Skip to main content
Erschienen in: Rock Mechanics and Rock Engineering 6/2010

01.11.2010 | Original Paper

Dynamic Characterization of Orthogneiss Rock Subjected to Intermediate and High Strain Rates in Tension

verfasst von: Ezio Cadoni

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 6/2010

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

The dynamic characterization of rocks under intermediate and high strain rates is fundamental to understand the material behavior in case of heavy earthquakes and dynamic events. The implementation of material constitutive laws is of capital importance for the numerical simulation of the dynamic processes as those caused by earthquakes. These data are necessary and require experimental techniques able to induce on the rock materials state of loading reproducing the actual dynamic condition. The dynamic characterization has been carried out by means of two special apparatus: the split Hopkinson tension bar and the hydro-pneumatic machine. These equipments are briefly described with a discussion on the results of dynamic tension tests at three different strain rates (0.1, 10, 100 strain/s) on Onsernone Orthogneiss for loading directions 0°, 45° and 90° with respect to the schistosity. Results of the tests show a significant strain rate sensitive behavior, exhibiting dynamic tensile strength increasing with strain rate, up to about two times with respect to the quasi-static conditions in the case of 0° and 45° orientation and more than three times in the case of 90° at high strain rates. Dynamic increase factors versus strain rate curves for tensile strength were also evaluated and discussed.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Albertini C, Montagnani M (1974) Testing techniques based on the split Hopkinson bar. In: Proceedings of the international conference on “the mechanical properties at high strain-rates”, Oxford University, Institute of Physics Conference Series, no. 21, pp 22–32 Albertini C, Montagnani M (1974) Testing techniques based on the split Hopkinson bar. In: Proceedings of the international conference on “the mechanical properties at high strain-rates”, Oxford University, Institute of Physics Conference Series, no. 21, pp 22–32
Zurück zum Zitat Albertini C, Cadoni E, Labibes K (1996) Dynamic mechanical behaviour of large concrete specimen by means of a bundle Hopkinson bars. In: Proceedings of the 2nd international symposium on impact engineering, Chinese Mechanics Journal, Beijing, pp 214–219 Albertini C, Cadoni E, Labibes K (1996) Dynamic mechanical behaviour of large concrete specimen by means of a bundle Hopkinson bars. In: Proceedings of the 2nd international symposium on impact engineering, Chinese Mechanics Journal, Beijing, pp 214–219
Zurück zum Zitat Albertini C, Cadoni E, Labibes K (1997) Impact fracture process and mechanical properties of plain concrete by means of an Hopkinson bar bundle. J Phys III(7):915–920 Albertini C, Cadoni E, Labibes K (1997) Impact fracture process and mechanical properties of plain concrete by means of an Hopkinson bar bundle. J Phys III(7):915–920
Zurück zum Zitat Albertini C, Cadoni E, Labibes K (1999) Study of the mechanical properties of plain concrete under dynamic loading. Exp Mech 39:137–141CrossRef Albertini C, Cadoni E, Labibes K (1999) Study of the mechanical properties of plain concrete under dynamic loading. Exp Mech 39:137–141CrossRef
Zurück zum Zitat Asprone D, Cadoni E, Prota A, Manfredi G (2009) Dynamic behavior of a Mediterranean natural stone under tensile loading. Int J Rock Mech Min Sci 46:514–520CrossRef Asprone D, Cadoni E, Prota A, Manfredi G (2009) Dynamic behavior of a Mediterranean natural stone under tensile loading. Int J Rock Mech Min Sci 46:514–520CrossRef
Zurück zum Zitat Barla G, Innaurato N (1973) Indirect tensile testing of anisotropic rocks. Rock Mech 5:215–230CrossRef Barla G, Innaurato N (1973) Indirect tensile testing of anisotropic rocks. Rock Mech 5:215–230CrossRef
Zurück zum Zitat Cadoni E, Labibes K, Solomos G, Albertini C (1997) Mechanical response in tension of plain concrete in a large range of strain-rates, Technical Note No. I.97.194, European Commission, Joint Research Centre Cadoni E, Labibes K, Solomos G, Albertini C (1997) Mechanical response in tension of plain concrete in a large range of strain-rates, Technical Note No. I.97.194, European Commission, Joint Research Centre
Zurück zum Zitat Cadoni E, Labibes K, Berra M, Giangrasso M, Albertini C (2000) High strain-rate tensile concrete behaviour. Mag Concr Res 52:365–370CrossRef Cadoni E, Labibes K, Berra M, Giangrasso M, Albertini C (2000) High strain-rate tensile concrete behaviour. Mag Concr Res 52:365–370CrossRef
Zurück zum Zitat Cadoni E, Labibes K, Berra M, Giangrasso M, Albertini C (2001a) Influence of the aggregate size on the strain-rate tensile behaviour of concrete. ACI Mater J 98:220–223 Cadoni E, Labibes K, Berra M, Giangrasso M, Albertini C (2001a) Influence of the aggregate size on the strain-rate tensile behaviour of concrete. ACI Mater J 98:220–223
Zurück zum Zitat Cadoni E, Albertini C, Labibes K, Solomos G (2001b) Behaviour of plain concrete subjected to tensile loading at high strain-rate. In: Proceedings of the 4th international conference on fracture mechanics of concrete and concrete structures, vol 1, June 2001, ENS-Cachan, pp 341–348 Cadoni E, Albertini C, Labibes K, Solomos G (2001b) Behaviour of plain concrete subjected to tensile loading at high strain-rate. In: Proceedings of the 4th international conference on fracture mechanics of concrete and concrete structures, vol 1, June 2001, ENS-Cachan, pp 341–348
Zurück zum Zitat Cadoni E, Labibes K, Albertini C, Berra M, Giangrasso M (2001c) Strain-rate effect on the tensile behaviour of concrete at different relative humidity levels. Mater Struct 34:21–26CrossRef Cadoni E, Labibes K, Albertini C, Berra M, Giangrasso M (2001c) Strain-rate effect on the tensile behaviour of concrete at different relative humidity levels. Mater Struct 34:21–26CrossRef
Zurück zum Zitat Cadoni E, Solomos G, Albertini C (2009) Mechanical characterization of concrete in tension and compression at high strain-rate using a modified Hopkinson bar. Mag Concr Res 61:221–230CrossRef Cadoni E, Solomos G, Albertini C (2009) Mechanical characterization of concrete in tension and compression at high strain-rate using a modified Hopkinson bar. Mag Concr Res 61:221–230CrossRef
Zurück zum Zitat Comité Euro-International du Béton (1993) CEB-FIP Model Code 1990. Redwood Books, Trowbridge, Wiltshire, UK Comité Euro-International du Béton (1993) CEB-FIP Model Code 1990. Redwood Books, Trowbridge, Wiltshire, UK
Zurück zum Zitat Davies RM (1948) A critical study of the Hopkinson pressure bar. Phil Trans R Soc Lond Ser A 240:375–457CrossRef Davies RM (1948) A critical study of the Hopkinson pressure bar. Phil Trans R Soc Lond Ser A 240:375–457CrossRef
Zurück zum Zitat Dutta PK, Kim K (1983) High-strain-rate tensile behavior of sedimentary and igneous rocks at low temperatures. US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory CRREL Report 93-16, p 17 Dutta PK, Kim K (1983) High-strain-rate tensile behavior of sedimentary and igneous rocks at low temperatures. US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory CRREL Report 93-16, p 17
Zurück zum Zitat Hillerborg A, Modeer M, Peterson PE (1976) Analysis of crack formation and crack growth in concrete by means of fracture mechanics and finite elements. Cem Concr Res 6:773–778CrossRef Hillerborg A, Modeer M, Peterson PE (1976) Analysis of crack formation and crack growth in concrete by means of fracture mechanics and finite elements. Cem Concr Res 6:773–778CrossRef
Zurück zum Zitat Klepaczko JR, Brara A (2001) Experimental method for dynamic tensile testing of concrete by spalling. Int J Impact Eng 25:387–409CrossRef Klepaczko JR, Brara A (2001) Experimental method for dynamic tensile testing of concrete by spalling. Int J Impact Eng 25:387–409CrossRef
Zurück zum Zitat Kolsky H (1949) An investigation of the mechanical properties of materials at very high rates of loading. Proc Phys Soc Sect B 62:676–700CrossRef Kolsky H (1949) An investigation of the mechanical properties of materials at very high rates of loading. Proc Phys Soc Sect B 62:676–700CrossRef
Zurück zum Zitat Kubota S, Ogata Y, Wada Y, Simangunsong G, Shimada H, Matsui K (2008) Estimation of dynamic tensile strength of sandstone. Int J Rock Mech Min Sci 45:397–406CrossRef Kubota S, Ogata Y, Wada Y, Simangunsong G, Shimada H, Matsui K (2008) Estimation of dynamic tensile strength of sandstone. Int J Rock Mech Min Sci 45:397–406CrossRef
Zurück zum Zitat Malvar LJ, Crawford JE (1998) Dynamic increase factors for concrete. Twenty-eighth DDESB seminar, Orlando Malvar LJ, Crawford JE (1998) Dynamic increase factors for concrete. Twenty-eighth DDESB seminar, Orlando
Zurück zum Zitat Reinhardt HW, Körmeling HA, Zielinski AJ (1986) The split Hopkinson bar, a versatile tool for the impact testing of concrete. Mater Struct 19:55–63CrossRef Reinhardt HW, Körmeling HA, Zielinski AJ (1986) The split Hopkinson bar, a versatile tool for the impact testing of concrete. Mater Struct 19:55–63CrossRef
Zurück zum Zitat Schuler H, Mayrhofer C, Thoma K (2006) Spall experiments for the measurement of the tensile strength and fracture energy of concrete at high strain rates. Int J Impact Eng 32:1635–1650CrossRef Schuler H, Mayrhofer C, Thoma K (2006) Spall experiments for the measurement of the tensile strength and fracture energy of concrete at high strain rates. Int J Impact Eng 32:1635–1650CrossRef
Zurück zum Zitat Tedesco JW, Ross CA, Kuennen ST (1993) Experimental and numerical analysis of high strain rate splitting tensile tests. ACI Mater J 90:162–169 Tedesco JW, Ross CA, Kuennen ST (1993) Experimental and numerical analysis of high strain rate splitting tensile tests. ACI Mater J 90:162–169
Zurück zum Zitat Wang QZ, Li W, Xie HP (2009) Dynamic split tensile test of Flattened Brazilian Disc of rock with SHPB setup. Mech Mater 41:252–260CrossRef Wang QZ, Li W, Xie HP (2009) Dynamic split tensile test of Flattened Brazilian Disc of rock with SHPB setup. Mech Mater 41:252–260CrossRef
Zurück zum Zitat Zhou XQ, Hao H (2008) Mesoscale modelling of concrete tensile failure mechanism at high strain rates. Comput Struct 86:2013–2026CrossRef Zhou XQ, Hao H (2008) Mesoscale modelling of concrete tensile failure mechanism at high strain rates. Comput Struct 86:2013–2026CrossRef
Zurück zum Zitat Zielinski AJ (1982) Fracture of concrete and mortar under uniaxial impact tensile loading. Doctoral Thesis, Delft University of Technology, The Netherlands Zielinski AJ (1982) Fracture of concrete and mortar under uniaxial impact tensile loading. Doctoral Thesis, Delft University of Technology, The Netherlands
Metadaten
Titel
Dynamic Characterization of Orthogneiss Rock Subjected to Intermediate and High Strain Rates in Tension
verfasst von
Ezio Cadoni
Publikationsdatum
01.11.2010
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 6/2010
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-010-0101-x

Weitere Artikel der Ausgabe 6/2010

Rock Mechanics and Rock Engineering 6/2010 Zur Ausgabe

Editorial

Editorial