Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages

Background: Frequent moves at the joint, plus external factors such as trauma, aging, and etc., are all reasons for joint damages. In order to protect and care of joints, the orthopedic textiles are used. To protect the joints, these textiles keep muscles warm to prevent shock. To produce orthopedic...

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Main Authors: Ehsan Ghorbani, Hossein Hasani, Homa Rafeian, Batool Hashemibeni
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2013-01-01
Series:International Journal of Preventive Medicine
Subjects:
Online Access:http://www.ijpvmjournal.net/article.asp?issn=2008-7802;year=2013;volume=4;issue=7;spage=761;epage=766;aulast=Ghorbani
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spelling doaj-6a423185ca3242a4a74a5578c0c769532020-11-24T22:44:54ZengWolters Kluwer Medknow PublicationsInternational Journal of Preventive Medicine2008-78022008-82132013-01-0147761766Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damagesEhsan GhorbaniHossein HasaniHoma RafeianBatool HashemibeniBackground: Frequent moves at the joint, plus external factors such as trauma, aging, and etc., are all reasons for joint damages. In order to protect and care of joints, the orthopedic textiles are used. To protect the joints, these textiles keep muscles warm to prevent shock. To produce orthopedic textiles, Neoprene foams have been traditionally used. These foams are flexible and resist impact, but are not comfortable enough and might cause problems for the consumer. This study introduces a new structure consisting of perforated Neoprene foam attached to the spacer fabric and also compares the properties of thermal and moisture comfort and impact properties of this structure in comparison with Neoprene foam. Methods: In order to measure the factors related to the samples lateral pressure behavior, a tensile tester was used. A uniform pressure is applied to the samples and a force - displacement curve is obtained. The test continues until the maximum compression force is reached to 50 N. The area under the curve is much greater; more energy is absorbed during the impact. In order to investigate the dynamic heat and moisture transfer of fabrics, an experimental apparatus was developed. This device made the simulation of sweating of human body possible and consisted of a controlled environmental chamber, sweating guarded hot plate, and data acquisition system. Results: The findings show that the Neoprene-spacer fabric structure represents higher toughness values compared to other samples (P ≤ 0.001). Neoprene-spacer fabric structure (A3) has higher rate of moisture transport than conventional Neoprene foam; because of undesirable comfort characteristics in Neoprene. Conclusions: Results of the tests indicate full advantage of the new structure compared with the Neoprene foam for use in orthopedic textiles (P ≤ 0.001).http://www.ijpvmjournal.net/article.asp?issn=2008-7802;year=2013;volume=4;issue=7;spage=761;epage=766;aulast=GhorbaniJoint damagesNeoprene foamorthopedic textilesspacer fabricthermal and moisture comfort
collection DOAJ
language English
format Article
sources DOAJ
author Ehsan Ghorbani
Hossein Hasani
Homa Rafeian
Batool Hashemibeni
spellingShingle Ehsan Ghorbani
Hossein Hasani
Homa Rafeian
Batool Hashemibeni
Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages
International Journal of Preventive Medicine
Joint damages
Neoprene foam
orthopedic textiles
spacer fabric
thermal and moisture comfort
author_facet Ehsan Ghorbani
Hossein Hasani
Homa Rafeian
Batool Hashemibeni
author_sort Ehsan Ghorbani
title Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages
title_short Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages
title_full Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages
title_fullStr Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages
title_full_unstemmed Analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages
title_sort analysis of the thermal comfort and impact properties of the neoprene-spacer fabric structure for preventing the joint damages
publisher Wolters Kluwer Medknow Publications
series International Journal of Preventive Medicine
issn 2008-7802
2008-8213
publishDate 2013-01-01
description Background: Frequent moves at the joint, plus external factors such as trauma, aging, and etc., are all reasons for joint damages. In order to protect and care of joints, the orthopedic textiles are used. To protect the joints, these textiles keep muscles warm to prevent shock. To produce orthopedic textiles, Neoprene foams have been traditionally used. These foams are flexible and resist impact, but are not comfortable enough and might cause problems for the consumer. This study introduces a new structure consisting of perforated Neoprene foam attached to the spacer fabric and also compares the properties of thermal and moisture comfort and impact properties of this structure in comparison with Neoprene foam. Methods: In order to measure the factors related to the samples lateral pressure behavior, a tensile tester was used. A uniform pressure is applied to the samples and a force - displacement curve is obtained. The test continues until the maximum compression force is reached to 50 N. The area under the curve is much greater; more energy is absorbed during the impact. In order to investigate the dynamic heat and moisture transfer of fabrics, an experimental apparatus was developed. This device made the simulation of sweating of human body possible and consisted of a controlled environmental chamber, sweating guarded hot plate, and data acquisition system. Results: The findings show that the Neoprene-spacer fabric structure represents higher toughness values compared to other samples (P ≤ 0.001). Neoprene-spacer fabric structure (A3) has higher rate of moisture transport than conventional Neoprene foam; because of undesirable comfort characteristics in Neoprene. Conclusions: Results of the tests indicate full advantage of the new structure compared with the Neoprene foam for use in orthopedic textiles (P ≤ 0.001).
topic Joint damages
Neoprene foam
orthopedic textiles
spacer fabric
thermal and moisture comfort
url http://www.ijpvmjournal.net/article.asp?issn=2008-7802;year=2013;volume=4;issue=7;spage=761;epage=766;aulast=Ghorbani
work_keys_str_mv AT ehsanghorbani analysisofthethermalcomfortandimpactpropertiesoftheneoprenespacerfabricstructureforpreventingthejointdamages
AT hosseinhasani analysisofthethermalcomfortandimpactpropertiesoftheneoprenespacerfabricstructureforpreventingthejointdamages
AT homarafeian analysisofthethermalcomfortandimpactpropertiesoftheneoprenespacerfabricstructureforpreventingthejointdamages
AT batoolhashemibeni analysisofthethermalcomfortandimpactpropertiesoftheneoprenespacerfabricstructureforpreventingthejointdamages
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