Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging Processes
Selection of a suitable thermal aging process could render desirable mechanical properties of the rubbers or blended rubbers. In this work, the effect of the aging processes on the mechanical properties and activation energies of natural rubbers (NR) and NR/chloroprene rubbers (CR) blends with low C...
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doaj-ccd23e0245c24f538d66fdb5d78d02dc2020-11-30T09:11:25ZengHindawi LimitedJournal of Chemistry2090-90632090-90712020-01-01202010.1155/2020/70649347064934Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging ProcessesQuang Nguyen Trong0Hung Dang Viet1Linh Nguyen Pham Duy2Chuong Bui3Duong Duc La4Center for Polymer Composite and Paper, Hanoi University of Science & Technology, Hanoi, VietnamCenter for Polymer Composite and Paper, Hanoi University of Science & Technology, Hanoi, VietnamCenter for Polymer Composite and Paper, Hanoi University of Science & Technology, Hanoi, VietnamCenter for Polymer Composite and Paper, Hanoi University of Science & Technology, Hanoi, VietnamLaboratory of Advanced Materials Chemistry, Advanced Institute of Materials Science, Ton Duc Thang University, Ho Chi Minh, VietnamSelection of a suitable thermal aging process could render desirable mechanical properties of the rubbers or blended rubbers. In this work, the effect of the aging processes on the mechanical properties and activation energies of natural rubbers (NR) and NR/chloroprene rubbers (CR) blends with low CR contents (5–10%) was investigated. Three aging processes including heat aging (at 110°C for 22 hours), mechanical aging (under dynamic loading to 140% strain for 16000 cycles), and complex aging (heat and mechanical aging) were studied. The results revealed that the compatibility of CR in natural rubber matrix had a significant effect on the dynamic properties of the blended rubber and negligible effect on the static properties. The changes in activation energies of the blended rubber during aging processes were calculated using Arrhenius relation. The calculated changes (ΔUc, ΔUd, and ΔUT) in activation energies were consistent with the results of mechanical properties of the blended rubber. Interestingly, the change in activation energies using complex aging conditions (ΔUc) was mostly equal to the total changes in activation energies calculated separately from heat aging (ΔUT) and mechanical aging (ΔUd) conditions. This indicates that, in complex aging conditions, the heat and dynamic loading factors act independently on the properties of the blended rubber.http://dx.doi.org/10.1155/2020/7064934 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Quang Nguyen Trong Hung Dang Viet Linh Nguyen Pham Duy Chuong Bui Duong Duc La |
spellingShingle |
Quang Nguyen Trong Hung Dang Viet Linh Nguyen Pham Duy Chuong Bui Duong Duc La Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging Processes Journal of Chemistry |
author_facet |
Quang Nguyen Trong Hung Dang Viet Linh Nguyen Pham Duy Chuong Bui Duong Duc La |
author_sort |
Quang Nguyen Trong |
title |
Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging Processes |
title_short |
Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging Processes |
title_full |
Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging Processes |
title_fullStr |
Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging Processes |
title_full_unstemmed |
Detailed Study on the Mechanical Properties and Activation Energy of Natural Rubber/Chloroprene Rubber Blends during Aging Processes |
title_sort |
detailed study on the mechanical properties and activation energy of natural rubber/chloroprene rubber blends during aging processes |
publisher |
Hindawi Limited |
series |
Journal of Chemistry |
issn |
2090-9063 2090-9071 |
publishDate |
2020-01-01 |
description |
Selection of a suitable thermal aging process could render desirable mechanical properties of the rubbers or blended rubbers. In this work, the effect of the aging processes on the mechanical properties and activation energies of natural rubbers (NR) and NR/chloroprene rubbers (CR) blends with low CR contents (5–10%) was investigated. Three aging processes including heat aging (at 110°C for 22 hours), mechanical aging (under dynamic loading to 140% strain for 16000 cycles), and complex aging (heat and mechanical aging) were studied. The results revealed that the compatibility of CR in natural rubber matrix had a significant effect on the dynamic properties of the blended rubber and negligible effect on the static properties. The changes in activation energies of the blended rubber during aging processes were calculated using Arrhenius relation. The calculated changes (ΔUc, ΔUd, and ΔUT) in activation energies were consistent with the results of mechanical properties of the blended rubber. Interestingly, the change in activation energies using complex aging conditions (ΔUc) was mostly equal to the total changes in activation energies calculated separately from heat aging (ΔUT) and mechanical aging (ΔUd) conditions. This indicates that, in complex aging conditions, the heat and dynamic loading factors act independently on the properties of the blended rubber. |
url |
http://dx.doi.org/10.1155/2020/7064934 |
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