Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/35713
Title: Natural rubber/styrene butadiene rubber/recycled nitrile glove (NR/SBR/rNBRg) ternary blend: Tensile properties & morphology
Authors: Nik Zakaria, Nik Yahya
Nik Noriman, Zulkepli, Dr.
Hanafi, Ismail
Sam, Sung Ting, Dr.
Santiagoo, Ragunanthan
nikzakariany90@gmail.com
niknoriman@unimap.edu.my
hanafi@eng.usm.my
stsam@unimap.edu.my 
raguna@unimap.edu.my
Keywords: Natural rubber
Recycled nitrile glove (rNBRg)
Scanning electron microscopy
Styrene butadiene rubber (SBR)
Tensile properties
Ternary blend
Issue Date: Oct-2013
Publisher: AENSI Publisher All rights reserved
Citation: Advances in Environmental Biology, Vol. 7(SPEC. ISSUE 12), 2013, pages 3731-3736
Abstract: Recycling waste rubber products by utilising them in rubber blends had provided the simplest and most cost-effective ways in solving several environmental issues regarding the abundance of scrap rubbers. Discarded nitrile gloves, in which the defects and rejects from the nitrile gloves production were used in this study. Ternary blends of natural rubber/styrene butadiene rubber/recycled nitrile glove (NR/SBR/rNBRg) were prepared. The effects of blend ratio (50/50/00, 50/40/10, 50/30/20, 50/20/30, 50/10/40, 50/00/50, 40/50/10, 30/50/20, 20/50/30, 10/50/40 and 00/50/50 (phr/phr/phr)) on tensile properties and morphology of NR/SBR/rNBRg ternary blends were studied. The result indicates that the NR/SBR/rNBRg ternary blends exhibited a decrease in tensile properties as the rNBRg content increased. However, the optimum tensile properties of the blends exhibited at 50/30/20 blend ratio. The resilience and crosslink density of the blends decreased with addition of rNBRg while the hardness increased when more rNBRg content added. However, significant drop in hardness can be observed at 40 phr of rNBRg content, due to the random dispersion of rNBRg on the surface of the test pieces. Scanning electron microscopy (SEM) analysis indicated that, poor attachment of rNBRg particles into the blends as rNBRg content increased.
Description: Link to publisher's homepage at http://www.aensiweb.com/
URI: http://www.aensiweb.com/old/aeb_October-special_2013.html
http://dspace.unimap.edu.my:80/dspace/handle/123456789/35713
ISSN: 1995-0756
Appears in Collections:Sam Sung Ting, Assoc. Prof. Ts. Dr.
Center of Excellence for Geopolymer and Green Technology (CEGEOGTECH) (Articles)
School of Materials Engineering (Articles)
School of Bioprocess Engineering (Articles)
School of Environmental Engineering (Articles)
Nik Noriman Zulkepli, Assoc. Prof. Ts. Dr.
Ragunathan, Santiagoo, Assoc. Prof. Ts. Dr.



Items in UniMAP Library Digital Repository are protected by copyright, with all rights reserved, unless otherwise indicated.