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NEČASOVÁ, B. LIŠKA, P. ŠLANHOF, J.
Original Title
Wooden Facade with Bonded Joints - Experimental test
Type
journal article - other
Language
English
Original Abstract
A research case focused on vented wooden façade system with bonded joints is presented in this paper. The potential of usage of adhesive system within wooden facades was studied and described in more detail and verified through experimental measurements. For the purpose of tests spruce timber profiles were chosen for the load bearing substructure and Siberian larch façade sheeting for the cladding. Three types of industrial adhesives intended for structural bonding were selected. The article is focused on the preparation as well as on the subsequent experimental verification of substructure bonding retention to the cladding. The adhesive system was tested both in tension as well as in shear at a temperature of (20.0 ± 3) °C and a relative humidity of (55.0 ± 10) %. The test results proved the fact that bonded joints are more than suitable equivalent to the mechanical joints. During the tests appeared some differences in stability and failure behaviour between the adhesive systems as well as within the sheeting material. Additionally, the suitability of selected group of adhesives in combination with Siberian larch cladding material as well as with the timber substructure was confirmed.
Keywords
wooden facade, timber profiles, wooden cladding, adhesive bonded joints
Authors
NEČASOVÁ, B.; LIŠKA, P.; ŠLANHOF, J.
RIV year
2015
Released
3. 8. 2015
Publisher
Trans Tech Publications
Location
Zurich - Durnten
ISBN
1022-6680
Periodical
Advanced Materials Research
Year of study
1122
Number
1
State
Swiss Confederation
Pages from
23
Pages to
27
Pages count
5
BibTex
@article{BUT115800, author="Barbora {Nečasová} and Pavel {Liška} and Jiří {Šlanhof}", title="Wooden Facade with Bonded Joints - Experimental test", journal="Advanced Materials Research", year="2015", volume="1122", number="1", pages="23--27", doi="10.4028/www.scientific.net/AMR.1122.23", issn="1022-6680" }