Impact of Fused Deposition Modeling Process Parameters and Heat Treatment on Mechanical Characteristics and Product Quality: A Review

Mohd Yousuf Ali, G. Krishna Mohana Rao, B. Anjaneya Prasad
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Abstract

Fused Deposition Modeling (FDM) is indeed one of the most commonly used methods of additive manufacturing, particularly for printing polymers and fiber-reinforced polymer composites. When compared to more conventional production meth ods like injection molding, the key benefits of FDM include producing components with intricate shapes, minimal material wastage, shorter production times, and lower costs because no tooling is needed. However, the strength and surface quality of the product produced using this technique are lower, that can be improved by selecting the optimized design variable and applying heat treatment depending on how the product will be used in an industry. This review paper provides an overview of the effect of different process parameters on mechanical properties, print time, and surface characteristics of the parts made of polymers and fiber-reinforced polymer composites in addition to the challenges encountered during the printing of composites. It also discusses the new material’s development, such as natural fiber-reinforced polymer composites, the impact of heat treatment, and the void formation influence on the mechanical properties, build time, dimensional accuracy, and surface finish of 3D-printed parts.
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熔融沉积模型工艺参数和热处理对机械特性和产品质量的影响:综述
熔融沉积成型(FDM)的确是最常用的增材制造方法之一,尤其适用于打印聚合物和纤维增强聚合物复合材料。与注塑成型等更传统的生产方法相比,FDM 的主要优点包括生产形状复杂的部件、材料损耗最小、生产时间更短、成本更低,因为不需要模具。然而,使用这种技术生产的产品强度和表面质量较低,可通过选择优化设计变量和根据产品在工业中的使用方式进行热处理来改善。本文概述了不同工艺参数对聚合物和纤维增强聚合物复合材料部件的机械性能、打印时间和表面特征的影响,以及复合材料打印过程中遇到的挑战。文章还讨论了天然纤维增强聚合物复合材料等新材料的开发、热处理的影响以及空隙形成对 3D 打印部件的机械性能、构建时间、尺寸精度和表面光洁度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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