Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors
Currently, there is a wide range of materials for motorcyclists available on the market that have a significant ability to absorb impact energy. Understanding the aging processes of materials is crucial for guaranteeing the long-term durability and safety of a new product. For this reason, the effec...
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doaj-9515431c8b8f49d899f2689f9b9ee4612020-11-25T01:56:33ZengMDPI AGPolymers2073-43602019-07-01118126310.3390/polym11081263polym11081263Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in ProtectorsLongina Madej-Kiełbik0Katarzyna Kośla1Dorota Zielińska2Edyta Chmal-Fudali3Magdalena Maciejewska4R&D Project Department, Institute of Security Technologies MORATEX, 3 M. Sklodowskiej-Curie Str., 90-505 Lodz, PolandR&D Project Department, Institute of Security Technologies MORATEX, 3 M. Sklodowskiej-Curie Str., 90-505 Lodz, PolandR&D Project Department, Institute of Security Technologies MORATEX, 3 M. Sklodowskiej-Curie Str., 90-505 Lodz, PolandR&D Project Department, Institute of Security Technologies MORATEX, 3 M. Sklodowskiej-Curie Str., 90-505 Lodz, PolandInstitute of Polymer and Dye Technology, Lodz University of Technology, 12/16 Stefanowskiego Str., 90-924 Lodz, PolandCurrently, there is a wide range of materials for motorcyclists available on the market that have a significant ability to absorb impact energy. Understanding the aging processes of materials is crucial for guaranteeing the long-term durability and safety of a new product. For this reason, the effect of accelerated aging on the mechanical and structural properties of the multifunctional materials used in commercial protectors was analyzed. The accelerated aging considered in this study simulated 3 years of use under real conditions. Then, DMTA and FT-IR research, as well as impact tests, were carried out on the commercially available protectors for motorcyclists, before and after the accelerated aging processes. Structural analysis using FT-IR showed no significant changes in the structure of the polymers used for producing the protectors. The DMA test results are consistent with those obtained from the impact study. Both methods showed that the samples maintain their protective properties, after accelerated aging. All of the examined protectors show that an increase in force is transferred through the sample, after the accelerated aging processes, but they still provide protection, according to the ISO standard.https://www.mdpi.com/2073-4360/11/8/1263polymersaccelerated agingimpact protectors |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Longina Madej-Kiełbik Katarzyna Kośla Dorota Zielińska Edyta Chmal-Fudali Magdalena Maciejewska |
spellingShingle |
Longina Madej-Kiełbik Katarzyna Kośla Dorota Zielińska Edyta Chmal-Fudali Magdalena Maciejewska Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors Polymers polymers accelerated aging impact protectors |
author_facet |
Longina Madej-Kiełbik Katarzyna Kośla Dorota Zielińska Edyta Chmal-Fudali Magdalena Maciejewska |
author_sort |
Longina Madej-Kiełbik |
title |
Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors |
title_short |
Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors |
title_full |
Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors |
title_fullStr |
Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors |
title_full_unstemmed |
Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors |
title_sort |
effect of accelerated ageing on the mechanical and structural properties of the material system used in protectors |
publisher |
MDPI AG |
series |
Polymers |
issn |
2073-4360 |
publishDate |
2019-07-01 |
description |
Currently, there is a wide range of materials for motorcyclists available on the market that have a significant ability to absorb impact energy. Understanding the aging processes of materials is crucial for guaranteeing the long-term durability and safety of a new product. For this reason, the effect of accelerated aging on the mechanical and structural properties of the multifunctional materials used in commercial protectors was analyzed. The accelerated aging considered in this study simulated 3 years of use under real conditions. Then, DMTA and FT-IR research, as well as impact tests, were carried out on the commercially available protectors for motorcyclists, before and after the accelerated aging processes. Structural analysis using FT-IR showed no significant changes in the structure of the polymers used for producing the protectors. The DMA test results are consistent with those obtained from the impact study. Both methods showed that the samples maintain their protective properties, after accelerated aging. All of the examined protectors show that an increase in force is transferred through the sample, after the accelerated aging processes, but they still provide protection, according to the ISO standard. |
topic |
polymers accelerated aging impact protectors |
url |
https://www.mdpi.com/2073-4360/11/8/1263 |
work_keys_str_mv |
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