Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord
Polyester tire cord is often used as reinforcement in the production of chloroprene rubber (CR) composite materials. This study investigated the influences of polyester tire cord layers and arrangement directions on the mechanical properties and vibration isolation of CR composite materials. The exp...
Main Authors: | , |
---|---|
Format: | Article |
Language: | English |
Published: |
De Gruyter
2016-11-01
|
Series: | Science and Engineering of Composite Materials |
Subjects: | |
Online Access: | https://doi.org/10.1515/secm-2014-0236 |
id |
doaj-3bf74886285e4c6ab98fc5e526502935 |
---|---|
record_format |
Article |
spelling |
doaj-3bf74886285e4c6ab98fc5e5265029352021-09-05T14:00:30ZengDe GruyterScience and Engineering of Composite Materials0792-12332191-03592016-11-0123667768310.1515/secm-2014-0236Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cordTsai Peir-An0Wu Jyh-Horng1General Education Center, Jen-Teh Junior College of Medicine, Nursing and Management, Miaoli County 35664, TaiwanMaterial Application Center, Industrial Technology Research Institute, Tainan 70955, TaiwanPolyester tire cord is often used as reinforcement in the production of chloroprene rubber (CR) composite materials. This study investigated the influences of polyester tire cord layers and arrangement directions on the mechanical properties and vibration isolation of CR composite materials. The experimental results indicate that the optimal molding condition for bonding tire cord with CR composites is 170°C for 30 min, which enables tire cord-reinforced CR composites to exhibit maximum pull-out strength. The compression set, tensile strength, and tear strength of CR composites increased with the increasing number of tire cord layers, and the stretching direction parallel to the arrangement direction of the tire cord produced optimal reinforcement effect. Moreover, the storage modulus of CR composites is better than that of pure CR at low temperature, although it reduced the tan delta at glass transition temperature. Regarding the vibration isolation properties, the transmissibility ratio decreased at resonance frequency, while the damping ratio increased when the CR is reinforced with increasing number of tire cord layers.https://doi.org/10.1515/secm-2014-0236chloroprene rubberpolyester tire cordvibration isolation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tsai Peir-An Wu Jyh-Horng |
spellingShingle |
Tsai Peir-An Wu Jyh-Horng Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord Science and Engineering of Composite Materials chloroprene rubber polyester tire cord vibration isolation |
author_facet |
Tsai Peir-An Wu Jyh-Horng |
author_sort |
Tsai Peir-An |
title |
Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord |
title_short |
Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord |
title_full |
Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord |
title_fullStr |
Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord |
title_full_unstemmed |
Influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord |
title_sort |
influence of tire cord layers and arrangement direction on mechanical properties and vibration isolation of chloroprene rubber composite materials reinforced with polyester tire cord |
publisher |
De Gruyter |
series |
Science and Engineering of Composite Materials |
issn |
0792-1233 2191-0359 |
publishDate |
2016-11-01 |
description |
Polyester tire cord is often used as reinforcement in the production of chloroprene rubber (CR) composite materials. This study investigated the influences of polyester tire cord layers and arrangement directions on the mechanical properties and vibration isolation of CR composite materials. The experimental results indicate that the optimal molding condition for bonding tire cord with CR composites is 170°C for 30 min, which enables tire cord-reinforced CR composites to exhibit maximum pull-out strength. The compression set, tensile strength, and tear strength of CR composites increased with the increasing number of tire cord layers, and the stretching direction parallel to the arrangement direction of the tire cord produced optimal reinforcement effect. Moreover, the storage modulus of CR composites is better than that of pure CR at low temperature, although it reduced the tan delta at glass transition temperature. Regarding the vibration isolation properties, the transmissibility ratio decreased at resonance frequency, while the damping ratio increased when the CR is reinforced with increasing number of tire cord layers. |
topic |
chloroprene rubber polyester tire cord vibration isolation |
url |
https://doi.org/10.1515/secm-2014-0236 |
work_keys_str_mv |
AT tsaipeiran influenceoftirecordlayersandarrangementdirectiononmechanicalpropertiesandvibrationisolationofchloroprenerubbercompositematerialsreinforcedwithpolyestertirecord AT wujyhhorng influenceoftirecordlayersandarrangementdirectiononmechanicalpropertiesandvibrationisolationofchloroprenerubbercompositematerialsreinforcedwithpolyestertirecord |
_version_ |
1717811828850950144 |