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Halloysite Nanotubes/Natural Rubber (Hnts/Nr) Nanocomposites: Preparation And Properties

机译:埃洛石纳米管/天然橡胶(Hnts / Nr)纳米复合材料:制备与性能

摘要

This research focused on the effect of various HNTs loading on the properties of natural rubber nanocomposites. Series (1), HNTs filled in two types of natural rubber i.e., unmodified and modified natural rubber namely SMR L and ENR 50 respectively were investigated. In Series (2), the study of partial replacement of HNTs with carbon black (CB) as hybrid fillers was studied. Lastly in Series (3), the study regarding different type of mixing methods i.e., mechanical and solution mixing methods were compared. Conventional vulcanization (CV) system has been selected in this research and laboratory two-roll mill was used for mixing process. The studied properties in this research includes curing characteristics, mechanical properties, swelling percentage, fatigue life, thermal stability and morphological properties of HNTs filled natural rubber. Mosanto Moving Die Rheometer (MDR 2000) with temperature at 150°C was used to determine curing characteristics for nanocomposites. In Series (1), optimum tensile strength of HNTs/SMR L and HNTs/ENR 50 nanocomposites was achieved with 20 phr. Thermal stability increased with addition of HNTs in both nanocomposites. In Series (2), tensile strength, tensile modulus and thermal stability of nanocomposites increased. In Series (3), solution mixing method nanocomposites showed higher tensile strength, tensile modulus and fatigue life at any HNTs loading. Generally, the SEM images showed that lower HNTs loading can be dispersed uniformly in matrix but bad and poor dispersion was observed at higher HNTs loading.
机译:这项研究的重点是各种HNT负载对天然橡胶纳米复合材料性能的影响。在系列(1)中,研究了填充两种类型天然橡胶的HNT,即未改性和改性天然橡胶分别为SMR L和ENR 50。在系列(2)中,研究了用炭黑(CB)作为杂化填料部分替代HNT的研究。最后,在系列(3)中,比较了有关不同类型混合方法(即机械混合和溶液混合方法)的研究。本研究选择了常规硫化(CV)系统,并使用实验室两辊磨机进行混合。这项研究中所研究的特性包括硫化氢填充天然橡胶的硫化特性,机械特性,溶胀百分比,疲劳寿命,热稳定性和形态学特性。使用温度为150°C的Mosanto移动模具流变仪(MDR 2000)确定纳米复合材料的固化特性。在系列(1)中,HNT / SMR L和HNT / ENR 50纳米复合材料的最佳拉伸强度为20 phr。在两种纳米复合材料中添加HNT都会提高热稳定性。在系列(2)中,纳米复合材料的拉伸强度,拉伸模量和热稳定性提高。在系列(3)中,溶液混合法纳米复合材料在任何HNT负载下均显示出更高的拉伸强度,拉伸模量和疲劳寿命。通常,SEM图像显示较低的HNT装载量可以均匀地分散在基质中,但是在较高的HNT装载量下观察到差且差的分散。

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    Salleh Siti Zuliana;

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  • 年度 2012
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