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Enhanced mechanical and thermal properties of electrically conductive TPNR/GNP nanocomposites assisted with ultrasonication

机译:具有超声波辅助导电TPNR / GNP纳米复合材料的增强的机械和热性能

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Thermoplastic natural rubber (TPNR) was compounded with graphene nanoplatelets (GNP) via ultrasonication and melt blending. The effects of ultrasonication period (1-4 hours) and GNP weight fraction (0.5, 1.0, 1.5 and 2.0 wt.%) on the mechanical, thermal and conductivity properties were investigated. Results showed that the 3 hours of ultrasonic treatment on LNR/GNP gave the greatest improvement in tensile strength of 25.8% (TPNR/GNP nanocomposites) as compared to those without ultrasonication. The TPNR nanocomposites containing 1.5 wt.% GNP exhibited the highest strength (16 MPa for tensile, 14 MPa for flexural and 11 kJm -2 for impact) and modulus (556 MPa and 869 MPa for tensile and flexural, respectively). The incorporation of GNP had enhanced the thermal stability. It can be concluded that the GNP had imparted the thermally and electrically conductive nature to the TPNR blend.
机译:热塑性天然橡胶(TPNR)通过超声波和熔融共混配含有石墨烯纳米片(GNP)。 研究了超声周期(1-4小时)和GNP重量级分(0.5,1.0,1.5和2.0重量%)对机械,热和导电性能的影响。 结果表明,与没有超声的情况相比,LNR / GNP对LNR / GNP的3小时超声处理的最大提高率为25.8%(TPNR / GNP纳米复合材料)。 含有1.5重量%的TPNR纳米复合材料。%GNP的最高强度(用于弯曲的拉伸,14MPa的16MPa,抗冲击的11 kJm -2)和模量(分别为拉伸和弯曲的556MPa和869MPa)。 GNP的掺入增强了热稳定性。 可以得出结论,GNP赋予TPNR混合物的热和导电性。

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