods on the interface failure mode, load-slip curve, and interfacial bonding strength between HES-HDC and concrete. The results show that the interfacial bonding strength at 2 h of all bonding specimens exceeded 1.2 MPa, with the interfacial bonding strength at 1 day reaching 60% of that at 28 days, demonstrating significant high-early-strength properties, meeting the requirements for rapid repairs. The concrete substrate roughness significantly influenced the interface failure mode and the characteristics of the shear load-slip curve. The interfacial shear strength increases with increasing concrete substrate roughness, HPMC content, fiber content, and curing age. HES-HDC with 6% silica fume exhibits higher interfacial shear strength with existing concrete. Based on the experimental results, a formula for the interfacial bonding strength between HES-HDC and concrete was proposed, considering interface properties and material strength, which could be applicable for predicting bonding strength using different interface testing methods.

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来源期刊
Archives of Civil and Mechanical Engineering
Archives of Civil and Mechanical Engineering 工程技术-材料科学:综合
CiteScore
6.80
自引率
9.10%
发文量
201
审稿时长
4 months
期刊介绍: Archives of Civil and Mechanical Engineering (ACME) publishes both theoretical and experimental original research articles which explore or exploit new ideas and techniques in three main areas: structural engineering, mechanics of materials and materials science. The aim of the journal is to advance science related to structural engineering focusing on structures, machines and mechanical systems. The journal also promotes advancement in the area of mechanics of materials, by publishing most recent findings in elasticity, plasticity, rheology, fatigue and fracture mechanics. The third area the journal is concentrating on is materials science, with emphasis on metals, composites, etc., their structures and properties as well as methods of evaluation. In addition to research papers, the Editorial Board welcomes state-of-the-art reviews on specialized topics. All such articles have to be sent to the Editor-in-Chief before submission for pre-submission review process. Only articles approved by the Editor-in-Chief in pre-submission process can be submitted to the journal for further processing. Approval in pre-submission stage doesn''t guarantee acceptance for publication as all papers are subject to a regular referee procedure.
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