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Flow-induced morphology evolution of uniformly miniaturized high-density polyethylene parts prepared by micro-injection molding

机译:通过微注射成型制备的均匀小型化高密度聚乙烯零件的流致形态演变

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摘要

The morphology evolution of thermoplastics made by micro-injection molding (μIM) in a uniform miniaturization manner has not been documented yet. In the present study, the crystal morphologies within μIM high-density polyethylene parts were investigated with the aid of rheology measurement, polarizing optical microscopy, scanning electron microscopy, and differential scanning calorimetry. It was discovered that unlike conventional injection molded parts with spherulites predominating, uniformly miniaturized products have highly oriented lamellae starting to appear in the skin layer. For 175-μm-thick μIM parts (M175), interlocking shish-kebab structures exist through-out the thickness. Furthermore, the origins of different crystal morphologies with various part thicknesses were discussed mainly from the viewpoints of rheology and thermodynamics. It was revealed that the flow-induced crystallization is one of the key factors responsible for the unique super structures. More quantitatively, there is a critical shear rate of 3.0×10~5 s~(-1) existing for forming highly oriented molecular structures. Meanwhile, on the basis of the model from the literature, an elongational rate as high as 4.4× 10~4 s~(-1) was also identified at the channel center for M175.
机译:尚未记录通过微注射成型(μIM)以均匀的小型化方式制造的热塑性塑料的形态演变。在本研究中,借助流变学测量,偏振光学显微镜,扫描电子显微镜和差示扫描量热法研究了μIM高密度聚乙烯零件中的晶体形态。已经发现,与传统的以球晶为主的注射成型部件不同,均匀小型化的产品具有高度取向的薄片,该薄片开始出现在表皮层中。对于厚度为175μm的μIM零件(M175),在整个厚度范围内都存在互锁的烤肉串结构。此外,主要从流变学和热力学的角度讨论了具有不同部件厚度的不同晶体形态的起源。结果表明,流致结晶是造成独特的超结构的关键因素之一。更定量地,存在用于形成高度取向的分子结构的临界剪切速率为3.0×10〜5 s〜(-1)。同时,根据文献中的模型,在M175的通道中心还发现了高达4.4×10〜4 s〜(-1)的伸长率。

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