Saltar para:
Logótipo
Comuta visibilidade da coluna esquerda
Você está em: Início > Publicações > Visualização > Influence of mechanical damage induced in laboratory on the soil-geosynthetic interaction in inclined-plane shear

Influence of mechanical damage induced in laboratory on the soil-geosynthetic interaction in inclined-plane shear

Título
Influence of mechanical damage induced in laboratory on the soil-geosynthetic interaction in inclined-plane shear
Tipo
Artigo em Revista Científica Internacional
Ano
2018-10-10
Autores
Maria de Lurdes Lopes
(Autor)
FEUP
Ver página pessoal Sem permissões para visualizar e-mail institucional Pesquisar Publicações do Participante Ver página do Authenticus Sem ORCID
Margarida Pinho Lopes
(Autor)
Outra
A pessoa não pertence à instituição. A pessoa não pertence à instituição. A pessoa não pertence à instituição. Sem AUTHENTICUS Sem ORCID
Revista
Vol. 185
Páginas: 468-480
ISSN: 0950-0618
Editora: Elsevier
Indexação
Publicação em ISI Web of Knowledge ISI Web of Knowledge - 0 Citações
INSPEC
Classificação Científica
FOS: Ciências da engenharia e tecnologias
CORDIS: Ciências Tecnológicas
Outras Informações
ID Authenticus: P-00P-169
Resumo (PT):
Abstract (EN): This paper contributes to better understanding how mechanical damage associated with installation affects soil-geosynthetic interaction, particularly for inclined plane shear movement. The mechanical damage was induced in laboratory, adapting a standardised procedure to allow for large samples. Six geosynthetics were studied: two geotextiles, one geocomposite and three geogrids. The soil-geosynthetic interface was characterised using inclined plane shear tests. The laboratory mechanical damage affected the soil-geosynthetic interface strength and the sliding mechanisms observed. The results showed that the mechanical damage caused an increase in the skin friction available, due to the damage mechanisms observed. The structure of the geosynthetic affected the inclined plane shear response after mechanical damage. The friction mobilised in the solid area of the geogrids increased after mechanical damage, which depended on the geogrid and on the consequences of mechanical damage. The reduction factors for mechanical damage associated to installation showed that the interface strength did not change significantly. The reduction factor obtained from tensile tests was, in most cases, conservative to represent the changes observed on the soil-geosynthetic interface strength. The structure of the geosynthetics had a higher impact on their tensile response after mechanical damage than on the soil-geosynthetic interface in inclined plane shear. For the interface strength in inclined shear plane movement, the mechanical damage induced in laboratory of the woven geotextile was conservative compared to field installation damage, while for the woven geogrid the mechanical damage induced in laboratory was within the range of damage induced in the field. Despite some heterogeneity of responses, the standardised laboratory tests to induce mechanical damage in laboratory seem to be able to represent the effect of the mechanical damage associated with installation on the inclined plane shear response of soil-geosynthetic interfaces.
Idioma: Inglês
Tipo (Avaliação Docente): Científica
Nº de páginas: 13
Documentos
Não foi encontrado nenhum documento associado à publicação.
Publicações Relacionadas

Dos mesmos autores

Synergisms between laboratory mechanical and abrasion damage on mechanical and hydraulic properties of geosynthetics (2015)
Artigo em Revista Científica Internacional
Margarida Pinho Lopes; Maria de Lurdes Lopes
Influence of mechanical damage induced in laboratory on the soil-geosynthetic interaction in inclined-plane shear (2018)
Artigo em Revista Científica Internacional
Margarida Pinho Lopes; Maria de Lurdes Lopes
Effect of Soil Grain Size Distribution on the Mechanical Damage of Nonwoven Geotextiles Under Repeated Loading (2015)
Artigo em Revista Científica Internacional
David Miranda Carlos; José Ricardo Carneiro; Margarida Pinho Lopes; Maria de Lurdes Lopes
Design of a structure of fine soil reinforced with geosynthetics – parametric study (2014)
Artigo em Livro de Atas de Conferência Nacional
David Carlos; Margarida Pinho Lopes; Maria Lopes

Ver todas (6)

Da mesma revista

The influence of the thickness of the walls and their properties on the treatment of rising damp in historic buildings (2010)
Outra Publicação em Revista Científica Internacional
Torres, I; Vasco Peixoto De Freitas
Study of strengthening solutions for glued-laminated wood beams of maritime pine wood (2009)
Outra Publicação em Revista Científica Internacional
Alfredo S Ribeiro; Abilio M P de Jesus; Antonio M Lima; Jose L C Lousada
Physical characterization and compression tests of one leaf stone masonry walls (2012)
Outra Publicação em Revista Científica Internacional
Almeida, C; Paulo Guedes, JP; Arede, A; Costa, CQ; Costa, A
Out-of-plane behavior of masonry infilled RC frames based on the experimental tests available: A systematic review (2018)
Outra Publicação em Revista Científica Internacional
Furtado, A; Rodrigues, H; António Arêde; Humberto Varum
Mortar with wood waste ash: Mechanical strength carbonation resistance and ASR expansion (2013)
Outra Publicação em Revista Científica Internacional
Telma Ramos; Ana Mafalda Matos; Joana Sousa Coutinho

Ver todas (111)

Recomendar Página Voltar ao Topo