Comptes Rendus
A new apparatus for testing the delayed mechanical behaviour of interfaces: The Shearing Interfaces Creep box (SInC box)
Comptes Rendus. Mécanique, Volume 345 (2017) no. 6, pp. 417-424.

A new experimental apparatus is presented for testing the time-dependent behaviour of interfaces, including in particular interfaces of geomaterials, under constant loading. This apparatus allows the application of two orthogonal loads normal and tangential to the mean plane of the interface, as well as the measurement of the axial and tangential relative displacements. The sample is moulded inside two half shear boxes and the system is designed in such a way that the shear force is applied along the mean plane of the interface. Some preliminary testing was carried out on a clay rock/concrete interface, under a controlled temperature environment. Preliminary results are presented, showing the evolution of the delayed displacements.

Reçu le :
Accepté le :
Publié le :
DOI : 10.1016/j.crme.2017.05.002
Mots clés : Interfaces, Creep, Shear test
Eleni Stavropoulou 1, 2 ; Matthieu Briffaut 1 ; Frédéric Dufour 1 ; Guillaume Camps 2 ; Marc Boulon 1

1 Université Grenoble-Alpes, CNRS, Grenoble INP, 3SR, 38000 Grenoble, France
2 Agence nationale pour la gestion des déchets radioactifs (ANDRA), 92290 Châtenay-Malabry, France
@article{CRMECA_2017__345_6_417_0,
     author = {Eleni Stavropoulou and Matthieu Briffaut and Fr\'ed\'eric Dufour and Guillaume Camps and Marc Boulon},
     title = {A new apparatus for testing the delayed mechanical behaviour of interfaces: {The} {Shearing} {Interfaces} {Creep} box {(SInC} box)},
     journal = {Comptes Rendus. M\'ecanique},
     pages = {417--424},
     publisher = {Elsevier},
     volume = {345},
     number = {6},
     year = {2017},
     doi = {10.1016/j.crme.2017.05.002},
     language = {en},
}
TY  - JOUR
AU  - Eleni Stavropoulou
AU  - Matthieu Briffaut
AU  - Frédéric Dufour
AU  - Guillaume Camps
AU  - Marc Boulon
TI  - A new apparatus for testing the delayed mechanical behaviour of interfaces: The Shearing Interfaces Creep box (SInC box)
JO  - Comptes Rendus. Mécanique
PY  - 2017
SP  - 417
EP  - 424
VL  - 345
IS  - 6
PB  - Elsevier
DO  - 10.1016/j.crme.2017.05.002
LA  - en
ID  - CRMECA_2017__345_6_417_0
ER  - 
%0 Journal Article
%A Eleni Stavropoulou
%A Matthieu Briffaut
%A Frédéric Dufour
%A Guillaume Camps
%A Marc Boulon
%T A new apparatus for testing the delayed mechanical behaviour of interfaces: The Shearing Interfaces Creep box (SInC box)
%J Comptes Rendus. Mécanique
%D 2017
%P 417-424
%V 345
%N 6
%I Elsevier
%R 10.1016/j.crme.2017.05.002
%G en
%F CRMECA_2017__345_6_417_0
Eleni Stavropoulou; Matthieu Briffaut; Frédéric Dufour; Guillaume Camps; Marc Boulon. A new apparatus for testing the delayed mechanical behaviour of interfaces: The Shearing Interfaces Creep box (SInC box). Comptes Rendus. Mécanique, Volume 345 (2017) no. 6, pp. 417-424. doi : 10.1016/j.crme.2017.05.002. https://comptes-rendus.academie-sciences.fr/mecanique/articles/10.1016/j.crme.2017.05.002/

[1] N. Barton; S. Bandis; K. Bakhtar Strength, deformation and conductivity coupling of rock joints, Int. J. Rock Mech. Min. Sci. Geomech. Abstr., Volume 22 (1985) no. 3

[2] F.D. Patton, Multiple modes of shear failure in rock, in: Proc. 1st ISRM Congress, International Society for Rock Mechanics, Lisbon, Portugal, 25 September–1 October 1966.

[3] M.E. Plesha Constitutive models for rock discontinuities with dilatancy and surface degradation, Int. J. Numer. Anal. Methods Geomech., Volume 11 (1987) no. 4, pp. 345-362

[4] A. Gens; I. Carol; E.E. Alonso A constitutive model for rock joints formulation and numerical implementation, Comput. Geotech., Volume 9 (1990) no. 1, pp. 3-20

[5] W. Leichnitz Mechanical properties of rock joints, Int. J. Rock Mech. Min. Sci. Geomech. Abstr., Volume 22 (1985) no. 5, pp. 313-321

[6] N.K. Samadhiya; M.N. Viladkar; M.A. Al-Obaydi Three-dimensional joint/interface element for rough undulating major discontinuities in rock masses, Int. J. Geomech., Volume 8 (2008) no. 6, pp. 327-335

[7] A. Pinto da Cunha Scale effects in rock engineering — an overview of the Loen Workshop and other recent papers concerning scale effects, Lisbon, Portugal, 25 June 1993 (1993)

[8] C.S. Desai; E.C. Drumm; M.M. Zaman Cyclic testing and modeling of interfaces, J. Geotech. Eng., Volume 111 (1985) no. 6, pp. 793-815

[9] P.J. Huck; S.K. Saxena Response of soil-concrete interface at high pressure, Stockholm, 15–19 June 1981 (1981)

[10] V. Fioravante et al. A constant normal stiffness direct shear box for soil-solid interface tests, Riv. Ital. Geotec., Volume 33 (1999) no. 3, pp. 7-22

[11] M. Boulon A 3-D direct shear device for testing the mechanical behaviour and the hydraulic conductivity of rock joints, Vienna, Austria, 10–14 April 1995 (1995)

[12] J. Hans; M. Boulon A new device for investigating the hydro-mechanical properties of rock joints, Int. J. Numer. Anal. Methods Geomech., Volume 27 (2003) no. 6, pp. 513-548

[13] H. Kishida; M. Uesugi Tests of the interface between sand and steel in the simple shear apparatus, Geotechnique, Volume 37 (1987) no. 1, pp. 45-52

[14] W.F. Brumund; G.A. Leonards Experimental study of static and dynamic friction between sand and typical construction materials, J. Test. Eval., Volume 1 (1973) no. 2, pp. 162-165

[15] P.G. Gambarova; G.P. Rosati Bond and splitting in reinforced concrete: test results on bar pull-out, Mater. Struct., Volume 29 (1996) no. 5, pp. 267-276

[16] G. Rehm The fundamental law of bond, Stockholm (1957)

[17] M.T. Gomes Barbosa et al. Analysis of the relative rib area of reinforcing bars pull out tests, Mater. Res., Volume 11 (2008) no. 4, pp. 453-457

[18] G. Fabre; F. Pellet Creep and time-dependent damage in argillaceous rocks, Int. J. Rock Mech. Min. Sci., Volume 43 (2006) no. 6, pp. 950-960

[19] J.P. Boehler; S. Demmerle; S. Koss A new direct biaxial testing machine for anisotropic materials, Exp. Mech., Volume 34 (1994) no. 1, pp. 1-9

[20] Z.P. Bažant Impact of Robert L'Hermite on the evolution of creep and shrinkage theory (Z.P. Bažant, ed.), Mathematical Modeling of Creep and Shrinkage of Concrete, Wiley, New York, 1988, pp. 7-40

[21] Z.P. Bažant; I. Carol Creep and Shrinkage of Concrete, E. & F.N. Spon, Ltd., London, 1993

Cité par Sources :

Commentaires - Politique


Ces articles pourraient vous intéresser

Dislocations and plasticity in ice

François Louchet

C. R. Phys (2004)