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Date: 2014-01-13
|2014-01-13
|2001–
|2013
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Language: EN
Type: Article
Identifier: 15111768
Description: An economical in-house insulated chamber was developed (coupled with MTS 830 servo-hydraulic machine). This chamber was used to carry out double shear dynamic tests at various temperatures in order to
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Date: 2012-10-31
|2012-10-31
|2001–
|2012
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Language: EN
Type: Article
Identifier: 15111768
Description: Blends of poly(butadiene-co-acrylonitrile) [NBR] and polyaniline dodecylbenzenesulphonate [PAni.DBSA] with electrical conductivities up to 10–1 S.cm–1, have been successfully prepared using the techni
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Date: 2012-05-22
|2012-05-22
|2001–
|2012
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Language: EN
Type: Article
Identifier: 15111768
Description: Comparisons related to rheological studies on various types of raw rubber and rubber compound by using the capillary rheometer are still very limited. In this work, rheological testing was performed o
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Date: 2011-10-31
|2011-10-31
|2001–
|2011
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Language: EN
Type: Article
Identifier: 15111768
Description: Sulphur-vulcanised epoxidised natural rubber [ENR]-carbon black printex XE2B blends with high electrical conductivities (up to 10–1 S.cm–1), exhibiting good tensile properties and high damping were su
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Date: 2010-11-4
|2010-11-4
|2001–1
|2010
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Language: EN
Type: Article
Identifier: valet-20101104-145133
Description: A simple yet reliable test system was successfully developed for penetration resistance analysis of various rubber composites, which targeted for body amour-anti stab application. This test system con
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Date: 2010-11-4
|2010-11-4
|2001–1
|2006
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Language: EN
Type: Article
Identifier: valet-20101104-141126
Description: Blends of poly(butadiene-co-acrylonitrile) elastomer [NBR] and polyaniline dodecylbenzenesulfonate [PAni.DBSA], with electrical conductivities up to 10−2 S cm−1, have been prepared by solution mixing
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Date: 2010-11-4
|2010-11-4
|2001–
|2009
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Language: EN
Type: Article
Identifier: 978-1-84735-421-1
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Date: 114-08-7
|114-08-7
|2001–
|2014
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Language: EN
Type: Article
Identifier: 15111768
Description: Flexible composites based on natural rubber compounds and rubberwood (Heveawood) fibres were prepared using lamination technique. An in-house produced natural latex and lignin blend was used as the ad
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