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首页> 外文期刊>Indian Journal of Chemical Technology >Mechanical and morphological properties of halloysite nanotubes filled ethylene-vinyl acetate copolymer nanocomposites
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Mechanical and morphological properties of halloysite nanotubes filled ethylene-vinyl acetate copolymer nanocomposites

机译:埃洛石纳米管填充乙烯-醋酸乙烯共聚物纳米复合材料的力学和形貌性能

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The EVAIHNTs nanocomposites have been synthesized by solution casting technique with 0, 2.5, 5.0, 7.5 and 10 phr HNTs loading. The mechanical properties, thermal decomposition, dynamic mechanical properties of these nanocomposites are reported. The scorch time, cure time and maximum torque increases marginally on the loading of HNTs; however the curing rate index decreases. The interactions between EVA matrix and filler HNTs are evaluated by the Fourier transform infrared spectroscopy (FTIR) study. The SEM images of cryogenically fractured EVAIHNTs nanocomposites show that the roughness of the fracture surface increases with the increase in HNTs loading. The effects of HNTs loading on tensile strength, elongation break and tensile modulus of these nanocomposites have also been reported. The tensile strength and elongation break of nanocomposites increases with increase in HNTs loading up to 5phr and afterwards a decreasing trend is observed. The tensile modulus shows an increasing trend up to 5phr and decreases up to 7.5phr HNTs loading. The good dispersion of HNTs into the EVA matrix is validated by SEM analysis. The tan delta(max) values of nanocomposites decreases up to 5phr HNTs loading and then increases which may be due to filler-filler interaction at higher HNTs loading.
机译:采用溶液铸造技术合成了负载量为0、2.5、5.0、7.5和10 phr HNTs的EVAIHNTs纳米复合材料。报道了这些纳米复合材料的力学性能、热分解性能、动态力学性能。焦烧时间、固化时间和最大扭矩随HNT的加载而略有增加;然而,固化率指数下降。通过傅里叶变换红外光谱(FTIR)研究评估了EVA基质和填充剂HNT之间的相互作用。低温断裂EVAIHNTs纳米复合材料的SEM照片表明,随着HNTs负载的增加,断裂面的粗糙度增加。HNTs负载对这些纳米复合材料的拉伸强度、伸长率断裂和拉伸模量的影响也有报道。纳米复合材料的拉伸强度和伸长断裂率随着HNTs的增加而增加,最高可达5phr,随后呈下降趋势。拉伸模量呈增加趋势,最高可达 5phr,而 HNTs 负载量则降低至 7.5phr。通过SEM分析验证了HNTs在EVA基质中的良好分散性。纳米复合材料的tan delta(max)值减少多达5phr HNTs负载,然后增加,这可能是由于在较高HNTs负载下填料-填料相互作用。

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