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关于优化高压釜固化周期以提高预浸碳-环氧层压板力学性能的实验研究

Experimental Study on the Optimization of the Autoclave Curing Cycle for the Enhancement of the Mechanical Properties of Prepreg Carbon-Epoxy Laminates.

作者信息

Rusnáková Soňa, Grunt Michal, Žaludek Milan, Javořík Jakub, Kotlánová Barbora

机构信息

Department of Production Engineering, Faculty of Technology, Tomas Bata University in Zlín, Vavrečkova 5669, 76001 Zlín, Czech Republic.

出版信息

Polymers (Basel). 2023 Dec 22;16(1):47. doi: 10.3390/polym16010047.

Abstract

In this study, the influence of the technological parameters of autoclave curing on the resulting mechanical properties of laminates was investigated. The main criterion for optimizing the curing was to extend the processing window with a lower prepreg viscosity. At the same time, the issue of setting the pressure level before the heat ramp to the final cure temperature was also addressed. An experimental method of measuring the indentation viscosity of the prepreg was used to determine the viscosity profile. Despite the experimental nature of the method, the reliability of this method for rapid approximate identification of the processing window of the prepreg was verified by the results of the study. Several laminates with the same ply orientation were produced using the selected cure cycles, from which test specimens were cut with a water jet and inspected by confocal microscopy. The mechanical properties of tension and flexure were measured within the individual curing cycles using tests according to ISO standards. The data reported demonstrate that the experimental method of optimizing the curing parameters has successfully increased the selected mechanical properties. The resulting mechanical properties of the laminates were enhanced by up to 20% compared to the non-optimized cure cycle. The influence of the type of cure cycle on the resulting thickness of the cured laminate was evaluated in this study.

摘要

在本研究中,研究了高压釜固化工艺参数对层压板最终力学性能的影响。优化固化的主要标准是在较低预浸料粘度的情况下扩大加工窗口。同时,还探讨了在升温至最终固化温度之前设定压力水平的问题。采用一种测量预浸料压痕粘度的实验方法来确定粘度曲线。尽管该方法具有实验性质,但研究结果验证了该方法用于快速近似识别预浸料加工窗口的可靠性。使用选定的固化周期生产了几种具有相同铺层取向的层压板,用喷水切割从中切割出测试试样,并通过共聚焦显微镜进行检查。在各个固化周期内,根据ISO标准进行测试,测量拉伸和弯曲的力学性能。报告的数据表明,优化固化参数的实验方法成功提高了选定的力学性能。与未优化的固化周期相比,层压板的最终力学性能提高了20%。本研究评估了固化周期类型对固化层压板最终厚度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59d1/10780937/b6bc0bac0822/polymers-16-00047-g001.jpg

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