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Volumn , Issue , 2005, Pages 37-43

Formulation and computation of fracture sensitivity for elastomers

Author keywords

[No Author keywords available]

Indexed keywords

ANALYTICAL FORMULATION; CONSTITUTIVE PROPERTIES; CRACK SENSITIVITY; DESIGN PHASE; ELASTOMERIC COMPONENTS; FILLED RUBBERS; FINITE ELASTICITY; FINITE STRAIN; FRACTURE CHARACTERISTICS; FRACTURE FEATURE; FRACTURE SENSITIVITY; HIGH QUALITY; MATERIAL FORCES; MECHANICAL PARAMETERS; MECHANICAL PROBLEMS; NUMERICAL TOOLS; PHYSICAL FORCE; RUBBER COMPONENT; RUBBER MATERIAL; STRESS SOFTENING; TECHNICAL SYSTEMS; THEORETICAL FORMULATION; VECTOR QUANTITY;

EID: 84857459667     PISSN: None     EISSN: None     Source Type: Conference Proceeding    
DOI: None     Document Type: Conference Paper
Times cited : (7)

References (16)
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    • Saccomandi, G. & Ogden, R.W.,. Wien, New York: Springer-Verlag
    • Govindjee, S. 2004. Numerical Issues in Finite Elasticity and Viscoelasticity. In Saccomandi, G. & Ogden, R.W., Mechanics and Thermomechanics of Rubberlike Solids: 187-232. Wien, New York: Springer-Verlag.
    • (2004) Mechanics and Thermomechanics of Rubberlike Solids , pp. 187-232
    • Govindjee, S.1
  • 5
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    • Kaliske, M. & Näser, B. & André, M. 2004. Computation of Fracture Mechanical Properties of Tires. Proceedings of WCCM VI.
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    • Kaliske, M.1    Näser, B.2    André, M.3
  • 7
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    • Application of the material force method to isotropic damage
    • Liebe, T. & Denzer, R. & Steinmann, P. 2003. Application of the material force method to isotropic damage. Computational Mechanics 30: 171-184.
    • (2003) Computational Mechanics , vol.30 , pp. 171-184
    • Liebe, T.1    Denzer, R.2    Steinmann, P.3
  • 8
    • 8644238062 scopus 로고    scopus 로고
    • On the comparison of two approaches to compute material forces for inelastic materials. Application to single-slip crystalplasticity
    • Menzel, A. & Denzer, R. & Steinmann, P. 2004. On the comparison of two approaches to compute material forces for inelastic materials. Application to single-slip crystalplasticity. Computer Methods in Applied Mechanics and Engineering 193: 5411-5428.
    • (2004) Computer Methods in Applied Mechanics and Engineering , vol.193 , pp. 5411-5428
    • Menzel, A.1    Denzer, R.2    Steinmann, P.3
  • 11
    • 0036648320 scopus 로고    scopus 로고
    • On material forces and finite element discretizations
    • Müller, R. & Maugin, G. A. 2002. On material forces and finite element discretizations. Computational Mechanics 29: 52-60.
    • (2002) Computational Mechanics , vol.29 , pp. 52-60
    • Müller, R.1    Maugin, G.A.2
  • 12
    • 34548106300 scopus 로고    scopus 로고
    • Numerische bruchmechanische Analysen mittels materieller Kräfte
    • Näser, B. & Kaliske, M. 2003. Numerische bruchmechanische Analysen mittels materieller Kräfte. Leipzig Annual Civil Engineering Report 8: 265-280.
    • (2003) Leipzig Annual Civil Engineering Report , vol.8 , pp. 265-280
    • Näser, B.1    Kaliske, M.2
  • 13
    • 17444419190 scopus 로고    scopus 로고
    • Formulierung materieller Kräfte für elastische und inelastische Materialien
    • Näser, B. & Kaliske, M. 2004. Formulierung materieller Kräfte für elastische und inelastische Materialien. Leipzig Annual Civil Engineering Report 9: 433-453.
    • (2004) Leipzig Annual Civil Engineering Report , vol.9 , pp. 433-453
    • Näser, B.1    Kaliske, M.2
  • 14
    • 84980287971 scopus 로고
    • A path independent integral and the approximate analysis of strain concentration by notches and cracks
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    • Rice, J.R.1
  • 15
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    • Application of material forces to hyperelastic fracture mechanics. I. Continuum mechanical setting
    • Steinmann, S. 2000. Application of material forces to hyperelastic fracture mechanics. I. Continuum mechanical setting. International Journal of Solids and Structures 37: 7371-7391.
    • (2000) International Journal of Solids and Structures , vol.37 , pp. 7371-7391
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  • 16
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    • Application of material forces to hyperelastic fracture mechanics. II. Computational setting
    • Steinmann, P. & Ackermann, D. & Barth, F.J. 2001. Application of material forces to hyperelastic fracture mechanics. II. Computational setting, International Journal of Solids and Structures 38: 5509-5526.
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