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工艺参数对挤出成型生物基及可生物降解连续纤维增强热塑性片材力学性能的影响研究

Investigation on the Influence of Process Parameters on the Mechanical Properties of Extruded Bio-Based and Biodegradable Continuous Fiber-Reinforced Thermoplastic Sheets.

作者信息

Lang Maximilian, Neitzel Benedikt, MohammadKarimi Shiva, Puch Florian

机构信息

Plastics Technology Group, Faculty of Mechanical Engineering and Thuringian Center of Innovation in Mobility, Technische Universität Ilmenau, 98693 Ilmenau, Germany.

Thüringisches Institut für Textil- und Kunststoff-Forschung Rudolstadt e.V., 07407 Rudolstadt, Germany.

出版信息

Polymers (Basel). 2023 Sep 20;15(18):3830. doi: 10.3390/polym15183830.

Abstract

The use of bio-based and biodegradable matrix materials in fiber-reinforced polymers (FRPs) is an approach to reduce the consumption of fossil resources and the amount of polymer waste. This study aims to assess the influence of the process parameters on the resulting mechanical properties of extruded bio-based and biodegradable continuous fiber-reinforced thermoplastics (CFRTPs) in the form of sheets. Therefore, the impregnation temperature during the production of PLA/flax fiber composites is varied between 220 °C and 280 °C, and the consolidation pressure, between 50 bar and 90 bar. A design of experiments approach is used. Fiber contents of 28.8% to 34.8% and void contents of 6.8% to 15.5% are determined for the composites by optical measurements. To assess the mechanical properties, tensile tests are performed. Using the evaluation software Minitab, a strong negative influence of the consolidation pressure on the tensile modulus and the tensile strength is observed. Increasing the pressure from 50 bar to 90 bar results in a reduction in the tensile modulus of 50.7% and a reduction in the tensile strength of 54.8%, respectively. It is assumed that this is due to fibers being damaged by the external force exerted onto the materials during the consolidation process in the calender. The influence of the impregnation temperature on the mechanical properties cannot be verified.

摘要

在纤维增强聚合物(FRP)中使用生物基和可生物降解的基体材料是一种减少化石资源消耗和聚合物废料量的方法。本研究旨在评估工艺参数对以片材形式挤出的生物基和可生物降解连续纤维增强热塑性塑料(CFRTP)最终机械性能的影响。因此,聚乳酸/亚麻纤维复合材料生产过程中的浸渍温度在220℃至280℃之间变化,而固结压力在50巴至90巴之间变化。采用实验设计方法。通过光学测量确定复合材料的纤维含量为28.8%至34.8%,孔隙率为6.8%至15.5%。为评估机械性能,进行了拉伸试验。使用评估软件Minitab,观察到固结压力对拉伸模量和拉伸强度有强烈的负面影响。将压力从50巴增加到90巴分别导致拉伸模量降低50.7%和拉伸强度降低54.8%。据推测,这是由于在压延机固结过程中施加在材料上的外力损坏了纤维。浸渍温度对机械性能的影响无法得到验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cd8/10534569/e8be17a0d49a/polymers-15-03830-g001.jpg

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