Cement-based Composites: Strain Rate Effects on Fracture : Symposium Held December 4-5, 1985, Boston, Massachusetts, USA
Sidney Mindess, Surendra P. Shah
Materials Research Society, 1986 - Reinforced concrete - 270 pages
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.
14 pages matching strain energy reduction in this book
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STRAIN RATE EFFECTS ON CONCRETE AND REINFORCEMENTS
RATESENSITIVITY OF MODE I AND MODE II FRACTURE
INFLUENCE OF THE CRACK OPENING RATE ON THE FRACTURE
16 other sections not shown
average behavior brittle cement paste compressive strength concrete specimens concrete structures constant crack density crack extension crack length crack opening rates crack propagation crack tip crack velocity curve decrease deformation determined displacement dynamic fracture dynamic loading elastic elastic modulus experimental failure fiber reinforced concrete flexural Fracture Mechanics fracture process zone fracture toughness high rate loading high strain rates higher impact loading impact tests Impulsive Loading linear linear elastic load-relaxation loading rate longitudinal material maximum stress MDF cement measured microcracking Mindess modulus monotonic mortar notch observed obtained plain concrete Poisson's ratio post-cracking predict pressure bars prisms Proc rate-sensitivity rates of loading resistance SENB Shah slabs strain energy strain energy reduction strain rate effects strain rate ratio strength of concrete stress intensity factor stress rate stress-strain stress-strain curve Suaris subcritical crack growth surface sustained loading Tensar tensile strength tensile stress tension uniaxial Volume