First bridge in Germany with embedded strain and crack distributed sensorsWeiterlesenFirst bridge in Germany with embedded strain and crack distributed sensorsDynamic strain sensing in a historical post-tensioned bridge over Motława riverWeiterlesenDynamic strain sensing in a historical post-tensioned bridge over Motława riverThe 2nd bridge in Germany with embedded strain and crack distributed sensorsWeiterlesenThe 2nd bridge in Germany with embedded strain and crack distributed sensorsDamage detection in the composite wind turbine blade for bridge applicationsWeiterlesenDamage detection in the composite wind turbine blade for bridge applicationsSteel-concrete railway bridge: strains and cracks during load testsWeiterlesenSteel-concrete railway bridge: strains and cracks during load testsOne of the largest concrete bridge in Poland – distributed crack detectionWeiterlesenOne of the largest concrete bridge in Poland – distributed crack detection
First bridge in Germany with embedded strain and crack distributed sensorsWeiterlesenFirst bridge in Germany with embedded strain and crack distributed sensors
Dynamic strain sensing in a historical post-tensioned bridge over Motława riverWeiterlesenDynamic strain sensing in a historical post-tensioned bridge over Motława river
The 2nd bridge in Germany with embedded strain and crack distributed sensorsWeiterlesenThe 2nd bridge in Germany with embedded strain and crack distributed sensors
Damage detection in the composite wind turbine blade for bridge applicationsWeiterlesenDamage detection in the composite wind turbine blade for bridge applications
Steel-concrete railway bridge: strains and cracks during load testsWeiterlesenSteel-concrete railway bridge: strains and cracks during load tests
One of the largest concrete bridge in Poland – distributed crack detectionWeiterlesenOne of the largest concrete bridge in Poland – distributed crack detection