Experimental Research on Mechanism Impairment and Reinforcement of Empty Bucket Wall

Author:

Diao Rongdan123ORCID,Cao Yinqiu1,Li Jiangen1,Sun Linzhu1ORCID,Yang Fang1

Affiliation:

1. College of Civil Engineering and Architecture, Wenzhou University, Wenzhou 325035, China

2. International Science and Technology Cooperation Base for Engineering Technology and Intelligent Monitoring of Ultra-Soft Soil, Wenzhou 325035, China

3. Center for Research on Microgrids (CROM), AAU Energy, Aalborg University, 9220 Aalborg, Denmark

Abstract

In this study, the raw material for the empty bucket wall consists of Dalun bricks unique to South Zhejiang. The investigation focuses on the changes in compressive properties of the empty bucket wall with masonry mortar strength grades of M 2.5, M 5.0, M 7.5, and M 10.0 after a designated period of maintenance in both dry and wet environments. Following this, the empty bucket wall undergoes reinforcement, and the compressive properties are studied. The ensuing comparisons yield pertinent conclusions. Unreinforced walls maintained with varying mortar strengths in a wet environment exhibit reduced cracking loads by 5.8 to 30% and damage loads by 5.6 to 10.8% compared to their counterparts in a dry environment. Reinforced walls, maintained with different mortar strengths in wet environments, show reduced cracking loads by 6.2% to 36% and damage loads by 2.5% to 5.7% compared to those in dry environments. The stress–strain curves of unreinforced and reinforced barrel walls of various strength classes are obtained by fitting the test stress–strain data to the stress–strain data derived from corresponding model equations. These stress–strain curves for unreinforced and reinforced walls align well with the model curves, affirming the precision of the tests.

Funder

National Natural Science Foundation of China NSFC

Major Science and Technology Projects in Zhejiang Province

Publisher

MDPI AG

Reference30 articles.

1. Zhu, R. (2017). The research of Seismic Strengthening Design Method of the Traditional Dwelling in the Rowlock Wall according to the Original Architectural Style and Features, Xi’an University of Architecture and Technology.

2. Test study lateral resistance behavior of row lock wall;Li;J. Nat. Disasters,2010

3. Lei, M. (2013). Study on Seismic Behavior of Row Lock Wall and Row Lock Wall Strengthened with HPFL, Hunan University.

4. Experimental research on seismic performance of brick walls strengthened by fiber-reinforced cement-based composite material surface layer;Wang;Build. Struct.,2021

5. Experimental study on the seismic behavior of masonry walls under offshore environment;Niu;Structures,2020

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