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Fused deposition modeling based polymeric materials and their performance: A review
Polymer Composites ( IF 4.8 ) Pub Date : 2021-09-01 , DOI: 10.1002/pc.26275
Vigneshwaran Shanmugam 1 , Munagoti Venkata Pavan 2 , Karthik Babu 3 , Balamurugan Karnan 2
Affiliation  

Additive manufacturing (AM) has several advantages that will make a revolution in polymeric material development. In the AM of polymeric materials, filament deposition modeling (FDM) has been widely used owing to its versatility, low cost, and efficacy. FDM includes different parameters and also an interlayer adhesion that contributes to the performance of the printed parts. In recent years, reinforcement has been introduced in FDM-printed polymeric materials to improve performance. This review looked at different polymer materials that were printed using the FDM process. A systematic literature search was conducted on FDM-printed polymers, and the mechanical and thermal performance of these materials was reviewed and critically reported. The performance of FDM printed polymeric materials has been discussed in relation to FDM process parameters, matrix type, fiber reinforcement type, particle reinforcement type, and lattice structure. In a nutshell, this review article will assist researchers working in the field of 3D printing of polymeric materials in understanding the various polymer and polymeric composites' properties and performance.

中文翻译:

基于熔融沉积建模的聚合物材料及其性能:综述

增材制造 (AM) 具有多项优势,将在聚合物材料开发中掀起一场革命。在聚合物材料的增材制造中,长丝沉积建模(FDM)由于其多功能性、低成本和有效性而被广泛使用。FDM 包括不同的参数以及有助于打印部件性能的层间粘合。近年来,在 FDM 印刷的聚合物材料中引入了增强材料以提高性能。该评论着眼于使用 FDM 工艺打印的不同聚合物材料。对 FDM 打印的聚合物进行了系统的文献检索,并对这些材料的机械和热性能进行了审查和批判性报告。FDM 印刷聚合物材料的性能已经与 FDM 工艺参数相关,基体型、纤维增强型、颗粒增强型和晶格结构。简而言之,这篇评论文章将帮助聚合物材料 3D 打印领域的研究人员了解各种聚合物和聚合物复合材料的特性和性能。
更新日期:2021-11-09
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