首页> 外文期刊>Rubber Chemistry and Technology >EFFECT OF ORGANICALLY MODIFIED MONTMORILLONITE CLAY ON MORPHOLOGICAL, PHYSICOMECHANICAL, THERMAL STABILITY, AND WATER VAPOR TRANSMISSION RATE PROPERTIES OF BIIR-CO RUBBER NANOCOMPOSITE
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EFFECT OF ORGANICALLY MODIFIED MONTMORILLONITE CLAY ON MORPHOLOGICAL, PHYSICOMECHANICAL, THERMAL STABILITY, AND WATER VAPOR TRANSMISSION RATE PROPERTIES OF BIIR-CO RUBBER NANOCOMPOSITE

机译:有机改性蒙脱土对BiIR-CO橡胶纳米复合材料的形态,物理力学,热稳定性和水蒸气透过率特性的影响

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摘要

Rubber nanocomposites based on bromobutyl rubber (BM), polyepichlorohydrin rubber (CO), carbon black (CB), and organically modified montmorillonite clay (NC) were prepared via melt compounding technique. Effects of NC dosage on various properties of the developed BIIR-CO nanocomposites were studied. Morphological characteristics of the BIIR-CO nanocomposite revealed a good level of clay dispersion. Scanning electron microscopy analyses of the tensile fractured surfaces of the nanocomposites revealed the existence of a good interaction between NC-CB. Hybrid microstructure development between NC and CB, clay exfoliation, and improved filler dispersion in the quatemary nanocomposite significantly contributed to the overall enhancement of properties. The addition of nanoclay increases the modulus up to 54%, tear strength up to 20%, and other physicomechanical properties of the rubber nanocomposite. However, higher nanoclay dose results in the agglomeration of clay particles predominantly. An increase in the volume fraction of nanoclay platelets depreciates the thermal degradation of the BIIR-CO nanocomposites. The tortuous path offered by NC is pivotal in the significant reduction in the water vapor transmission rate (up to 30% reduction). Contact angle measurements reveal the importance of nanoclay dispersion in subsiding the surface hydrophilic nature of the nanocomposite.
机译:通过熔融混合技术制备了基于溴化丁基橡胶(BM),聚表氯醇橡胶(CO),炭黑(CB)和有机改性的蒙脱土(NC)的橡胶纳米复合材料。研究了NC用量对已开发的BIIR-CO纳米复合材料各种性能的影响。 BIIR-CO纳米复合材料的形态学特征显示出良好的粘土分散水平。纳米复合材料拉伸断裂表面的扫描电子显微镜分析表明,NC-CB之间存在良好的相互作用。 NC和CB之间的混合微观结构发展,粘土剥落以及改进的填料在四方纳米复合材料中的分散性,显着促进了性能的整体提高。纳米粘土的添加使橡胶纳米复合材料的模量提高至54%,撕裂强度提高至20%,以及其他物理机械性能。然而,较高的纳米粘土剂量主要导致粘土颗粒的附聚。纳米粘土血小板体积分数的增加降低了BIIR-CO纳米复合材料的热降解。 NC提供的曲折路径对于显着降低水蒸气透过率(最多降低30%)至关重要。接触角测量揭示了纳米粘土分散体在掩盖纳米复合材料的表面亲水性方面的重要性。

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