On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical Anchorage
This work reports the outcomes of an extensive experimental campaign on the retrofitting of masonry walls by means of carbon fiber reinforced polymer (CFRP) sheets, carried out at University of Applied Sciences (UAS) Fribourg. In the first stage, static-cyclic shear tests were conducted on the maso...
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doaj-d19360c06d96457db8b6c20c0fbc38352020-11-24T23:04:20ZengMDPI AGPolymers2073-43602014-07-01671972199810.3390/polym6071972polym6071972On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical AnchoragePatrick Bischof0René Suter1Eleni Chatzi2Pierino Lestuzzi3Institute of Construction and Environment, University of Applied Sciences (UAS), Fribourg 1705, SwitzerlandInstitute of Construction and Environment, University of Applied Sciences (UAS), Fribourg 1705, SwitzerlandInstitute of Structural Engineering, Swiss Federal Institute of Technology Zurich (ETHZ), Zurich 8093, SwitzerlandApplied Computing and Mechanics Laboratory IMAC, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, SwitzerlandThis work reports the outcomes of an extensive experimental campaign on the retrofitting of masonry walls by means of carbon fiber reinforced polymer (CFRP) sheets, carried out at University of Applied Sciences (UAS) Fribourg. In the first stage, static-cyclic shear tests were conducted on the masonry walls, followed by a second stage of tensile tests on alternative configurations of mechanical anchorage so as to assess the effects on the structural response and to identify the associated limits. In the static-cyclic shear tests, it was found that the resistance of masonry walls retrofitted with CFRP sheets was improved by up to 70%, and the deformability was improved by up to 10% in comparison to the un-retrofitted specimens. The experimental tests conducted on alternate configurations of mechanical anchorages indicate that the tested materials and configurations rely heavily on details. The sensitivity of CFRP sheets to edges, non-uniformities on any adherend, and bonding defects can cause premature CFRP failure and, hence, pose problems for the efficient design of a retrofitting scheme. As indicated by the results of this investigation, effective anchorage can be achieved when eccentric loading of the mechanical anchorage is avoided and a smooth bonding surface is guaranteed.http://www.mdpi.com/2073-4360/6/7/1972retrofittingmasonrywallscarbon fiber reinforced polymer (CFRP) sheetsbondingmechanical anchoragecomposite materials |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Patrick Bischof René Suter Eleni Chatzi Pierino Lestuzzi |
spellingShingle |
Patrick Bischof René Suter Eleni Chatzi Pierino Lestuzzi On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical Anchorage Polymers retrofitting masonry walls carbon fiber reinforced polymer (CFRP) sheets bonding mechanical anchorage composite materials |
author_facet |
Patrick Bischof René Suter Eleni Chatzi Pierino Lestuzzi |
author_sort |
Patrick Bischof |
title |
On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical Anchorage |
title_short |
On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical Anchorage |
title_full |
On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical Anchorage |
title_fullStr |
On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical Anchorage |
title_full_unstemmed |
On the Use of CFRP Sheets for the Seismic Retrofitting of Masonry Walls and the Influence of Mechanical Anchorage |
title_sort |
on the use of cfrp sheets for the seismic retrofitting of masonry walls and the influence of mechanical anchorage |
publisher |
MDPI AG |
series |
Polymers |
issn |
2073-4360 |
publishDate |
2014-07-01 |
description |
This work reports the outcomes of an extensive experimental campaign on the retrofitting of masonry walls by means of carbon fiber reinforced polymer (CFRP) sheets, carried out at University of Applied Sciences (UAS) Fribourg. In the first stage, static-cyclic shear tests were conducted on the masonry walls, followed by a second stage of tensile tests on alternative configurations of mechanical anchorage so as to assess the effects on the structural response and to identify the associated limits. In the static-cyclic shear tests, it was found that the resistance of masonry walls retrofitted with CFRP sheets was improved by up to 70%, and the deformability was improved by up to 10% in comparison to the un-retrofitted specimens. The experimental tests conducted on alternate configurations of mechanical anchorages indicate that the tested materials and configurations rely heavily on details. The sensitivity of CFRP sheets to edges, non-uniformities on any adherend, and bonding defects can cause premature CFRP failure and, hence, pose problems for the efficient design of a retrofitting scheme. As indicated by the results of this investigation, effective anchorage can be achieved when eccentric loading of the mechanical anchorage is avoided and a smooth bonding surface is guaranteed. |
topic |
retrofitting masonry walls carbon fiber reinforced polymer (CFRP) sheets bonding mechanical anchorage composite materials |
url |
http://www.mdpi.com/2073-4360/6/7/1972 |
work_keys_str_mv |
AT patrickbischof ontheuseofcfrpsheetsfortheseismicretrofittingofmasonrywallsandtheinfluenceofmechanicalanchorage AT renesuter ontheuseofcfrpsheetsfortheseismicretrofittingofmasonrywallsandtheinfluenceofmechanicalanchorage AT elenichatzi ontheuseofcfrpsheetsfortheseismicretrofittingofmasonrywallsandtheinfluenceofmechanicalanchorage AT pierinolestuzzi ontheuseofcfrpsheetsfortheseismicretrofittingofmasonrywallsandtheinfluenceofmechanicalanchorage |
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