Published October 30, 2023 | Version 1.0.0
Dataset Open

Database of measurements for damage detection of T-type timber structural joint by Coaxial Correlation Method in 6-D space

Description

This database includes series of measurements of the structure's response taken in six-dimensional space using two 6D sensors, coaxially positioned on either side of the investigated joint between two timber beams connected at an angle of 90⁰. Presented data related to seven different states of joints, five load levels, and two type of input signal (short impulse and sweep signal with duration 0.5 seconds). In the "Read_me_first.pdf" is described the experiment, the format of .csv files names and files' structure.

Files

data.zip

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Additional details

Funding

Latvian Council of Science
Method of Correlation of Coaxial Accelerations in 6D Space for Quality Assessment of Structural Joints (COACCEL) Nr. lzp-2020/1-0240

Dates

Available
2023-10-31

References

  • Kurtenoks, V.; Kurajevs, A.; Buka-Vaivade, K.; Serdjuks, D.; Lapkovskis, V.; Mironovs, V.; Podkoritovs, A.; Vilnitis, M. The Quality Assessment of Timber Structural Joints Using the Coaxial Correlation Method. Buildings 2023, 13, 1929. https://doi.org/10.3390/buildings13081929
  • Buka-Vaivade, K.; Kurtenoks, V.; Serdjuks, D. Non-Destructive Damage Detection of Structural Joint by Coaxial Correlation Method in 6D Space. Buildings 2023, 13, 1151. https://doi.org/10.3390/buildings13051151
  • Serdjuks, D.; Kurtenoks, V.; Tatarinovs, A.; Mironovs, V.; Lapkovskis, V.; Buka-Vaivade, K.; Macevics, A.; Topcijs, K.; Vilnitis, M. Method of Coaxial Accelerations Correlation for Quality Assessment of Structural Joints. Procedia Struct. Integr. 2022, 37, 547–554. https://doi.org/10.1016/j.prostr.2022.01.121
  • Serdjuks, D.; Kurtenoks, V.; Tatarinovs, A.; Buka-Vaivade, K.; Lapkovskis, V.; Mironovs, V.; Podkoritovs, A.; Topcijs, K. Non-Model Vibration Analysis Method for Health Monitoring of Structural Joints. Procedia Struct. Integr. 2022, 37, 555–562. https://doi.org/10.1016/j.prostr.2022.01.122