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基于熔融沉积成型的再生热塑性塑料及相关复合材料的增材制造。

FDM-based additive manufacturing of recycled thermoplastics and associated composites.

作者信息

Mishra Vishal, Negi Sushant, Kar Simanchal

机构信息

National Institute of Technology Silchar, Silchar, Assam India.

出版信息

J Mater Cycles Waste Manag. 2023;25(2):758-784. doi: 10.1007/s10163-022-01588-2. Epub 2023 Jan 11.

Abstract

Hailed since the fourth industrial revolution, three-dimensional (3D) printing or additive manufacturing (AM) has been extensively implemented in various manufacturing sectors. This process is popular for generating regular products and incorporating innovative designs into the components like auxetic structures, such as fabrication of engineering products, customized implants and sophisticated biomedical devices. Over the years, one of the interesting outputs of this emerging technology is the reuse of waste thermoplastic materials to produce competent products through the fused deposition modeling (FDM) technique. The strength of FDM components produced from thermoplastic waste is lower than that of virgin plastic FDM counterparts. So, there is a need to understand the significant changes in the recycled thermoplastic material during subsequent extrusions, which are chain scission, change in viscosity and breaking strength. The use of additives has been a promising solution to improve the performance of recycled material for 3D printing applications. Hence, this study aims to provide an overview of reusing plastic waste through FDM-based 3D printing. This review summarizes the current knowledge about the effect of processing on thermo-mechanical properties of recycled plastic FDM parts and the use of various additives to improve the overall quality. In addition, two case studies from open literature have been demonstrated to explain the use of FDM and associated technology for plastic recycling.

摘要

自第四次工业革命以来,三维(3D)打印或增材制造(AM)已在各个制造业中得到广泛应用。这个过程因生产常规产品以及将创新设计融入诸如负泊松比结构等部件而广受欢迎,例如工程产品、定制植入物和精密生物医学设备的制造。多年来,这项新兴技术的一个有趣成果是通过熔融沉积建模(FDM)技术将热塑性废料重新利用来生产合格产品。由热塑性废料制成的FDM部件的强度低于原始塑料FDM部件。因此,有必要了解回收的热塑性材料在后续挤出过程中的重大变化,即断链、粘度变化和断裂强度。使用添加剂一直是提高用于3D打印应用的回收材料性能的一个有前景的解决方案。因此,本研究旨在概述通过基于FDM的3D打印对塑料废料的再利用。这篇综述总结了关于加工对回收塑料FDM部件热机械性能的影响以及使用各种添加剂来提高整体质量的当前知识。此外,还展示了来自公开文献的两个案例研究,以解释FDM及相关技术在塑料回收中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a555/9838364/66e6f5303023/10163_2022_1588_Fig1_HTML.jpg

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