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使用回收添加剂材料以促进资源的高效利用,同时作为木塑复合材料的有效韧性改性剂。

Use of Recycled Additive Materials to Promote Efficient Use of Resources While Acting as an Effective Toughness Modifier of Wood-Polymer Composites.

作者信息

Völtz Luísa Rosenstock, Berglund Linn, Oksman Kristiina

机构信息

Division of Materials Science, Department of Engineering Sciences and Mathematics, Luleå University of Technology, SE-97187 Luleå, Sweden.

Wallenberg Wood Science Center (WWSC), Luleå University of Technology, SE-97187 Luleå, Sweden.

出版信息

Polymers (Basel). 2024 Sep 10;16(18):2549. doi: 10.3390/polym16182549.

Abstract

Wood-polymer composites (WPCs) with polypropylene (PP) matrix suffer from low toughness, and fossil-based impact modifiers are used to improve their performance. Material substitution of virgin fossil-based materials and material recycling are key aspects of sustainable development and therefore recycled denim fabric, and elastomer were evaluated to replace the virgin elastomer modifier commonly used in commercial WPCs. Microtomography images showed that the extrusion process fibrillated the denim fabric into long, thin fibers that were well dispersed within the WPC, while the recycled elastomer was found close to the wood fibers, acting as a soft interphase between the wood fibers and PP. The fracture toughness (K) of the WPC with recycled denim fabric matched the commercial WPC which was 1.4 MPa m and improved the composite tensile strength by 18% and E-modulus by 54%. Recycled elastomer resulted in slightly lower K 1.1 MPa m, as well as strength and modulus while increasing elongation and contributing to toughness. The results of this study showed that recycled materials can potentially be used to replace virgin fossil-based elastomeric modifiers in commercial WPCs, thereby reducing the CO footprint by 23% and contributing to more efficient use of resources.

摘要

以聚丙烯(PP)为基体的木塑复合材料(WPC)韧性较低,因此使用基于化石的抗冲改性剂来改善其性能。用原始化石基材料进行材料替代和材料回收是可持续发展的关键方面,因此对回收牛仔布和弹性体进行了评估,以替代商业WPC中常用的原始弹性体改性剂。微观断层扫描图像显示,挤出过程使牛仔布纤维化为长而细的纤维,并在WPC中良好分散,而回收弹性体靠近木纤维,在木纤维和PP之间起到软界面的作用。含回收牛仔布的WPC的断裂韧性(K)与商业WPC相当,为1.4 MPa·m,其拉伸强度提高了18%,弹性模量提高了54%。回收弹性体导致K略低,为1.1 MPa·m,同时强度和模量也降低,而伸长率增加并有助于提高韧性。本研究结果表明,回收材料有可能用于替代商业WPC中的原始化石基弹性体改性剂,从而将碳足迹减少23%,并有助于更有效地利用资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a702/11435321/c9baaa3f5b1b/polymers-16-02549-g001.jpg

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