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Structural and Continuum Aspects of Fracture in Brittle
A Conception of a Structural Theory of Composite Materials
Curved Thermal Crack Growth in SelfStressed Models
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acoustic emission aggregate analysis anisotropic applied beam behaviour bond brittle matrix calculated ceramic coefficient composite materials composite structures compressive continuum corresponding crack band crack length crack propagation crack tip decrease deformation delamination determined displacement rates dynamic effect elastic energy dissipation energy release rate equation experimental fatigue fibre content fibre reinforced concrete fibre-matrix finite element flexural force fracture energy fracture mechanics fracture surface fracture toughness function grain homogeneous increase insulators interface investigation isotropic Kromp layer linear linear elastic loading matrix maximum measurements mechanical properties method microcracks microstructure modulus niobium notch observed obtained Pabst phase plane plastic polymer concrete pull-out ratio reaction relationship samples SFRC shear shown in Fig specimens steel fibre reinforced stiffness strain energy strain energy release strain gauges stress distribution stress intensity factor subcritical crack Table temperature tensile strength tension theory thermal thickness unloading values volume Young's modulus