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Scanning electron microscopy of fracture surfaces identifies the graphitic disks as fracture initiation sites.
Scanning electron microscopy of fracture surfaces shows changes in failure mechanisms compared to the pure components.
In addition, the results from scanning electron microscopy of fracture surfaces indicated that the interface zone of concrete and GPM was more homogeneous and denser than that of concrete and RM.
The partially dense compacts, consolidated from loose powder in thin-walled containers, were examined using optical microscopy of polished sections and stereo pair scanning electron microscopy of fracture surfaces.
Scanning electron microscopy of fracture surfaces after cyclic loading revealed that abrasion of crack bridging surface roughness is the main microscopical cause of weakening and degradation of the interface.
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The SEM (scanning electron microscopy) photomicrographs of fracture surfaces of the treated composites clearly indicated the extent of fibre matrix interface adhesion.
Dynamic tensile tests and scanning electron microscopy observations of fracture surfaces confirm that the existence of γ phase plays a key role in improving the ductility of Ni Mn Co Ga alloys.
Scanning electron microscopy of delaminated fracture surfaces revealed improved primary fiber matrix adhesion and indications of CNF-induced matrix toughening.
The nature of fibre/matrix interface was examined through scanning electron microscopy of tensile fracture samples.
Scanning electron microscopy of the fracture surfaces of the components confirmed that the implant had failed in fatigue, presumably due to high cyclic loads.
Scanning electron microscopy of the fracture surfaces of porcupine quills revealed that the cylindrical outer shells of quills are composed of 2 3 layers with distinctly different fracture characteristics, especially when the samples contain 100% RH.
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