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Structure-properties relationship of hybrid talc/calcium carbonate filled impact modified PVC composites

机译:混杂滑石/碳酸钙填充冲击改性PVC复合材料的结构-性能关系

摘要

The main objective of this study was to investigate and compare the mechanical properties and processability of single-filler and hybrid poly(vinyl chloride) (PVC) composites. Calcium carbonate (CaCO3) was used in this study to improve the impact strength of PVC while talc was used to improve stiffness. Filler was added into PVC at a constant loading level of 30phr. SM90 showed the most optimum properties in terms of impact strength and flexural modulus among all grades of CaCO3 selected for hybrid study. Tests specimens were prepared by using dry blending, two roll milling and compression moulding processes. Flexural, impact and tensile tests were then performed to determine and compare the effect of fillers on mechanical properties of PVC composites. Talc filled PVC composite showed the highest flexural modulus but the lowest impact strength. The impact strength of hybrid PVC composites gradually increased with increasing SM90 content, but the flexural modulus showed an opposite behaviour. The flexural strength and impact strength were the highest among the hybrids when the talc/SM90 weight ratio was 20:10. The distribution and dispersion of the fillers in PVC matrix were observed by using SEM. The well dispersion and interfacial adhesion of SM90 and talc particles in PVC matrix had contributed and helped in improving the stiffness and the impact strength of PVC composite. The fusion time of hybrid talc/SM90 filled PVC composite gradually increased as the talc content was gradually replaced by SM90. However, the hybrid (10phr talc: 20phr SM90) filled PVC composite showed the longest fusion time among all PVC composites. TGA, DSC and HDT tests were also carried out to investigate the thermal properties of PVC composites. The incorporation of talc and CaCO3 were found to improve the thermal stability and rigidity of PVC composites.
机译:这项研究的主要目的是研究和比较单填料和杂化聚氯乙烯(PVC)复合材料的机械性能和可加工性。在这项研究中,碳酸钙(CaCO3)用于提高PVC的冲击强度,而滑石则用于提高刚度。将填料以30phr的恒定负载量添加到PVC中。在为混合研究选择的所有等级的CaCO3中,SM90在冲击强度和弯曲模量方面均表现出最佳性能。通过使用干混,两次碾磨和压缩成型工艺来制备测试样品。然后进行弯曲,冲击和拉伸试验,以确定和比较填料对PVC复合材料机械性能的影响。滑石粉填充的PVC复合材料显示出最高的挠曲模量,但冲​​击强度最低。杂化PVC复合材料的冲击强度随着SM90含量的增加而逐渐增加,但弯曲模量却表现出相反的行为。当滑石/ SM90重量比为20:10时,抗折强度和冲击强度最高。用SEM观察填料在PVC基体中的分布和分散情况。 SM90和滑石颗粒在PVC基体中的良好分散性和界面粘附性有助于改善PVC复合材料的刚度和冲击强度。随着滑石含量逐渐被SM90取代,混合滑石/ SM90填充PVC复合材料的熔融时间逐渐增加。然而,在所有PVC复合材料中,杂化材料(10phr滑石粉:20phr SM90)填充的PVC复合材料显示出最长的熔融时间。还进行了TGA,DSC和HDT测试以研究PVC复合材料的热性能。发现掺入滑石粉和CaCO3可以改善PVC复合材料的热稳定性和刚性。

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