Performance of Grouted Splice Sleeve Connector under Tensile Load
The grouted splice sleeve connector system takes advantage of the bond-slip resistance of the grout and the mechanical gripping of reinforcement bars to provide resistance to tensile force. In this system, grout acts as a load-transferring medium and bonding material between the bars and sleeve. Thi...
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doaj-805d48dcb52b4a0bbf3617bb265b7b992020-11-24T22:33:30ZengUniversiti Malaysia PahangJournal of Mechanical Engineering and Sciences2289-46592231-83802016-05-0171094110210.15282/jmes.7.2014.8.0106Performance of Grouted Splice Sleeve Connector under Tensile LoadA. Alias 0F. Sapawi 1A. Kusbiantoro2M.A. Zubir3A.B. Abd Rahman4Faculty of Civil Engineering & Earth Resources, Universiti Malaysia Pahang, 26300 Gambang, Kuantan, Pahang, MalaysiaFaculty of Civil Engineering & Earth Resources, Universiti Malaysia Pahang, 26300 Gambang, Kuantan, Pahang, MalaysiaFaculty of Civil Engineering & Earth Resources, Universiti Malaysia Pahang, 26300 Gambang, Kuantan, Pahang, MalaysiaFaculty of Civil Engineering & Earth Resources, Universiti Malaysia Pahang, 26300 Gambang, Kuantan, Pahang, MalaysiaFaculty of Civil Engineering, Universiti Teknologi Malaysia, UTM Skudai 81310 Skudai, Johor, MalaysiaThe grouted splice sleeve connector system takes advantage of the bond-slip resistance of the grout and the mechanical gripping of reinforcement bars to provide resistance to tensile force. In this system, grout acts as a load-transferring medium and bonding material between the bars and sleeve. This study adopted the end-to-end rebars connection method to investigate the effect of development length and sleeve diameter on the bonding performance of the sleeve connector. The end-to-end method refers to the condition where reinforcement bars are inserted into the sleeve from both ends and meet at the centre before grout is filled. Eight specimens of grouted splice sleeve connector were tested under tensile load to determine their performance. The sleeve connector was designed using 5 mm thick circular hollow section (CHS) steel pipe and consisted of one external and two internal sleeves. The tensile test results show that connectors with a smaller external and internal sleeve diameter appear to provide better bonding performance. Three types of failure were observed in this research, which are bar fracture (outside the sleeve), bar pullout, and internal sleeve pullout. With reference to these failure types, the development length of 200 mm is the optimum value due to its bar fracture type, which indicates that the tensile capacity of the connector is higher than the reinforcement bar. It is found that the performance of the grouted splice sleeve connector is influenced by the development length of the reinforcement bar and the diameter of the sleeve. http://jmes.ump.edu.my/images/Volume_7/8%20Alias%20et%20al.pdfGroutedsleeve connectortensile load |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
A. Alias F. Sapawi A. Kusbiantoro M.A. Zubir A.B. Abd Rahman |
spellingShingle |
A. Alias F. Sapawi A. Kusbiantoro M.A. Zubir A.B. Abd Rahman Performance of Grouted Splice Sleeve Connector under Tensile Load Journal of Mechanical Engineering and Sciences Grouted sleeve connector tensile load |
author_facet |
A. Alias F. Sapawi A. Kusbiantoro M.A. Zubir A.B. Abd Rahman |
author_sort |
A. Alias |
title |
Performance of Grouted Splice Sleeve Connector under Tensile Load |
title_short |
Performance of Grouted Splice Sleeve Connector under Tensile Load |
title_full |
Performance of Grouted Splice Sleeve Connector under Tensile Load |
title_fullStr |
Performance of Grouted Splice Sleeve Connector under Tensile Load |
title_full_unstemmed |
Performance of Grouted Splice Sleeve Connector under Tensile Load |
title_sort |
performance of grouted splice sleeve connector under tensile load |
publisher |
Universiti Malaysia Pahang |
series |
Journal of Mechanical Engineering and Sciences |
issn |
2289-4659 2231-8380 |
publishDate |
2016-05-01 |
description |
The grouted splice sleeve connector system takes advantage of the bond-slip resistance of the grout and the mechanical gripping of reinforcement bars to provide resistance to tensile force. In this system, grout acts as a load-transferring medium and bonding material between the bars and sleeve. This study adopted the end-to-end rebars connection method to investigate the effect of development length and sleeve diameter on the bonding performance of the sleeve connector. The end-to-end method refers to the condition where reinforcement bars are inserted into the sleeve from both ends and meet at the centre before grout is filled. Eight specimens of grouted splice sleeve connector were tested under tensile load to determine their performance. The sleeve connector was designed using 5 mm thick circular hollow section (CHS) steel pipe and consisted of one external and two internal sleeves. The tensile test results show that connectors with a smaller external and internal sleeve diameter appear to provide better bonding performance. Three types of failure were observed in this research, which are bar fracture (outside the sleeve), bar pullout, and internal sleeve pullout. With reference to these failure types, the development length of 200 mm is the optimum value due to its bar fracture type, which indicates that the tensile capacity of the connector is higher than the reinforcement bar. It is found that the performance of the grouted splice sleeve connector is influenced by the development length of the reinforcement bar and the diameter of the sleeve.
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topic |
Grouted sleeve connector tensile load |
url |
http://jmes.ump.edu.my/images/Volume_7/8%20Alias%20et%20al.pdf |
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