Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Bond Performance of CFRP Strands to Grouting Admixture for Prestressed Structure and Development of Their Bond–Slip Constitutive Models

View through CrossRef
Prestressed concrete structures have witnessed widespread use in building and infrastructure applications during the last two decades due to their high stiffness and strength indices. However, structural failures caused by the corrosion of steel reinforcing bars or strands have proliferated, opening the door for carbon fibre-reinforced polymer (CFRP) strands as an excellent alternative with high corrosion resistance. The bonding interaction between the CFRP strands and concrete is the fundamental parameter in shaping the structural behaviour of CFRP prestressed concrete structures. In this paper, the bonding behaviour between CFRP strands and concrete with grouting admixture is experimentally investigated based on three groups of standard pull-out tests. The bond strength of CFRP strands was systematically studied and compared against steel strands. The untreated CFRP strands exhibited an inefficient bonding strength with the grouting admixture, equivalent to only 5% compared to steel strands of the same diameter. Surface coating with epoxy quartz sand can significantly improve the anchoring efficiency of CFRP strands up to 14 times compared to the untreated strands, which is approximately as efficient as steel strands. Moreover, the bond–slip curves between CFRP strands and concrete were analysed and were found to be different compared to steel strands. Finally, this study proposed bond–slip constitutive models of CFRP strands with better applicability, using an exponentially damped sine function to fit the residual segment of the curve.
Title: Bond Performance of CFRP Strands to Grouting Admixture for Prestressed Structure and Development of Their Bond–Slip Constitutive Models
Description:
Prestressed concrete structures have witnessed widespread use in building and infrastructure applications during the last two decades due to their high stiffness and strength indices.
However, structural failures caused by the corrosion of steel reinforcing bars or strands have proliferated, opening the door for carbon fibre-reinforced polymer (CFRP) strands as an excellent alternative with high corrosion resistance.
The bonding interaction between the CFRP strands and concrete is the fundamental parameter in shaping the structural behaviour of CFRP prestressed concrete structures.
In this paper, the bonding behaviour between CFRP strands and concrete with grouting admixture is experimentally investigated based on three groups of standard pull-out tests.
The bond strength of CFRP strands was systematically studied and compared against steel strands.
The untreated CFRP strands exhibited an inefficient bonding strength with the grouting admixture, equivalent to only 5% compared to steel strands of the same diameter.
Surface coating with epoxy quartz sand can significantly improve the anchoring efficiency of CFRP strands up to 14 times compared to the untreated strands, which is approximately as efficient as steel strands.
Moreover, the bond–slip curves between CFRP strands and concrete were analysed and were found to be different compared to steel strands.
Finally, this study proposed bond–slip constitutive models of CFRP strands with better applicability, using an exponentially damped sine function to fit the residual segment of the curve.

Related Results

PENGUATAN BALOK KAYU SENGON (PARASERIANTHES FALCATARIA) DENGAN MENGGUNAKAN CFRP DALAM MENAHAN BEBAN LENTUR
PENGUATAN BALOK KAYU SENGON (PARASERIANTHES FALCATARIA) DENGAN MENGGUNAKAN CFRP DALAM MENAHAN BEBAN LENTUR
ABSTRACT     Sengon wood (Paraserianthes Falcataria) is one of the wood varieties that is often used in Indonesiain the forest industry. This type of wood was chosen because it gro...
STUDY ON A NEW DESIGN OF GROUTING PUMP FOR MANAGING WATER INRUSH IN KARST TUNNELS
STUDY ON A NEW DESIGN OF GROUTING PUMP FOR MANAGING WATER INRUSH IN KARST TUNNELS
The low flow rate and efficiency of existing grouting pumps such as piston pumps and diaphragm pumps result in difficulty in managing sudden water and slurry discharges. In this st...
ANALISIS GESER PADA BALOK BAMBU SUSUN VERTIKAL MENGGUNAKAN PERKUATAN CARBON FIBER REINFORCED POLYMER (CFRP)
ANALISIS GESER PADA BALOK BAMBU SUSUN VERTIKAL MENGGUNAKAN PERKUATAN CARBON FIBER REINFORCED POLYMER (CFRP)
Abstract Bamboo is a type of building material that has been used by humans for a long time. The strength of bamboo which can be matched with steel makes it popular as a construct...
Study of the Effect of Grouting Material Strength on Semiflexible Pavement Material
Study of the Effect of Grouting Material Strength on Semiflexible Pavement Material
In this study, cement mortars with different strengths are poured into the large void matrix asphalt macadam material as a semiflexible pavement (SFP) material and the experimental...
The mitigation of surface subsidence in coal mines
The mitigation of surface subsidence in coal mines
Overlying-separation layer grouting technology refers to manufacturing grouting by mixing water, fly ash and other materials on ground in proportion, and then injecting into stratu...
Migration mechanism of grouting slurry and permeability reduction in mining fractured rock mass
Migration mechanism of grouting slurry and permeability reduction in mining fractured rock mass
Abstract In order to solve the water and gas discharge hazard caused by gob water and harmful gases (such as CO), the method of grouting overburden fractures is a...
Grouting Fractured Coal Permeability Evolution Based on Industrial CT Scanning
Grouting Fractured Coal Permeability Evolution Based on Industrial CT Scanning
Gas extraction from coal seams in China faces various middle-term and long-term problems, such as the poor sealing quality and low extraction rate. The mean gas extraction concentr...

Back to Top