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基于 Mater-Bi 和植物废料的用于 3D 打印应用的绿色复合材料。

Green Composites Based on Mater-Bi and Plant Waste for 3D Printing Applications.

作者信息

Scaffaro Roberto, Citarrella Maria Clara, Morreale Marco

机构信息

Department of Engineering, University of Palermo, Viale delle Scienze, 90128 Palermo, Italy.

INSTM, Consortium for Materials Science and Technology, Via Giusti 9, 50125 Florence, Italy.

出版信息

Polymers (Basel). 2023 Jan 8;15(2):325. doi: 10.3390/polym15020325.

Abstract

3D printability of green composites is currently experiencing a boost in importance and interest, envisaging a way to valorise agricultural waste, in order to obtain affordable fillers for the preparation of biodegradable polymer-based composites with reduced cost and environmental impact, without undermining processability and mechanical performance. In this work, an innovative green composite was prepared by combining a starch-based biodegradable polymer (Mater-Bi, MB) and a filler obtained from the lignocellulosic waste coming from (i.e., tomato plant) harvesting. Different processing parameters and different filler amounts were investigated, and the obtained samples were subjected to rheological, morphological, and mechanical characterizations. Regarding the adopted filler amounts, processability was found to be good, with adequate dispersion of the filler in the matrix. Mechanical performance was satisfactory, and it was found that this is significantly affected by specific process parameters such as the raster angle. The mechanical properties were compared to those predictable from the Halpin-Tsai model, finding that the prepared systems exceed the expected values.

摘要

绿色复合材料的3D可打印性目前在重要性和关注度方面正经历着提升,设想出一种使农业废弃物增值的方法,以便获得价格合理的填料,用于制备成本降低且环境影响减小的可生物降解聚合物基复合材料,同时又不损害加工性能和机械性能。在这项工作中,通过将淀粉基可生物降解聚合物(Mater-Bi,MB)与从(即番茄植株)收获产生的木质纤维素废弃物中获得的填料相结合,制备了一种创新的绿色复合材料。研究了不同的加工参数和不同的填料用量,并对所得样品进行了流变学、形态学和力学表征。关于所采用的填料用量,发现加工性能良好,填料在基体中分散充分。力学性能令人满意,并且发现其受到诸如光栅角度等特定加工参数的显著影响。将力学性能与通过Halpin-Tsai模型预测的性能进行了比较,发现所制备的体系超过了预期值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb75/9866952/35f0c96a2ee8/polymers-15-00325-g001.jpg

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