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Microfibrillar reinforced composites from PET/LDPE blends: Morphology and mechanical properties

机译:PET / LDPE共混物的微纤维增强复合材料:形貌和力学性能

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摘要

Microfibrillar reinforced composites (MFC) comprising an isotropic matrix from a lower melting polymer, i.e., low density polyethylene (LDPE), reinforced by microfibrils of a higher melting polymer, recycled from bottles, i.e., poly(ethylene terephthalate) (PET), were processed under industrially relevant conditions via injection molding in a weight (wt) ratio of PET/LDPE equal to 30/70 and 50/50, respectively. Dogbone samples with MFC structure were characterized by means of light microscopy (LM), scanning (SEM), and transmission (TEM) electron microscopy, and mechanical testing. The SEM observations of cryogenic fracture surfaces show an isotropic LDPE matrix reinforced by more or less randomly distributed PET microfibrils while LM and TEM on thin slices indicate on orientation in machine direction. By means of TEM on stained ultrathin slices, one observes the formation of transcrystalline layers of the LDPE matrix on the surface of the PET microfibrils where the crystalline lamellae are parallel to each other and are placed perpendicularly to the fibril surfaces. By this transcrystallization and the relatively high aspect ratio of the fibrils (at least 50), the impressive mechanical properties of the injection-molded samples can be explained. The elastic modulus is about 10 times higher than that of LDPE and about three times higher than LDPE reinforced with glass spheres, approaching the modulus of LDPE reinforced with 30 wt% short-glass fibers (GF). The tensile strength is at least two times higher than that of LDPE or of LDPE reinforced with glass spheres, approaching that of LDPE reinforced with 30 wt% GF.
机译:包含由低熔点聚合物(即低密度聚乙烯(LDPE),由高熔点聚合物的微纤维增强,从瓶子,即聚对苯二甲酸乙二醇酯(PET))回收的各向同性基质组成的微纤维增强复合材料(MFC)在工业上相关的条件下,通过注塑将PET / LDPE的重量(wt)比率分别等于30/70和50/50进行加工。通过光学显微镜(LM),扫描(SEM)和透射(TEM)电子显微镜以及机械测试来表征具有MFC结构的狗骨样品。低温断裂表面的SEM观察显示,各向同性的LDPE基质由或多或少随机分布的PET微纤维增强,而薄片上的LM和TEM则表明其在纵向上的取向。通过TEM对染色的超薄切片进行观察,可以观察到LDPE基质的跨晶层在PET微纤丝的表面上形成,其中结晶薄片彼此平行并垂直于纤丝表面放置。通过这种转结晶和原纤维相对较高的长径比(至少50),可以解释注塑样品令人印象深刻的机械性能。弹性模量比LDPE高约10倍,比用玻璃球增强的LDPE高约3倍,接近由30wt%的短玻璃纤维(GF)增强的LDPE的模量。拉伸强度至少比LDPE或玻璃球增强的LDPE高出两倍,接近30%(重量)GF增强的LDPE。

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