Javascript must be enabled to continue!
Brick masonry reinforcement with methyl methacrylate injection
View through CrossRef
Introduction. Structural reinforcement of brick and stone masonry by grouting materials under pressure is an efficient approach to restoring the masonry integrity, and, in some cases, improving its bearing capacity. This paper presents the results of research studies into the strength of a masonry structure reinforced by methyl methacrylate injection. This research is part of a larger project, which was launched in 2004 and continues to date. Due to the high penetrating ability of methyl methacrylate, reinforcement of masonry structures with small crack opening seems highly promising.Aim. Evaluation of the effectiveness of methyl methacrylate injection for masonry reinforcement.Materials and methods. The experimental studies were carried out in two stages. At the first stage, masonry specimens manufactured in the form of columns were subjected to compression tests. At the second stage, methyl methacrylate was injected under pressure into the specimens with formed cracks. The as-reinforced specimens were tested again in order to evaluate their strength increase factor.Results. The distribution of methyl methacrylate throughout masonry when injected under pressure, as well as through individual brick and mortar specimens without pressure, was studied. It is shown that the technology of masonry reinforcement by methyl methacrylate differs significantly from that of concrete consolidaton, where higher pressures contribute to its more even distribution over the concrete body.Conclusions. Injection of methyl methacrylate into masonry with multiple load cracks can increase its loadbearing capacity by at least 1.2 times.The results of research were used in the development of normative documents on reinforcement of masonry structures.
Joint Stock Company Research Center of Construction
Title: Brick masonry reinforcement with methyl methacrylate injection
Description:
Introduction.
Structural reinforcement of brick and stone masonry by grouting materials under pressure is an efficient approach to restoring the masonry integrity, and, in some cases, improving its bearing capacity.
This paper presents the results of research studies into the strength of a masonry structure reinforced by methyl methacrylate injection.
This research is part of a larger project, which was launched in 2004 and continues to date.
Due to the high penetrating ability of methyl methacrylate, reinforcement of masonry structures with small crack opening seems highly promising.
Aim.
Evaluation of the effectiveness of methyl methacrylate injection for masonry reinforcement.
Materials and methods.
The experimental studies were carried out in two stages.
At the first stage, masonry specimens manufactured in the form of columns were subjected to compression tests.
At the second stage, methyl methacrylate was injected under pressure into the specimens with formed cracks.
The as-reinforced specimens were tested again in order to evaluate their strength increase factor.
Results.
The distribution of methyl methacrylate throughout masonry when injected under pressure, as well as through individual brick and mortar specimens without pressure, was studied.
It is shown that the technology of masonry reinforcement by methyl methacrylate differs significantly from that of concrete consolidaton, where higher pressures contribute to its more even distribution over the concrete body.
Conclusions.
Injection of methyl methacrylate into masonry with multiple load cracks can increase its loadbearing capacity by at least 1.
2 times.
The results of research were used in the development of normative documents on reinforcement of masonry structures.
Related Results
Improvement of Seismic Performance of Ordinary Reinforced Partially Grouted Concrete Masonry Shear Walls
Improvement of Seismic Performance of Ordinary Reinforced Partially Grouted Concrete Masonry Shear Walls
Reinforced masonry constitutes about 10% of all low-rise construction in the US. Most of these structures are commercial and school buildings. It may also be used for multi-story h...
Overview of Key Zonal Water Injection Technologies in China
Overview of Key Zonal Water Injection Technologies in China
Abstract
Separated layer water injection is the important technology to realize the oilfield long-term high and stable yield. Through continuous researches and te...
Copolymerization Characteristics of Methyl Acrylate and Methyl Methacrylate. II. Analysis of Methyl Acrylate-Methyl Methacrylate Copolymers by Infrared Spectroscopy
Copolymerization Characteristics of Methyl Acrylate and Methyl Methacrylate. II. Analysis of Methyl Acrylate-Methyl Methacrylate Copolymers by Infrared Spectroscopy
Abstract
The infrared absorption spectra of polymers and copolymers of methyl acrylate and methyl methacrylate have been measured, and then used as the basis of a sp...
Experimental Comparison Between Two-Course Molded Masonry Specimen and Three-Course Extracted Masonry Specimen in Clay Masonry Structures
Experimental Comparison Between Two-Course Molded Masonry Specimen and Three-Course Extracted Masonry Specimen in Clay Masonry Structures
This study investigates the relationship between the compressive strength results of two-course molded masonry specimens and three-course masonry specimens extracted from previousl...
The Masonry Market is Booming in Brazil- Why?
The Masonry Market is Booming in Brazil- Why?
This paper is motivated by the keynote presentation at the 12th North American Masonry Conference in Denver, Colorado in 2015. It gives an overview on how engineered masonry became...
Engineering Design Provisions for Prestressed Masonry, Part 1 – Masonry Stresses
Engineering Design Provisions for Prestressed Masonry, Part 1 – Masonry Stresses
Masonry can be strengthened through controlled precompression stresses which reduce or eliminate tension. In other countries, primarily the United Kingdom, prestressed masonry has ...
Seismic Capacity Assessment of Confined Brick Masonry Building: An Experimental Approach
Seismic Capacity Assessment of Confined Brick Masonry Building: An Experimental Approach
Brick masonry is widely used for building construction throughout the world. However, unreinforced brick masonry buildings performed poorly in the 2005 Kashmir earthquake, in Pakis...
Comparison of human mesenchymal stem cells proliferation and differentiation on poly(methyl methacrylate) bone cements with and without mineralized collagen incorporation
Comparison of human mesenchymal stem cells proliferation and differentiation on poly(methyl methacrylate) bone cements with and without mineralized collagen incorporation
Poly(methyl methacrylate) bone cement is widely used in vertebroplasty, joint replacement surgery, and other orthopaedic surgeries, while it also exposed many problems on mechanica...


