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Effect of Multi-Level Microstructure on Local and Bulk Mechanical Properties in Micro-Injection Molded PC/PET Blend

机译:多级微观结构对微注塑模型PC / PET混合物中局部和块状机械性能的影响

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摘要

This study introduces a method to investigate the relationship between the multi-level microstructures and mechanical properties of polymer blends prepared by micro-injection molding (mu IM). Special morphological features were systematically researched. Polycarbonate (PC), poly(ethylene terephthalate) (PET), and PC/PET microparts all exhibit typical "skin-core" morphologies. The thickness of the core layer is much greater than that of the skin layer, and the thickness of the skin layer gradually decreases along the flow direction. Photoacoustic Fourier transform infrared spectroscopy records reveal that the PC molecular chain has the biggest orientation degree, followed by PC/PET and PET chains under the same mu IM processing conditions. Moreover, the molecular chains orientation in the skin layer is more than 50% that in the core layer. Nanoindentation tests are conducted to study local mechanical properties. The higher modulus in the shear layer is affected to a greater extent by high shear action in comparison with the frozen and core layers. Uniaxial tensile testing demonstrates that the tensile strength of PC/PET micropart is 15.5% higher than that of the PET micropart, while the toughness is 16% higher than that of the PC microparts. In-situ, high- speed tensile imaging, combined with scanning electron microscopy micrographs of the fracture section, are used to study the fracture behaviors of the microparts. The results gathered in this paper may provide a theoretical basis and data to support the feasibility and efficiency of micro-injection molded polymer blends.
机译:本研究介绍了一种研究通过微注射成型(MU IM)制备的多级微观结构和聚合物共混物的机械性能之间的关系的方法。系统地研究了特殊形态特征。聚碳酸酯(PC),聚(对苯二甲酸乙二醇酯)(PET),和PC / PET微氨酸全部表现出典型的“皮肤核心”形态。芯层的厚度远大于表层的厚度,并且皮肤层的厚度沿流动方向逐渐减小。光声傅里叶变换红外光谱记录揭示了PC分子链具有最大的定向度,其次是PC / PET和PET链在相同的MU IM处理条件下。此外,皮肤层中的分子链取向大于芯层中的50%。进行纳米狭窄试验以研究局部机械性能。与冷冻和芯层相比,通过高剪切动作,剪切层中的较高模量受到更大的影响。单轴拉伸检测表明,PC / PET微剧的拉伸强度高于PET微珠的15.5%,而韧性比PC微粉的韧性高16%。原位,高速拉伸成像,与骨折部分的扫描电子显微镜显微照片相结合,用于研究微粉的裂缝行为。本文收集的结果可以提供理论基础和数据,以支持微注塑成型聚合物共混物的可行性和效率。

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