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Volumn 20, Issue 1, 2009, Pages 67-74
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Effects of strain rate on the mechanical properties of tricalcium phosphate/poly(l-lactide) composites
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Author keywords
[No Author keywords available]
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Indexed keywords
BONE FRACTURES;
DAMAGE MECHANICS (DM);
EFFECTS OF STRAIN;
ENERGY CRITERION;
ENERGY RELEASES;
ESHELBY;
L-LACTIDE (PLLA);
MECHANICAL BEHAVIORS;
NONLINEARITY (INCLUDING BIFURCATION THEORY);
PLASTIC COMPOSITES;
RATE DEPENDENCY;
STATIC LOADING;
STRAIN CURVES;
VOID FORMATIONS;
YOUNG'S MODULUS (IGC: E14/K14);
BIOCOMPATIBILITY;
CLARIFICATION;
CRACK PROPAGATION;
DEBONDING;
ELASTIC CONSTANTS;
ELASTIC MODULI;
ELASTICITY;
ENERGY RELEASE RATE;
EVAPORATIVE COOLING SYSTEMS;
FRACTURE FIXATION;
MECHANICAL PROPERTIES;
METALLIC MATRIX COMPOSITES;
POLYMER MATRIX COMPOSITES;
POLYMERS;
STRAIN;
STRESS-STRAIN CURVES;
STRESSES;
TENSILE STRENGTH;
TENSILE TESTING;
TESTING;
TRANSMISSION CONTROL PROTOCOL;
STRAIN RATE;
CALCIUM PHOSPHATE;
POLYLACTIDE;
ARTICLE;
CHEMICAL BINDING;
CHEMICAL PROCEDURES;
CHEMICAL STRUCTURE;
COMPOSITE MATERIAL;
COMPRESSIVE STRENGTH;
CRYSTALLIZATION;
ELASTICITY;
ENERGY TRANSFER;
MECHANICAL STRESS;
PARTICLE SIZE;
PRIORITY JOURNAL;
TENSILE STRENGTH;
YOUNG MODULUS;
BIOMECHANICS;
BONE SUBSTITUTES;
CALCIUM PHOSPHATES;
COMPRESSIVE STRENGTH;
FRACTURE FIXATION;
HUMANS;
MATERIALS TESTING;
MICROSCOPY, ELECTRON, SCANNING;
PARTICLE SIZE;
POLYESTERS;
STRESS, MECHANICAL;
SURFACE PROPERTIES;
TENSILE STRENGTH;
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EID: 58549087342
PISSN: 09574530
EISSN: None
Source Type: Journal
DOI: 10.1007/s10856-008-3553-8 Document Type: Article |
Times cited : (15)
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References (16)
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