A Review of Stereolithography: Processes and Systems

被引:351
作者
Huang, Jigang [1 ]
Qin, Qin [1 ]
Wang, Jie [1 ]
机构
[1] Sichuan Univ, Sch Mech Engn, Chengdu 610065, Peoples R China
关键词
additive manufacturing; stereolithography; scanning; projection; continuous; SPATIAL LIGHT-MODULATOR; MICRO-STEREOLITHOGRAPHY; 2-PHOTON POLYMERIZATION; SCAFFOLD FABRICATION; 3D PRINTER; MICROSTEREOLITHOGRAPHY; MULTIMATERIAL; VITRIFICATION; PHOTOPOLYMERIZATION; MICROFABRICATION;
D O I
10.3390/pr8091138
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Being the earliest form of additive manufacturing, stereolithography (SLA) fabricates 3D objects by selectively solidifying the liquid resin through a photopolymerization reaction. The ability to fabricate objects with high accuracy as well as a wide variety of materials brings much attention to stereolithography. Since its invention in the 1980s, SLA underwent four generations of major technological innovation over the past 40 years. These innovations have thus resulted in a diversified range of stereolithography systems with dramatically improved resolution, throughput, and materials selection for creating complex 3D objects and devices. In this paper, we review the four generations of stereolithography processes, which are scanning, projection, continuous and volumetric stereolithography. For each generation, representative stereolithography system configurations are also discussed in detail. In addition, other derivative technologies, such as scanning-projection, multi-material, and magnetically assisted stereolithography processes, are also included in this review.
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页数:16
相关论文
共 122 条
[1]  
Almquist T.A, 1997, U.S. Patent, Patent No. [5,672,312, 567231230]
[2]   Stereolithography of spatially controlled multi-material bioactive poly(ethylene glycol) scaffolds [J].
Arcaute, Karina ;
Mann, Brenda ;
Wicker, Ryan .
ACTA BIOMATERIALIA, 2010, 6 (03) :1047-1054
[3]   Metal filled resin for stereolithography metal part [J].
Bartolo, P. J. ;
Gaspar, J. .
CIRP ANNALS-MANUFACTURING TECHNOLOGY, 2008, 57 (01) :235-238
[4]  
Bartolo PJ, 2011, STEREOLITHOGRAPHY: MATERIALS, PROCESSES AND APPLICATIONS, P1
[5]   Microstereolithography: a new process to build complex 3D objects [J].
Beluze, L ;
Bertsch, A ;
Renaud, P .
DESIGN, TEST, AND MICROFABRICATION OF MEMS AND MOEMS, PTS 1 AND 2, 1999, 3680 :808-817
[6]   Study of the spatial resolution of a new 3D microfabrication process: the microstereophotolithography using a dynamic mask-generator technique [J].
Bertsch, A ;
Yezequel, JY ;
Andre, JC .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY, 1997, 107 (1-3) :275-281
[7]   Combining microstereolithography and thick resist UV lithography for 3D microfabrication [J].
Bertsch, A ;
Lorenz, H ;
Renaud, P .
MICRO ELECTRO MECHANICAL SYSTEMS - IEEE ELEVENTH ANNUAL INTERNATIONAL WORKSHOP PROCEEDINGS, 1998, :18-23
[8]   Microstereophotolithography using a liquid crystal display as dynamic mask-generator [J].
Bertsch, A ;
Zissi, S ;
Jezequel, JY ;
Corbel, S ;
Andre, JC .
MICROSYSTEM TECHNOLOGIES, 1997, 3 (02) :42-47
[9]  
Bianconi F., 2002, Int. J. CADCAM, V2, P55
[10]   Determination of gel and vitrification times of thermoset curing process by means of TMA, DMTA and DSC techniques - TTT diagram [J].
Cadenato, A ;
Salla, JM ;
Ramis, X ;
Morancho, JM ;
Marroyo, LM ;
Martin, JL .
JOURNAL OF THERMAL ANALYSIS, 1997, 49 (01) :269-279