Javascript must be enabled to continue!
Formwork Pressure of a Heavyweight Self-Compacting Concrete Mix
View through CrossRef
High-fluidity and self-compacting concrete (SCC) mixes were developed using special aggregates for radiation-shielding concrete. The special aggregates comprised heavyweight and hydrous aggregates (crushed magnetite, crushed serpentine, and their mixtures), which were selected to provide an enhanced attenuation of gamma and neutron radiation, respectively. For the mixed concrete design with a bulk density of up to 3570 kg/m3, two cement types were used: Portland cement CEM I and slag cement CEM III/A. The basic properties of the fresh self-compacting concrete were evaluated and the lateral formwork pressure exerted by the freshly mixed self-compacting concrete was measured and analyzed. An original test setup was developed for the determination of the lateral pressure on the square column formwork with pressure measurements carried out using six strain gauge pressure transducers, which was adequate for heavyweight concrete mixture testing. Self-compacting concrete mixtures containing a magnetite aggregate or blends of serpentine and magnetite aggregates with a slump flow of at least 550 mm were developed. The lateral pressure on the formwork was directly proportional to the density of the self-compacting heavyweight concrete mixes. The maximum values of the lateral pressure recorded in the test at a casting speed of 1.5 m/h did not exceed 27 kPa and 55% of hydrostatic pressure. Concrete mixtures with basalt, magnetite, and magnetite/serpentine blended aggregates were found to develop sufficient shear strength for proper stability during casting.
Title: Formwork Pressure of a Heavyweight Self-Compacting Concrete Mix
Description:
High-fluidity and self-compacting concrete (SCC) mixes were developed using special aggregates for radiation-shielding concrete.
The special aggregates comprised heavyweight and hydrous aggregates (crushed magnetite, crushed serpentine, and their mixtures), which were selected to provide an enhanced attenuation of gamma and neutron radiation, respectively.
For the mixed concrete design with a bulk density of up to 3570 kg/m3, two cement types were used: Portland cement CEM I and slag cement CEM III/A.
The basic properties of the fresh self-compacting concrete were evaluated and the lateral formwork pressure exerted by the freshly mixed self-compacting concrete was measured and analyzed.
An original test setup was developed for the determination of the lateral pressure on the square column formwork with pressure measurements carried out using six strain gauge pressure transducers, which was adequate for heavyweight concrete mixture testing.
Self-compacting concrete mixtures containing a magnetite aggregate or blends of serpentine and magnetite aggregates with a slump flow of at least 550 mm were developed.
The lateral pressure on the formwork was directly proportional to the density of the self-compacting heavyweight concrete mixes.
The maximum values of the lateral pressure recorded in the test at a casting speed of 1.
5 m/h did not exceed 27 kPa and 55% of hydrostatic pressure.
Concrete mixtures with basalt, magnetite, and magnetite/serpentine blended aggregates were found to develop sufficient shear strength for proper stability during casting.
Related Results
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
EnvironmentalSurveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) This comprehensive protocol suite enables systematic environmental surveillance for avian influenza...
Environmental Performance for Two Formwork System Types: Conventional Formwork & Steel Formwork System
Environmental Performance for Two Formwork System Types: Conventional Formwork & Steel Formwork System
Environmental aspect is one of the important criteria that define and determine sustainability performance for concrete formwork system. This study is aimed to compare the performa...
Influence of Amount of Light Weight Aggregate on Properties of Self Compacting Concrete
Influence of Amount of Light Weight Aggregate on Properties of Self Compacting Concrete
Concrete with low density is termed lightweight concrete. The unit weight of such concretes is about two-thirds of normal concrete. Most structural lightweight concretes weigh betw...
Perbandingan Elemen Struktur Yang Dicetak Dengan Bekisting Alumunium Dan Konvensional Dengan Metode Six Sigma
Perbandingan Elemen Struktur Yang Dicetak Dengan Bekisting Alumunium Dan Konvensional Dengan Metode Six Sigma
Bekisting konvensional untuk saat ini masih menjadi pilihan terbanyak bagi pelaksana industri konstruksi di Indonesia. Namun dengan perkembangan metode konstruksi, metode bekisting...
Architectural Design from Upcycled Formwork Wood
Architectural Design from Upcycled Formwork Wood
In Finland and many other countries worldwide, standard-quality wood is used as a building material in countless ways, from permanent to temporary uses as auxiliary construction an...
Effect of Sulphate Attack on Self Compacting Concrete
Effect of Sulphate Attack on Self Compacting Concrete
Many current structures are characterized by the complexity of architecture (various shapes and bends) and a high concentration of reinforcement which often makes it difficult to u...
Assessment of Concrete Formwork Practices in Bahir Dar City, Ethiopia
Assessment of Concrete Formwork Practices in Bahir Dar City, Ethiopia
Formwork is among the most determinant factors affecting the cost and completion time of construction projects. In this study, the erection practices, challenges, types, quality an...
Formwork Engineering for Sustainable Concrete Construction
Formwork Engineering for Sustainable Concrete Construction
This study provides a comprehensive review of the engineering challenges of formwork in concrete construction. The paper investigates different formwork systems, their design based...

