Research on the Fused Deposition Modeling of Polyether Ether Ketone

偷看 材料科学 聚醚醚酮 复合材料 极限抗拉强度 喷嘴 变形(气象学) 熔融沉积模型 熔点 光栅图形 沉积(地质) 聚合物 3D打印 机械工程 计算机科学 古生物学 沉积物 工程类 生物 人工智能
作者
Ruoxiang Gao,Jun Xie,Jing‐hui Yang,Chaojie Zhuo,Jianzhong Fu,Peng Zhao
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:13 (14): 2344-2344 被引量:25
标识
DOI:10.3390/polym13142344
摘要

As a special engineering polymer, polyether ether ketone (PEEK) has been used widely due to its excellent mechanical properties, high thermal stability, and chemical resistance. Fused deposition modeling (FDM) is a promising process for fabricating PEEK parts. However, due to the semi-crystalline property and high melting point of PEEK, determining appropriate process parameters is important to reduce warpage deformation and improve the mechanical properties of PEEK. In this article, the influence of raster angle and infill density was determined by single factor experiment, which are the two most important parameters. The results showed that samples with 0°/90° raster angle and 50% infill density had the best comprehensive properties in terms of warpage deformation, tensile strength, and specific strength. Subsequently, based on the results above, the effects of printing speed, nozzle temperature, platform temperature, raster width, and layer thickness were analyzed by orthogonal experiment. The results indicated that platform temperature had the greatest impact on warpage deformation while printing speed and nozzle temperature were significant parameters on tensile strength. Through optimization, warpage deformation of the samples could be reduced to almost 0 and tensile strength could increase by 19.6% (from 40.56 to 48.50 MPa). This will support the development of FDM for PEEK.
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