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Articles

Prediction of the volume of concrete backfill materials excavated using a pick

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Pages 935-955 | Received 03 May 2013, Accepted 19 Aug 2013, Published online: 18 Sep 2013

References

  • ABYL. (2003). La pioche à air, « supersonique » MBW [Supersonic compressed air pick], ABYL commercial document, 10 p (in French).
  • American Concrete Institute 229R–99. (1999). Controlled low-strength materials (15 p). Farmington Hills, MI: Author.
  • Ben Aim, R. (1970). Etude de la texture des empilements de grains, Application à la détermination de la perméabilité des mélanges binaires en régime moléculaire, intermédiaire, laminaire, Thèse d’Etat de l’Université de Nancy [Study of the texture of grains packing, application to the determination of the permeability of binary mixtures in molecular, intermediate and laminar flows], Thèse d’Etat de l’Université de Nancy (in French).
  • Bonnet, G., & Gavalda A. et Quibel, A. (1998). Remblayage des tranchées, Utilisation de matériaux autocompactants [State of the art on trench backfilling with self compacting materials], Etat des connaissances, Dossier Certu, No 78, 36 p, (in French).
  • Crouch, L. K., Dotson, V. J., Badoe, D. A., Maxwell, R. A., Dunn, T. R., & Sparkman, A. (2004). Long term study of 23 excavatable Tennessee fill mixtures. Journal of ASTM International, 1, 88–99.
  • Desai, C. S., & Siriwardane, H. J. (1984). Constitutive laws for engineering materials with emphasis on geologic materials. Englewood Cliffs, NJ: Prentice-Hall International.
  • Du, L., Folliard, K. J., & Trejo, D. (2002). Effects of constituent materials and quantities on water demand and compressive strength of controlled low-strength material. Journal of Materials in Civil Engineering, 14, 485–495.
  • Halmen, C. (2005). Physiochemical characteristics of controlled low strength materials influencing the electrochemical performance and service life of metallic materials (Dissertation). Texas A&M University, College Station, TX.
  • Lhermitte, M. (1999). Caractérisation des matériaux autocompactants pour leur contrôle en remblai de tranchées [Characterisation of self compacting materials for trench backfilling], Rapport de stage ingénieur (99 p). CUST, Département Génie Civil de l’Université Blaise Pascal à Clermont-Ferrand 2 (in French).
  • Manfoubie, N. (1998). Contrôle de tranchées en béton autocompactant excavable à l’aide du PANDA [Use of PANDA test to control trenches backfilled with excavatable self compacting materials]. (114 p). CUST, Département Génie Civil de l’Université Blaise Pascal à Clermont-Ferrand 2 (in French).
  • Mishnaevsky, L. L. (1995). Physical mechanisms of hard rock fragmentation under mechanical loading: A review. International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstracts, 32, 763–766.
  • Morin, C. (2009, December). Etude de l’excavabilité des matériaux traités aux liants hydrauliques pour tranchées [A study of the excavatability of trench backfill cementitious materials] (Doctoral thesis). UPMC, Paris (in French).
  • Morin, C., Sedran, T., de Larrard, F., Dumontet, H., Murgier, S., & Hardy, M., Dano, C. (2009, November 11–13). Assessment of pick-excavability of controlled low-strength materials for trenches. 3rd Treatment and Retreatment of Materials for Transport Infrastructure, Antigua Guatemala.
  • Pons, F., Landwermeyer, J. S., & Kerns, L. (1998). Development of engineering properties for regular and quick-set flowable fill. In A. K. Howard & J. L. Hitch (Eds.), The design and application of controlled low-strength materials (Flowable fill) (pp. 67–86). ASTM STP 1331, American Society for Testing and Materials.
  • Rossi, G. (2000). Indagine su una prova di demobiblita’di miscele betonabilit per riempimenti fluidi [Evaluation of the excavatability of cementious backfill materials]. Department of Idraulica, Transporti e Strade, University of Rome « La Sapienza », Italy, presentation au X Convegno S.I.IV., Catania (in Italian).
  • Salençon, J. (1983). Calcul à la rupture et analyse limite, Cours de calcul des structures anélastiques [Ultimate strength design and limit analysis. Courses on anelastic structures], Presses de l’Ecole Nationale des Ponts et Chaussées (in French).
  • Tanguy, B. (2001). Modélisation de l’essai Charpy par l’approche locale de la rupture. Application au cas de l’acier 16MND5 dans le domaine de transition [Modeling Charpy test by the local approach to fracture. Application to the 16MND5 steel in transition phase] (Doctoral thesis). Ecole Nationale Supérieure des Mines de Paris (in French).
  • Tomassone, R., & Audrain, S. (1992). Lesquoy de Turckheim, E. and Millier, C., La régression, nouveaux regards sur une ancienne méthode statistique [The regression, new perspectives on an old statistical method] (188 p). Actualités scientifiques et agronomiques de l’INRA, No. 13 (in French).

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