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注塑成型PP/PET-纳米原纤复合材料及泡沫材料的力学性能

Mechanical Properties of Injection Molded PP/PET-Nanofibril Composites and Foams.

作者信息

Mark Lun Howe, Zhao Chongxiang, Chu Raymond K M, Park Chul B

机构信息

Microcellular Plastics Manufacturing Laboratory, Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, ON M5S 3G8, Canada.

SABIC Limburg B.V., 6167 RD Geleen, The Netherlands.

出版信息

Polymers (Basel). 2022 Jul 21;14(14):2958. doi: 10.3390/polym14142958.

Abstract

The creation and application of PET nanofibrils for PP composite reinforcement were studied. PET nanofibrils were fibrillated within a PP matrix using a spunbond process and then injection molded to test for the end-use properties. The nanofibril reinforcement helped to provide higher tensile and flexural performance in solid (unfoamed) injection molded parts. With foam injection molding, the nanofibrils also helped to improve and refine the microcellular morphology, which led to improved performance. Easily and effectively increasing the strength of a polymeric composite is a goal for many research endeavors. By creating nanoscale fibrils within the matrix itself, effective bonding and dispersion have already been achieved, overcoming the common pitfalls of fiber reinforcement. As blends of PP and PET are drawn in a spunbond system, the PET domains are stretched into nanoscale fibrils. By adapting the spunbonded blends for use in injection molding, both solid and foamed nanocomposites are created. The injection molded nanocomposites achieved increased in both tensile and flexural strength. The solid and foamed tensile strength increased by 50 and 100%, respectively. In addition, both the solid and foamed flexural strength increased by 100%. These increases in strength are attributed to effective PET nanofibril reinforcement.

摘要

研究了用于聚丙烯(PP)复合材料增强的聚对苯二甲酸乙二酯(PET)纳米纤维的制备及应用。PET纳米纤维在PP基体中通过纺粘工艺形成原纤化结构,然后注塑成型以测试其最终使用性能。纳米纤维增强有助于在实心(未发泡)注塑部件中提供更高的拉伸和弯曲性能。对于发泡注塑成型,纳米纤维也有助于改善和细化微孔形态,从而提高性能。轻松有效地提高聚合物复合材料的强度是许多研究工作的目标。通过在基体本身内部形成纳米级原纤,已经实现了有效的粘结和分散,克服了纤维增强的常见缺陷。当PP和PET共混物在纺粘系统中拉伸时,PET区域被拉伸成纳米级原纤。通过将纺粘共混物用于注塑成型,可制备实心和发泡纳米复合材料。注塑成型的纳米复合材料的拉伸强度和弯曲强度均有所提高。实心和发泡材料的拉伸强度分别提高了50%和100%。此外,实心和发泡材料的弯曲强度均提高了100%。这些强度的提高归因于有效的PET纳米纤维增强作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f484/9315760/eb297f40eb05/polymers-14-02958-g0A1.jpg

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