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Tailoring of thermal and mechanical properties of hollow glass bead-filled polypropylene porous Films via stretching ratio and filler content

机译:通过拉伸比和填料含量剪裁空心玻璃珠粒聚丙烯多孔膜的热和力学性能

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The momentous role of hollow glass bead (HGB) fillers to manipulate the thermal and mechanical properties of polymers has become an issue of significant interest. As regards, the scope of this work is oriented to manifest the interplay effects of HGB contents (average size of 60 mu m) and uniaxial stretching ratios (100 and 200%) on HGB-filled bimodal polypropylene (PP) films. SEM micrographs showed that at higher stretching ratio at about 120 degrees C the pore formation was improved which was due to performance of smaller HGB particles. Also increasing the amount of HGBs could notably decrease the permeability of microporous composite films as a result of compaction effect. Moreover, an additional peak in the differential scanning calorimetry of composite films was the nucleating performance of smaller HGB particles. The yielding behavior of the precursor and porous PP samples prepared by hot stretching was analyzed by tensile testing. The results revealed that with the increase in the number of pores, strain softening was faded and eventually completely removed. Therefore, a ductile-brittle transition occurred in the behavior of the polymer. POLYM. COMPOS., 40:2938-2945, 2019. (c) 2018 Society of Plastics Engineers
机译:中空玻璃珠(HGB)填料的主要作用是操纵聚合物的热和机械性能已成为显着兴趣的问题。至于,该工作的范围定向,表现出HGB含量(平均尺寸的60μm)和单轴拉伸比(100和200%)对HGB填充的双峰聚丙烯(PP)膜的相互作用。 SEM显微照片显示,在约120℃的较高拉伸比下,提高了孔隙形成,这是由于较小的HGB颗粒的性能。由于压实效应,同样增加HGB的量可以显着降低微孔复合膜的渗透性。此外,复合膜的差扫描量热法中的附加峰是较小的HGB颗粒的成核性能。通过拉伸试验分析通过热拉伸制备的前体和多孔PP样品的产生行为。结果表明,随着孔隙的增加,褪色菌株软化并最终完全除去。因此,在聚合物的行为中发生延性脆性转变。聚合物。 Compos。,40:2938-2945,2019。(c)2018塑料工程师协会

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