Measurements of guided wave propagation in additively manufactured plates with internal defects obtained by scanning laser vibrometry - Open Research Data - Bridge of Knowledge

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Measurements of guided wave propagation in additively manufactured plates with internal defects obtained by scanning laser vibrometry

Description

The DataSet contains guided wave signals measured in additively manufactured samples (plates with the dimensions of 180 x 100 x 3 mm3, made from PLA filament) using scanning laser Doppler vibrometry. The samples were as follows: #1 – with defects visible at the surface; #2 – with internal defects.

Illustration of the publication

The measurements of guided waves were performed using the laser vibrometer PSV-3D-400-M (Polytec GmbH) equipped with a VD-07 velocity decoder. The elastic waves were excited using the plate piezoelectric actuator NAC2024 (Noliac). The excitation was a five-cycle wave packet obtained by Hann windowing of a sinusoidal burst with different central frequencies, separatelty, in consecutive measurements: 100 kHz, 200 kHz, and 300 kHz for sample #1 and 100 kHz and 200 kHz for sample #2. Guided wave signals were collected in 87 x 47 = 4089 points distributed on the top surface of the plate.

Wave propagation signals for samples #1 to #2 are given in (.csv) files, individually for each excitation frequency. Each file consists of 4090 columns. In the 1st column, time vector (in s) is given. In columns from 2nd to 4090th wave time histories (in m/s) measured in 4089 points are contained.

Dataset file

data.zip
398.7 MB, S3 ETag 1f335980b0672d56c9bfac106b70e884-1, downloads: 0
The file hash is calculated from the formula
hexmd5(md5(part1)+md5(part2)+...)-{parts_count} where a single part of the file is 512 MB in size.

Example script for calculation:
https://github.com/antespi/s3md5
download file data.zip

File details

License:
Creative Commons: by 4.0 open in new tab
CC BY
Attribution

Details

Year of publication:
2025
Verification date:
2025-04-14
Creation date:
2022
Dataset language:
English
DOI:
DOI ID 10.34808/xmje-7e36 open in new tab
Funding:
Verified by:
Gdańsk University of Technology

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