DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENT
The aim of this work is to investigate the influence of vibrations on the material of the board. For that purpose a cascade of navigation devices boards was installed on the vibrational stand. Experiments were performed in the 0,5–10 Hz vibrational diapason range; 0–3 V voltage range; 0 – +45 °C all...
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Belarusian National Technical University
2015-03-01
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doaj-a5925515267b43118ae092dcf7cab7982021-07-29T08:39:07ZengBelarusian National Technical UniversityPribory i Metody Izmerenij2220-95062414-04732015-03-0101798515DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENTA. Bogorosh0N. Višniakov1J. Novickij2A. Bubulis3National Technical University of UkraineVilnius Gediminas Technical UniversityVilnius Gediminas Technical UniversityKaunas Technological UniversityThe aim of this work is to investigate the influence of vibrations on the material of the board. For that purpose a cascade of navigation devices boards was installed on the vibrational stand. Experiments were performed in the 0,5–10 Hz vibrational diapason range; 0–3 V voltage range; 0 – +45 °C allowed temperature range. Amplitude method was applied to determine the coordinates of localized sources of acoustic emission. The results indicate the initial increase in tension and relative deformation and further their decrement. Growth rate reduction of mechanical stress dσ/dε is due to destruction of material structure. The receiving piezo converter based on ЦТС-19 ceramics and a waveguide that was in acoustic contact with the sample were used during experiments. The acquired experimental data on acoustic emission reflect the formation of microdefects and the instability of mechanical tension, its avalanche and explosive tendency in the material when the microvolumes of material are torn.https://pimi.bntu.by/jour/article/view/21vibrationnavigation devicesacoustic emission |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
A. Bogorosh N. Višniakov J. Novickij A. Bubulis |
spellingShingle |
A. Bogorosh N. Višniakov J. Novickij A. Bubulis DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENT Pribory i Metody Izmerenij vibration navigation devices acoustic emission |
author_facet |
A. Bogorosh N. Višniakov J. Novickij A. Bubulis |
author_sort |
A. Bogorosh |
title |
DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENT |
title_short |
DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENT |
title_full |
DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENT |
title_fullStr |
DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENT |
title_full_unstemmed |
DISLOCATION AVALANCHES AND STRAIN BURSTS IN THE BOARDS OF RADIO-ENGINEERING EQUIPMENT |
title_sort |
dislocation avalanches and strain bursts in the boards of radio-engineering equipment |
publisher |
Belarusian National Technical University |
series |
Pribory i Metody Izmerenij |
issn |
2220-9506 2414-0473 |
publishDate |
2015-03-01 |
description |
The aim of this work is to investigate the influence of vibrations on the material of the board. For that purpose a cascade of navigation devices boards was installed on the vibrational stand. Experiments were performed in the 0,5–10 Hz vibrational diapason range; 0–3 V voltage range; 0 – +45 °C allowed temperature range. Amplitude method was applied to determine the coordinates of localized sources of acoustic emission. The results indicate the initial increase in tension and relative deformation and further their decrement. Growth rate reduction of mechanical stress dσ/dε is due to destruction of material structure. The receiving piezo converter based on ЦТС-19 ceramics and a waveguide that was in acoustic contact with the sample were used during experiments. The acquired experimental data on acoustic emission reflect the formation of microdefects and the instability of mechanical tension, its avalanche and explosive tendency in the material when the microvolumes of material are torn. |
topic |
vibration navigation devices acoustic emission |
url |
https://pimi.bntu.by/jour/article/view/21 |
work_keys_str_mv |
AT abogorosh dislocationavalanchesandstrainburstsintheboardsofradioengineeringequipment AT nvisniakov dislocationavalanchesandstrainburstsintheboardsofradioengineeringequipment AT jnovickij dislocationavalanchesandstrainburstsintheboardsofradioengineeringequipment AT abubulis dislocationavalanchesandstrainburstsintheboardsofradioengineeringequipment |
_version_ |
1721253026527707136 |