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黏结剂喷射3D打印关键技术
Key technology of binder jet 3D printing

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赵琛 1   蔡嘉伟 1   张百成 1,2 *   曲选辉 1,2  
文摘 黏结剂喷射成型技术是一种新型低成本高速增材制造技术,本文首先对黏结剂喷射成型技术的工艺原理以及打印步骤进行了介绍,并对国内外部分黏结剂喷射金属3D打印机的参数、优点、应用等进行了总结。列举了打印过程中使用的黏结剂类别,分析了黏结剂和粉末床之间相互作用的方式及影响(溅射、扩散、渗透等),讨论了不同变量对最终零件性能和精度的影响,包括粉末性能(粉末流动性、粒度分布和平均尺寸)、打印参数(层厚、黏结剂饱和度、打印速度、液滴间距和线间距、干燥时间)、后处理工艺(固化脱脂、烧结、渗透)。喷射粘接技术是未来关键材料增材制造的重要发展方向,在对应材料开发、黏结剂设计与后处理工艺方面将有广阔的研究与应用前景。
其他语种文摘 Binder jetting is a promoted 3D printing technology with the advantages of low equipment cost,high manufacturing speed. Technical principle and procedure were firstly introduced,and the parameter, advantage and application of present commercial binder jetting system were summarized. The types of binder used in the printing process were listed. The interaction (sputtering, diffusion and permeation) between binder types and powder bed was analysed. In addition, the influence of printing parameters on the performance and accuracy of the printed part was also discussed,including powder properties (powder flowability, powder size distribution and mean size),printing parameters (layer thickness,binder saturation,print speed, droplet spacing and line spacing,drying time),post-treatment process (curing, burnout, sintering, infiltration). Binder jetting technology is an important development direction of additive manufacturing. There will be broad research and application prospects in the development of corresponding materials,binder design and post-treatment technology.
来源 材料工程 ,2023,51(5):14-26 【核心库】
DOI 10.11868/j.issn.1001-4381.2021.000581
关键词 增材制造 ; 黏结剂喷射 ; 粉末 ; 黏结剂 ; 打印参数 ; 后处理
地址

1. 北京科技大学新材料技术研究院, 北京材料基因工程高精尖创新中心, 北京, 100083  

2. 现代交通金属材料与加工技术北京实验室, 现代交通金属材料与加工技术北京实验室, 北京, 100083

语种 中文
文献类型 研究性论文
ISSN 1001-4381
学科 机械、仪表工业
基金 国家重点研发计划资助项目 ;  国家自然科学基金项目
文献收藏号 CSCD:7480418

参考文献 共 63 共4页

1.  Tuan D N. Additive manufacturing(3D printing): a review of materials, methods, applications and challenges. Composites Part B,2018,143:172-196 CSCD被引 220    
2.  Tarunpreet S. 3D printing of engineering materials:a state of the art review. Materials Today:Proceedings,2020,28:1927-1931 CSCD被引 3    
3.  Khorsandi D. 3D and 4D printing in dentistry and maxillofacial surgery: printing techniques, materials, and applications. Acta Biomaterialia,2020,122:26-49 CSCD被引 11    
4.  Jasveer S. Comparison of different types of 3D printing technologies. International Journal of Scientific and Research Publications,2018,8(4):1-9 CSCD被引 2    
5.  Prasansha R. Breakthrough in the printing tactics for stimuli-responsive materials: 4D printing. Chemical Engineering Journal,2019,366:264-304 CSCD被引 12    
6.  Liu B. Creating metal parts by fused deposition modeling and sintering. Materials Letters,2019,263:127252 CSCD被引 4    
7.  Punit K. Fatigue strength of additively manufactured 316L austenitic stainless steel. Acta Materialia,2020,199:225-239 CSCD被引 13    
8.  Yvonne T. Fused filament fabrication, debinding and sintering as a low cost additive manufacturing method of 316L stainless steel. Additive Manufactu-ring,2019,30:100861 CSCD被引 8    
9.  Bourell D. Materials for additive manufacturing. CIRP Annals-Manufacturing Technology,2017,66(2):659-681 CSCD被引 22    
10.  Ziaee M. Binder jetting:a review of process,materials, and methods. Additive Manufacturing,2019,28:781-801 CSCD被引 30    
11.  Saereh M. A review on binder jet additive manufacturing of 316L stainless steel. Journal of Manufacturing and Materials Processing,2019,3(3):82 CSCD被引 1    
12.  Fahimeh D. A review of binder jet process parameters; powder, binder, printing and sintering condition. Metal Powder Report,2019,75(2):95-100 CSCD被引 1    
13.  Mostafaei A. Binder jet 3D printing-process parameters, materials,properties,and challenges. Progress in Materials Science,2020,119:100707 CSCD被引 2    
14.  Huang X H. A binder jet printed, stainless steel preconcentrator as an in-line injector of volatile organic compounds. Sensors,2019,19(12):2748 CSCD被引 1    
15.  Amir M. Characterizing surface finish and fatigue behavior in binder-jet 3D-printed nickel-based superalloy 625. Additive Manufacturing,2018,24:200-209 CSCD被引 2    
16.  . ExOne,2021 CSCD被引 1    
17.  . HP,2021 CSCD被引 1    
18.  . Digital Metal,2021 CSCD被引 1    
19.  . Desktop Metal,2021 CSCD被引 1    
20.  . Longyuan AFS Co., Ltd,2021 CSCD被引 1    
引证文献 2

1 冯琨皓 先进陶瓷黏结剂喷射增材制造技术发展与展望 航空制造技术,2024,67(4):72-88
CSCD被引 1

2 王琦 木塑材料3DP打印机运动控制系统轨迹跟踪研究 林业工程学报,2024,9(3):127-137
CSCD被引 0 次

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