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Automated storage and active cleaning for multi-material digital-light-processing printer

delete2019-06-10
delete29
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OA
AI
C
Christopher-Denny Matte
M
Michael Pearson
F
Felix Trottier-Cournoyer
A
Andrew Dafoe
T
Tsz-Ho Kwok *
DOI:10.1108/RPJ-08-2018-0211delete
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Abstract

Abstract

En 中文
Purpose The purpose of this paper is to introduce a novel technique for printing with multiple materials using the DLP method. Digital-light-processing (DLP) printing uses a digital projector to selectively cure a full layer of resin using a mask image. One of the challenges with DLP printing is the difficulty of incorporating multiple materials within the same part. As the part is cured within a liquid basin, resin switching introduces issues of cross-contamination and significantly increased print time. Design/methodology/approach The material handling challenges are investigated and addressed by taking inspiration from automated storage and retrieval systems and using an active cleaning solution. The material tower is a compact design to facilitate the storage and retrieval of different materials during the printing process. A spray mechanism is used for actively cleaning excess resin from the part between material changes. Findings Challenges encountered within the multi-material DLP technology are addressed and the experimental prototype validates the proposed solution. The system has a cleaning effectiveness of over 90 per cent in 15 s with the build area of 72 inches, in contrast to the previous work of 50 per cent cleaning effectiveness in 2 min with only 6 inches build area. The method can also hold more materials than the previous work. Originality/value The techniques from automated storage and retrieval system is applied to develop a storage system so that the time complexity of swapping is reduced from linear to constant. The whole system is sustainable and scalable by using a spraying mechanism. The design of the printer is modular and highly customizable, and the material waste for build materials and cleaning solution is minimized.
Keywords:
Process design
Rapid manufacturing
Layered manufacturing
Manufacturing technology
Manufacturing systems
UV
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Journal

Rapid Prototyping Journal cover
Rapid Prototyping Journal
IF:
3.6
Papers:
2.2K
Citations:
7.7K

Organization

C
concordia university - canada
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8.0K
Papers: 8.9K
Citations: 4