Strains and cracks in a new type of slurry wall: research field (1)WeiterlesenStrains and cracks in a new type of slurry wall: research field (1)Damage detection in the composite wind turbine blade for bridge applicationsWeiterlesenDamage detection in the composite wind turbine blade for bridge applicationsStrain and displacement monitoring inside a road structureWeiterlesenStrain and displacement monitoring inside a road structureSmart composite bridge panel for strain and shape sensingWeiterlesenSmart composite bridge panel for strain and shape sensingPEBSTER (5×5 m): strains and displacements in piled embankment with a steel meshWeiterlesenPEBSTER (5×5 m): strains and displacements in piled embankment with a steel meshPEBSTER (1×1 m): strains and displacements in piled embankment with a steel meshWeiterlesenPEBSTER (1×1 m): strains and displacements in piled embankment with a steel mesh zurück1 2
Strains and cracks in a new type of slurry wall: research field (1)WeiterlesenStrains and cracks in a new type of slurry wall: research field (1)
Damage detection in the composite wind turbine blade for bridge applicationsWeiterlesenDamage detection in the composite wind turbine blade for bridge applications
Strain and displacement monitoring inside a road structureWeiterlesenStrain and displacement monitoring inside a road structure
Smart composite bridge panel for strain and shape sensingWeiterlesenSmart composite bridge panel for strain and shape sensing
PEBSTER (5×5 m): strains and displacements in piled embankment with a steel meshWeiterlesenPEBSTER (5×5 m): strains and displacements in piled embankment with a steel mesh
PEBSTER (1×1 m): strains and displacements in piled embankment with a steel meshWeiterlesenPEBSTER (1×1 m): strains and displacements in piled embankment with a steel mesh