Non-Destructive Evaluation of Impacted CFRP by IR Thermography
The aim of the article is to present a new technique providing an increase in the reliability of standard destructive tests of light ballistic shields. During the ballistic impact (i.e., of projectiles or fragments) on the material and its penetration by these incoming items, the absorbed kinetic en...
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doaj-3730ba0af17e42038dd156075bbba6bc2020-11-24T20:41:56ZengMDPI AGMaterials1996-19442019-03-0112695610.3390/ma12060956ma12060956Non-Destructive Evaluation of Impacted CFRP by IR ThermographyWaldemar Swiderski0Pawel Hlosta1Military Institute of Armament Technology, 05-220 Zielonka, PolandMilitary Institute of Armament Technology, 05-220 Zielonka, PolandThe aim of the article is to present a new technique providing an increase in the reliability of standard destructive tests of light ballistic shields. During the ballistic impact (i.e., of projectiles or fragments) on the material and its penetration by these incoming items, the absorbed kinetic energy is transformed into heat. In particular, the material regions that are damaged generate heat, and around and above the damage, on particular areas of the surface of the sample, the temperature signal increases. While registering, thermal cameras can process the impact and penetration of a material by a projectile and can accurately determine the area of the material (around the point of impact and the area of penetration) that has been damaged. Two infrared cameras were used for our testing work. One recorded the changes to the temperature field on the surface with the ballistic impact and the second one on the opposite surface. These results were compared with those obtained by optical active thermography performed by the reflection approach. Selected results from all the tests are presented in this paper.https://www.mdpi.com/1996-1944/12/6/956IR thermographynon-destructive testingcomposite material |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Waldemar Swiderski Pawel Hlosta |
spellingShingle |
Waldemar Swiderski Pawel Hlosta Non-Destructive Evaluation of Impacted CFRP by IR Thermography Materials IR thermography non-destructive testing composite material |
author_facet |
Waldemar Swiderski Pawel Hlosta |
author_sort |
Waldemar Swiderski |
title |
Non-Destructive Evaluation of Impacted CFRP by IR Thermography |
title_short |
Non-Destructive Evaluation of Impacted CFRP by IR Thermography |
title_full |
Non-Destructive Evaluation of Impacted CFRP by IR Thermography |
title_fullStr |
Non-Destructive Evaluation of Impacted CFRP by IR Thermography |
title_full_unstemmed |
Non-Destructive Evaluation of Impacted CFRP by IR Thermography |
title_sort |
non-destructive evaluation of impacted cfrp by ir thermography |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2019-03-01 |
description |
The aim of the article is to present a new technique providing an increase in the reliability of standard destructive tests of light ballistic shields. During the ballistic impact (i.e., of projectiles or fragments) on the material and its penetration by these incoming items, the absorbed kinetic energy is transformed into heat. In particular, the material regions that are damaged generate heat, and around and above the damage, on particular areas of the surface of the sample, the temperature signal increases. While registering, thermal cameras can process the impact and penetration of a material by a projectile and can accurately determine the area of the material (around the point of impact and the area of penetration) that has been damaged. Two infrared cameras were used for our testing work. One recorded the changes to the temperature field on the surface with the ballistic impact and the second one on the opposite surface. These results were compared with those obtained by optical active thermography performed by the reflection approach. Selected results from all the tests are presented in this paper. |
topic |
IR thermography non-destructive testing composite material |
url |
https://www.mdpi.com/1996-1944/12/6/956 |
work_keys_str_mv |
AT waldemarswiderski nondestructiveevaluationofimpactedcfrpbyirthermography AT pawelhlosta nondestructiveevaluationofimpactedcfrpbyirthermography |
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1716823773630431232 |