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首页> 外文期刊>Journal of Polymers and the Environment >Evaluation of the Role of Devulcanized Rubber on the Thermo-mechanical Properties of Polystyrene
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Evaluation of the Role of Devulcanized Rubber on the Thermo-mechanical Properties of Polystyrene

机译:评价Devulcanized橡胶对聚苯乙烯热力学性能的作用

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In this paper, different amounts of both devulcanized rubber (DR) and non-devulcanized rubber (NDR) were melt compounded and compression moulded with a brittle thermoplastic matrix such as polystyrene (PS). Scanning electron microscopy observations of the prepared blends showed that the PS/rubber interfacial adhesion, although rather limited, was improved in the case of DR, and that DR domains within the PS matrix had a lower size than NDR particles. Thermogravimetric analysis highlighted that the onset degradation temperature decreased upon the addition of rubber, and the maximum mass loss rate temperature increased. Differential scanning calorimetry tests showed that the glass transition temperature slightly decreased upon addition of DR and NDR. This increase also enhanced the maximum service temperature determined by measuring the Vicat grade. The surface hardness, the tensile modulus and stress at break were negatively affected when recycled rubber was added, because of the limited compatibility between PS and rubber particles and the relatively large size of the rubber domains. A notable increase in material ductility, with an enhancement of the tensile strain at break and of the impact resistance, was detected at elevated rubber amounts. Quite interestingly, mechanical properties of the blends with DR were systematically higher than those of the corresponding blends with NDR.
机译:在本文中,不同量的二硫化橡胶(DR)和非抗透明橡胶(NDR)熔融配混和压缩,用脆性热塑性基质如聚苯乙烯(PS)。制备的混合物的扫描电子显微镜观察结果表明,在DR的情况下,PS /橡胶界面粘附虽然有限,但在DR的情况下得到改善,并且PS基质中的DR结构尺寸低于NDR颗粒。热重分析突出显示,在添加橡胶时发病降解温度降低,最大质量损失率温度增加。差分扫描量热法试验显示,在添加DR和NDR时,玻璃化转变温度略微降低。这种增加还增强了通过测量VICAT等级确定的最大服务温度。由于在PS和橡胶颗粒之间的相容性和相对大的橡胶结构域之间的相容性有限,在加入再循环橡胶时,突破的表面硬度,抗拉模糊和断裂应力受到负面影响。在升高的橡胶量下检测在断裂和抗冲击性处于断裂和抗冲击性的抗拉应变的显着增加。非常有趣的是,用DR的混合物的机械性能系统地高于与NDR的相应混合物的机械性质。

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