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Microplane damage model for jointed rock masses
Xin Chen
*
,
Zdeněk P. Bažant
*
Corresponding author for this work
Civil and Environmental Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
22
Scopus citations
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Keyphrases
Microplane
100%
Jointed Rock Mass
100%
Microplane Damage Model
100%
Rock Matrix
80%
Rock Joints
60%
Mechanical Behavior
40%
Joint Continuity
40%
Continuity Factor
40%
Numerical Simulation
20%
Elastic Strain
20%
Evolution Law
20%
Behavior Characteristics
20%
Constitutive Law
20%
Microplane Model M7
20%
Young's Modulus
20%
Parallel Coupling
20%
Stress-strain
20%
Inelasticity
20%
Geometric Characteristics
20%
Area Fraction
20%
Strain Softening
20%
Deviatoric
20%
Rock Mass
20%
Dilatancy
20%
Sandstone
20%
Inelastic Response
20%
Triaxial Test
20%
Dip Angle
20%
Damage Variable
20%
High Confining Pressure
20%
Brittle-ductile Transition
20%
Triaxial Loading
20%
Microplane Constitutive Model
20%
Rock Strength
20%
Low Confining Pressure
20%
Plaster Mortar
20%
Jointed Rock
20%
Phase-coupled
20%
Engineering
Damage Model
100%
Jointed Rock Mass
100%
Joints (Structural Components)
100%
Rock Matrix
44%
Tensiles
22%
Confining Pressure
22%
Constitutive Model
11%
Deviatoric
11%
Rock Mass
11%
Test Data
11%
Dip Angle
11%
Elastic Strain
11%
Damage Variable
11%
Inelastic Response
11%
Rock Strength
11%
Evolution Law
11%
Young's Modulus
11%
Plaster
11%
Dilatancy
11%