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Emerging Trend of Rubber and Polymer Nano-composites

B. Goswami

Abstract


This review is a description of rubber and polymer constituted forms to enhance desirable properties. Fibre reinforced thermo-setting polymers are constituted from fabrics in polymer, which cross linked matrix has stiff and tough properties after addition of another constitutive. Electrical stress originating in hot spots has removed after use of proper nano filler in place of two type coats on electrical cables. Increasing performance oriented properties have subjected additional descriptive, as from thermoplastic elastomers from views of additives, e.g., silicone, polyolefin, palygorskite, etc. Application of silica nano filler at low in content has improved properties of vulcanized rubber better than usual macro and micro addition.


Keywords


Rubber, Polymer, Nano-composite, Elasticity, Toughness, Stiffness, Clay minerals

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References


Luca Valentinia, Miguel Angel Lopez-Manchado: Classification of rubbers and components for harsh environmental systems; Book Chapter 1; HIGH-PERFORMANCE ELASTOMERIC MATERIALS REINFORCED BY NANO-CARBONS; Multifunctional Properties and Industrial Applications; (2020).

Mona A. Ahmed, Usama F. Kandil, Neviene O. Shaker, Ahmed I. Hashem: The overall effect of reactive rubber nanoparticles and nano clay on the mechanical properties of epoxy resin; J. of Radiation Research and Applied Sci.; 8; (2015); p. 549.

Omar A.Al-Hartomy, Ahmed A.Al-Ghamdi, Nikolay Dishovsky, Petrunka Malinova, Rashko Dimitrov, Farid El-Tantawy: Conductive rubber based nanocomposites applicable as pressure sensors; RRPL, 3; (1); (2012); p. 23.

Yuan Fan, Qingyuan Li, Xiangxu Li, Dam hee Lee and Ur Ryong Cho: Comparative study on carboxylated styrene butadiene rubber composites reinforced by hybrid fillers of rice bran carbon and graphite carbon; Carbon Letters; 27; (72-80); (2018); p 72.

Fugen Daver; Mladenko Kajtaz, Milan Brandt, Robert A. Shanks: Creep and Recovery Behaviour of Polyolefin-Rubber Nanocomposites Developed for Additive Manufacturing; Polymers; 8; (12); (2016); p.437.

O.K. Garishin, V.V. Shadrin, Yu.V. Kornev: MECHANICAL STUDIES OF RUBBER MICRO- AND NANOCOMPOSITES PROMISING FOR THE TIRE INDUSTRY. UNIAXIAL AND BIAXIAL TESTS; Materials Physics and Mechanics; 42; (2019); p.445.

Shu-Wei Song, Zhongyuan Li, Hong Zhao, Peihong Zhang, Baozhong Han, Mingli Fu, and Shuai Hou: Electric field control in DC cable test termination by nano-silicone rubber composite; AIP ADVANCES; 7; (2017); ID: 075105; 2158-3226/2017/7(7)/075105/167, 075105-1.

HAN Jibin, CHEN Wenquan, ZHANG Shijia, WANG Yuan, Han Lili, Liu shuya, Tian Hongchi: The Research and Development of Thermoplastic Elastomers; SVOA MATERIALS SCIENCE & TECHNOLOGY; 2; (2); (2020); p.34.

K.Rajkumar, Chandresh D., P. Thavamani, P.Pazhanisamy and P.Jeyanthi: Physico-mechanical and Thermal properties of Hydrogenated Nitrile Rubber based polymer Nano silica composites; International Journal of Scientific & Engineering Research; 5, (2), (2014), p.856.

K C Lee, N A Md Yusoff, N Othman, N A Mohamad Aini: Effect of vulcanization temperature on curing characteristic, physical and mechanical properties of natural rubber/palygorskite composites; Innovation in Polymer Science and Technology 2016 (IPST 2016); IOP Conf. Series: Materials Science and Engineering; 223; (2017) ID: 012017.


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