Elaboration of dimensional quality in 3D‐printed food: Key factors in process steps

3d打印 3D打印 工艺工程 质量(理念) 过程(计算) 计算机科学 墨水池 材料科学 纳米技术 工程制图 制造工程 工程类 复合材料 认识论 操作系统 哲学
作者
Yaxin Wen,Quang Tuan,Shaoyun Wang,Hyun Jin Park,Hyun Woo Kim
出处
期刊:Comprehensive Reviews in Food Science and Food Safety [Wiley]
卷期号:23 (1): e13267-e13267 被引量:12
标识
DOI:10.1111/1541-4337.13267
摘要

Abstract Three‐dimensional (3D) printing has been applied to produce food products with intricate and fancy shapes. Dimensional quality, such as dimensional stability, surface smoothness, shape fidelity, and resolution, are essential for the attractive appearance of 3D‐printed food. Various methods have been extensively studied and proposed to control the dimensional quality of printed foods, but few papers focused on comprehensively and deeply summarizing the key factors of the dimensional quality of printed products at each stage—before, during, and after printing—of the 3D printing process. Therefore, the effects of pretreatment, printing parameters and rheological properties, and cooking and storage on the dimensional quality of the printed foods are summarized, and solutions are also provided for improving the dimensional quality of the printed products at each step. Before printing, incorporating additives or applying physical, chemical, or biological pretreatments can improve the dimensional quality of carbohydrate‐based, protein‐based, or lipid‐based printed food. During printing, controlling the printing parameters and modifying the rheological properties of inks can affect the shape of printed products. Furthermore, post‐processing is essential for some printed foods. After printing, changing formulations, incorporating additives, and selecting post‐processing methods and conditions may help achieve the desired shape of 3D‐printed or 4D‐printed products during cooking. Additives help in the storage stability of printed food. Finally, various opportunities have been proposed to regulate the dimensional properties of 3D‐printed structures. This review provides detailed guidelines for researchers and users of 3D printers to produce various printed foods with the desired shapes and appearances.
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