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首页> 外文期刊>Journal of Applied Polymer Science >Mechanical Properties of Polystyrene-Montmorillonite Nanocomposites-Prepared by Melt Intercalation
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Mechanical Properties of Polystyrene-Montmorillonite Nanocomposites-Prepared by Melt Intercalation

机译:熔融插层法制备聚苯乙烯-蒙脱土纳米复合材料的力学性能

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A series of polymer-clay nanocomposite (PCN) materials, consisting of thermoplastic polystyrene (PS) sample and dispersing inorganic organoclay platelets, were successfully prepared. First, organoclay was prepared by performing cationic exchange reactions between the sodium ions existing in the interlayer region of the clay mineral and intercalation agent, followed by dispersing the organophilic clay into a PS basis through the melt intercalation approach performed by a twin-screw mixing method. The as-prepared PCN materials in the form of a pellet subsequently characterized using the powder X-ray diffraction (XRD) and the transmission electron microscopy (TEM). In this study, it is found that the wear resistance of PS to be effectively enhanced by the incorporation of low loading organophilic clay platelets. The surface morphological image for the neat PS and PS-clay after a wear resistance test has also been compared and identified by the scanning electron microscopy (SEM). Furthermore, the effect of organoclay on three other different measurement types of mechanical properties for as-prepared PCN materials, e.g., flexural tests, impact tests, and micron-nano indenter tests were performed and compared. Generally, PCN materials exhibited an obvious enhancement of mechanical properties of neat polymer by an incorporated low loading of organophilic clay platelets into a polystyrene matrix used for the evaluation of mechanical properties as-prepared samples. For example, mechanical strength (excepting flexural strength) almost remain same beyond 3 wt % clay loading in PS, whereas much detrimental effect being observed in the wear loss in case of PCNs with 5 wt % clay than 3 wt %.
机译:成功制备了一系列由热塑性聚苯乙烯(PS)样品和分散无机有机粘土薄片组成的聚合物-粘土纳米复合材料(PCN)。首先,通过在粘土矿物的夹层区域中存在的钠离子与嵌入剂之间进行阳离子交换反应,然后通过双螺杆混合法进行的熔融嵌入方法,将亲有机性粘土分散到PS基质中来制备有机粘土。 。制成的颗粒形式的PCN材料随后使用粉末X射线衍射(XRD)和透射电子显微镜(TEM)进行表征。在这项研究中,发现通过掺入低负荷亲有机性粘土血小板可以有效提高PS的耐磨性。经过耐磨性测试后,还比较了纯PS和PS粘土的表面形态图像,并通过扫描电子显微镜(SEM)进行了鉴定。此外,进行了有机粘土对所制备的PCN材料的三种其他不同机械性能测量类型的影响,例如弯曲试验,冲击试验和微米-纳米压头试验,并进行了比较。通常,PCN材料通过将低亲有机性粘土血小板掺入到聚苯乙烯基体中以用于评估制备的样品的机械性能,显示出明显的纯聚合物机械性能增强。例如,在PS中粘土含量超过3 wt%时,机械强度(抗弯强度除外)几乎保持不变,而对于PCN含量为5 wt%而不是3 wt%的PCN,在磨损损失中观察到了很多不利影响。

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