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Polypropylene composites reinforced with hybrid inorganic fillers: Morphological, mechanical, and rheological properties

机译:用杂交无机填料加固聚丙烯复合材料:形态,机械和流变性能

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摘要

Mineral fillers like talc and mica are commonly used in the plastic industry because of their tendency to alter the properties of thermoplastic materials. Polypropylene (PP)-talc (PTC), PP-mica (PMC), and PP-talc/mica hybrid composites (PHC) were prepared. Results indicated that filler particle size, type, and content greatly influence the mechanical and rheological properties of the composites. Shear viscosity decreased with the increase in shear rate. At 40 degrees C, an increase of approximately 120% in storage modulus (E) was observed in PMC composites. C parameter increased, whereas reinforcing efficiency (r) decreased with the increase in filler loading. Percent elongation of each type of composites decreased with the increase in filler loading. Tensile modulus of PTC composite increased significantly by 103% (571 MPa) at 20% loading of talc, whereas for PHC and PMC composites, increase of 93% (543 MPa) and 81% (511 MPa) was observed. Flexural modulus also increased considerably by 88% (2413 MPa), 80% (2313 MPa), and 62% (2084 MPa) of PTC, PHC, and PMC composites at 20% filler loading.
机译:矿物填料如滑石和云母通常用于塑料行业,因为它们改变热塑性材料性能的趋势。制备聚丙烯(PP) - 钛(PTC),PP-MICA(PMC)和PP-TALC /云母杂化复合材料(PHC)。结果表明,填料粒径,型和含量大大影响了复合材料的机械和流变性质。随着剪切速率的增加,剪切粘度降低。在40℃下,在PMC复合材料中观察到储存模量(e)的增加约120%。 C参数增加,而增强效率(R)随填料载荷的增加而降低。随着填料载荷的增加,每种复合材料的伸长率下降。 PTC复合材料的拉伸模量显着增加了103%(571MPa)的滑石,而对于PHC和PMC复合材料,观察到增加93%(543MPa)和81%(511MPa)。弯曲模量也大大增加了88%(2413MPa),80%(2313MPa)和62%(2084MPa)的PTC,PHC和PMC复合材料,在20%填充物负载下。

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