会议论文详细信息
37th Risø International Symposium on Materials Science
Interlaminar interaction in paper thermoplastic laminate composites
Prambauer, M.^1,2 ; Paulik, C.^2 ; Burgstaller, C.^1
Transfercenter für Kunststofftechnik GmbH, Franz-Fritsch-Straße 11, Wels
4600, Austria^1
Institute for Chemical Technology of Organic Materials, Johannes Kepler University, Altenbergerstr. 69, Linz
4040, Austria^2
关键词: Bio-based composites;    Composite properties;    Interfacial interaction;    Laminate composites;    Laminate properties;    Polypropylene composite;    Reinforcing effects;    Thermoplastic materials;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/139/1/012042/pdf
DOI  :  10.1088/1757-899X/139/1/012042
来源: IOP
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【 摘 要 】

Bio-based composites are a research topic since several decades, which aims for sustainable and durable materials. In the scope of this research, many different sources for biobased reinforcements have been investigated. Typical issues associated with the use of such are property variations due to cultivation area and climate, besides the influences of the type, pretreatment and fibre geometry. Another issue can be the availability of such natural fibres. Due to these reasons, we started using paper sheets as reinforcements in laminate composites with thermoplastic materials. In preliminary studies with polypropylene composites, we found good mechanical properties, even higher than could be expected by estimating the composite properties from the constituents by applying simple rule of mixtures type models. We suspect, besides some effect of paper compaction, interlaminar effects to be the reason for this. Therefore, the aim of this work is to investigate the effects of the interfacial interaction on the different paper laminate properties due to different matrix polymers. For this work, we used polypropylene, polyamide 6 and 12 as well as polystyrene. Composites were produced via compression moulding and samples for mechanical testing and density evaluation were cut from the moulded plates. The results from mechanical tests show, that there is a reinforcing effect, regardless of matrix polymer used. Simple rule of mixtures evaluations show, that the different matrices exhibit different degrees of interaction, based on their chemical structure. In addition, also influences due to processing were found.

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