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Su-Ryong Bang 2 Articles
Research Trend of Additive Manufacturing Technology
Hanshin Choi, Jong Min Byun, Wonsik Lee, Su-Ryong Bang, Young Do Kim
J Powder Mater. 2016;23(2):149-169.   Published online April 1, 2016
DOI: https://doi.org/10.4150/KPMI.2016.23.2.149
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AbstractAbstract PDF

Additive manufacturing (AM) is defined as the manufacture of three-dimensional tangible products by additively consolidating two-dimensional patterns layer by layer. In this review, we introduce four fundamental conceptual pillars that support AM technology: the bottom-up manufacturing factor, computer-aided manufacturing factor, distributed manufacturing factor, and eliminated manufacturing factor. All the conceptual factors work together; however, business strategy and technology optimization will vary according to the main factor that we emphasize. In parallel to the manufacturing paradigm shift toward mass personalization, manufacturing industrial ecology evolves to achieve competitiveness in economics of scope. AM technology is indeed a potent candidate manufacturing technology for satisfying volatile and customized markets. From the viewpoint of the innovation technology adoption cycle, various pros and cons of AM technology themselves prove that it is an innovative technology, in particular a disruptive innovation in manufacturing technology, as powder technology was when ingot metallurgy was dominant. Chasms related to the AM technology adoption cycle and efforts to cross the chasms are considered.

Citations

Citations to this article as recorded by  
  • SiC-Si composite part fabrication via SiC powder binder jetting additive manufacturing and molten-Si infiltration
    Ji-Won Oh, Jinsu Park, Sahn Nahm, Hanshin Choi
    International Journal of Refractory Metals and Hard Materials.2021; 101: 105686.     CrossRef
  • Recent Trends and Application Status of the Metal Matrix Composites (MMCs)
    Hyo-Seop Kim
    Journal of Korean Powder Metallurgy Institute.2020; 27(2): 164.     CrossRef
  • Metal Additive Manufacturing Cycle in Aerospace Industry: A Comprehensive Review
    B. Barroqueiro, A. Andrade-Campos, R. A. F. Valente, V. Neto
    Journal of Manufacturing and Materials Processing.2019; 3(3): 52.     CrossRef
  • Technology Trend of the additive Manufacturing (AM)
    Ji-Won Oh, Hyunwoong Na, Hanshin Choi
    Journal of Korean Powder Metallurgy Institute.2017; 24(6): 494.     CrossRef
Fabrication of Porous Cu by Freeze-drying Process of Camphene Slurry with CuO-coated Cu Powders
Su-Ryong Bang, Sung-Tag Oh
J Powder Mater. 2014;21(3):191-195.   Published online June 1, 2014
DOI: https://doi.org/10.4150/KPMI.2014.21.3.191
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  • 3 Citations
AbstractAbstract PDF

This study reports a simple way of fabricating the porous Cu with unidirectional pore channels by freeze drying camphene slurry with Cu oxide coated Cu powders. The coated powders were prepared by calcination of ballmilled powder mixture of Cu and Cu-nitrate. Improved dispersion stability of camphene slurry could be achieved using the Cu oxide coated Cu powders instead of pure Cu powders. Pores in the frozen specimen at -25°C were generated by sublimation of the camphene during drying in air, and the green bodies were sintered at 750°C for 1 h in H2 atmosphere. XRD analysis revealed that the coated layer of Cu oxide was completely converted to Cu phase without any reaction phases by hydrogen heat treatment. The porous Cu specimen prepared from pure Cu powders showed partly large pores with unidirectional pore channels, but most of pores were randomly distributed. In contrast, large and aligned parallel pores to the camphene growth direction were clearly observed in the sample using Cu oxide coated Cu powders. Pore formation behavior depending on the initial powders was discussed based on the degree of powder rearrangement and dispersion stability in slurry.

Citations

Citations to this article as recorded by  
  • Effect of Freezing and Sintering Condition of CuO-SnO2/Camphene Slurries on the Pore Structure of Porous Cu-Sn
    Joo-Hyung Kim, Sung-Tag Oh, Chang-Yong Hyun
    Journal of Korean Powder Metallurgy Institute.2016; 23(1): 49.     CrossRef
  • Fabrication of Cu-30 vol% SiC Composites by Pressureless Sintering of Polycarbosilane Coated SiC and Cu Powder Mixtures
    Yeon Su Kim, Na-Yeon Kwon, Young-Keun Jeong, Sung-Tag Oh
    Korean Journal of Materials Research.2016; 26(6): 337.     CrossRef
  • Synthesis of Aligned Porous Sn by Freeze-Drying of Tin Chloride/camphene Slurry
    수룡 방, 승탁 오
    Korean Journal of Materials Research.2015; 25(1): 27~31.     CrossRef

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