A Review of Additive Manufacturing
Обзор аддитивного производства
2012-08-16
SCID: 54.1/j3r3pcsr
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additive manufacturingaerospace industrycomputer-aided design (CAD)manufacturing materialsstereolithography (STL)
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Abstract (AI)
Additive manufacturing processes take the information from a computer-aided design (CAD) file that is later converted to a stereolithography (STL) file. In this process, the drawing made in the CAD software is approximated by triangles and sliced containing the information of each layer that is going to be printed. There is a discussion of the relevant additive manufacturing processes and their applications. The aerospace industry employs them because of the possibility of manufacturing lighter structures to reduce weight. Additive manufacturing is transforming the practice of medicine and making work easier for architects. In 2004, the Society of Manufacturing Engineers did a classification of the various technologies and there are at least four additional significant technologies in 2012. Studies are reviewed which were about the strength of products made in additive manufacturing processes. However, there is still a lot of work and research to be accomplished before additive manufacturing technologies become standard in the manufacturing industry because not every commonly used manufacturing material can be handled. The accuracy needs improvement to eliminate the necessity of a finishing process. The continuous and increasing growth experienced since the early days and the successful results up to the present time allow for optimism that additive manufacturing has a significant place in the future of manufacturing.
Key Findings
1
Additive manufacturing converts CAD designs into triangulated, sliced STL files containing the geometry of successive printed layers.
2
Additive manufacturing has demonstrated continued growth and successful applications, but broader industrial adoption is limited by material compatibility and insufficient accuracy requiring finishing.
3
Aerospace applications exploit additive manufacturing to produce lighter structures and reduce weight, while medicine and architecture also benefit from the technology.
4
The field’s sustained development supports optimism that additive manufacturing will become an important part of future manufacturing.
5
The review covers major additive manufacturing processes, applications, and product-strength studies, including technology classifications established in 2004 and expanded by 2012.
Research Object
additive manufacturing processes and technologies
Research Subject
their processes, applications, product strength, material compatibility, and dimensional accuracy
Publication Details
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2012-08-16
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