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PARK, HYUN CHUL (박현철)
엔지니어링 대학원(엔지니어링 대학원)
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FABRICATION:9||NANOWIRE ARRAYS:8||ANODIC ALUMINUMOXIDE:7||DEPTH:6||THINFILMS:6||MEMBRANES:6||microstrip antenna:6||SINGLECRYSTALS:6||WINDING ANGLE:6||nanoindentation:5||POROUS ALUMINA:5||HARDNESS:5||ARRAYS:5||NANOINDENTATION:5||TEMPLATE:5||ELEMENT:5||ACTUATORS:5||SAS:5||SINGLECRYSTAL SILICON:4||INTERMEDIATE TEMPERATURES:4||friction:4||adhesion:4||SURFACES:4||BENDING TEST:4||atomic force microscopy:4||nanohoneycomb:4||nanohoneycomb structure:4||AFM:4||PLATES:4||NANOSCALE STRUCTURES:4||STRESS:4||SUBSTRATE:4||depthdependent hardness:3||OPTIMIZATION:3||Size effect:3||FILMS:3||strain gradient plasticity:3||sandwich structure:3||STRAINGRADIENT PLASTICITY:3||HEXAGONAL PORE ARRAYS:3||vibration control:3||SENSORS:3||MODEL:3||Flow stress:3||GND:3||size effect:3||CONTACTANGLE:3||DEFORMATION:3||POLYELECTROLYTE MULTILAYERS:3||TANTALA:3||WETTABILITY:3||bending fatigue:3||shunt circuit:3||composite:3||FILM:3||PIEZOELECTRIC ACTUATORS:3||fatigue strength reduction factor:2||REPLICATION:2||SURFACE:2||CANTILEVERS:2||GOLD:2||MAGNETICPROPERTIES:2||fractography:2||Strain gradient plasticity:2||carbonfiberreinforced plastics (CFRP):2||biaxial strength:2||nanoUTM:2||MECHANICALPROPERTIES:2||MEMS MATERIALS:2||OXIDE FILMS:2||anodic aluminum oxide:2||mechanical properties:2||atomic force microscope:2||ANODIC ALUMINA:2||Mathematical model:2||buckling:2||COMPOSITE:2||NETWORKS:2||STRENGTH:2||COMBINED EXTERNALPRESSURE:2||carbon/epoxy:2||ALUMINUM:2||ANODIC ALUMINA MEMBRANES:2||VIBRATION CONTROL:2||FRICTION:2||SAR:2||tensile coupon:2||TORSION:2||BEHAVIOR:2||scanning electron microscopy (SEM):2||failure criterion:2||artificial neural networks (ANN):2||DESIGN:2||LAMINATE:2||Offshore wind turbine:2||Nomex honeycomb:2||graphite/epoxy:2||surface antenna structure:2||Anodic aluminum oxide:2||Van der Waals interaction:2||NanoUTM:2||porous material:2||PIEZOELECTRIC MATERIALS:2||fiber reinforced plastics (FRP):2||characteristic length:2||bearing strength:2||pin loading:2||Young&apos:2||anodization:2||smart skin structure:2||strength:2||cureinplace:2||Nanopillar:2||NANOSTRUCTURED SURFACES:2||NANOPILLAR ARRAYS:2||CARBON NANOTUBES:2||LITHOGRAPHY:2||microstructure:2||failure mechanism:2||PRESSURE:2||stress/strain curves:2||STRAIN:2||WIRE:2||SENSING INDENTATION:2||surfaceantennastructure:2||repair:2||strength recovery:2||Electrostatic induction:2||STAMP DEFORMATION:2||FORCE MICROSCOPE:2||ATOMICFORCE MICROSCOPY:2||failure mode:2||CONTROLLABILITY:2||s modulus:2||nanouniversal testing machine:2||anodic alumina:2||DAMAGE MECHANICS:2||micro strip antenna:2||composite laminate:2||CARBON:2||AAO:2||threepoint bending fatigue:2||EMBEDDED ACTUATORS:2||COMPOSITE PLATES:2||SHELLS:2||RICCATI EQUATION:2||FORCE MICROSCOPY:2||ATOMICFORCE:2||fatigue life:2||
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