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首页> 外文期刊>Journal of Applied Polymer Science >Effect of nanoclay content and matrix composition on properties and stress-strain behavior of NR/EPDM nanocomposites
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Effect of nanoclay content and matrix composition on properties and stress-strain behavior of NR/EPDM nanocomposites

机译:纳米粘土含量和基体组成对NR / EPDM纳米复合材料性能和应力应变行为的影响

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Nanocomposites based on NR/EPDM/Cloisite 15A have been prepared via a vulcanization process to investigate the effect of nanoclay content and rubber composition on the properties of samples. The prepared nanocomposite samples are characterized by several techniques. The experimental results of X-ray diffraction and transmission electron microscopy showed the widening of distance between the silicate layers, penetration of polymer chains into silicate layers, and formation of an intercalated and partially exfoliated structure. Results indicated that addition of nanoclay could improve the mechanical strength of the rubber. Also increase of nanoclay and EPDM content were found to improve the thermal aging of the samples and also the performance of the rubbers under compression. Nanoclay also reduced the hysteresis and heat build up of the rubber compounds. Moreover, to investigate the stress-strain behavior of NR/EPDM nanocomposites using constitutive models, applicability and best fit of five different hyperelastic constitutive models including second order Polynominal, Yeoh, third order Ogden, Marlow, and Arruda-Boyce against experimental data for NR/EPDManoclay blends were studied. Due to the different amounts of nanoclay (1, 3, 5, and 7 wt %) and different NR/EPDM compositions (100/0), (75/25), (50/50), (25/75), and (0/100), different experimentally measured data of samples were compared with those predicted by the mathematical models previously mentioned. Results showed that third order Ogden and Marlow models can be used for different amounts of nanoclay and rubber compositions, whereas Arruda-Boyce and Yeoh models show more deviation from experimental data with a reduction in nanoclay and increase in EPDM content.
机译:通过硫化工艺制备了基于NR / EPDM / Cloisite 15A的纳米复合材料,以研究纳米粘土含量和橡胶成分对样品性能的影响。制备的纳米复合材料样品通过几种技术表征。 X射线衍射和透射电子显微镜的实验结果表明,硅酸盐层之间的距离变宽,聚合物链渗透到硅酸盐层中,并形成了插层和部分剥离的结构。结果表明,添加纳米粘土可以提高橡胶的机械强度。还发现增加纳米粘土和EPDM的含量可以改善样品的热老化,并改善压缩下橡胶的性能。纳米粘土还减少了胶料的滞后性和热量积聚。此外,使用本构模型研究NR / EPDM纳米复合材料的应力应变行为,二阶多项式,Yeoh,三阶Ogden,Marlow和Arruda-Boyce等五种不同的超弹性本构模型对NR实验数据的适用性和最佳拟合研究了/ EPDM /纳米粘土共混物。由于纳米粘土的含量不同(1、3、5和7 wt%)和不同的NR / EPDM组成(100/0),(75/25),(50/50),(25/75)和(0/100),样品的不同实验测量数据与前面提到的数学模型预测的数据进行了比较。结果表明,三阶Ogden和Marlow模型可用于不同量的纳米粘土和橡胶组合物,而Arruda-Boyce和Yeoh模型显示出与实验数据更大的偏差,其中纳米粘土的减少和EPDM含量的增加。

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