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      A Study on the Remanufacturing for Drive Spur Gear in Planner Miller by Directed Energy Deposition

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      https://www.riss.kr/link?id=A108396401

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      다국어 초록 (Multilingual Abstract)

      In this study, additive manufacturing technology was applied to restore a planner miller that was unusable due to aging. The drive spur gear of the planner miller was inoperable due to many defects in the teeth. The shape of the defective gear teeth w...

      In this study, additive manufacturing technology was applied to restore a planner miller that was unusable due to aging. The drive spur gear of the planner miller was inoperable due to many defects in the teeth. The shape of the defective gear teeth was restored by deposition of the defective teeth using the DED method. However, as the location of the deposition head and the location of the set origin became farther, the deposition shape was different from the modeling shape. Nonetheless, since the modeling of the deposition part was designed to be larger than the tooth shape of the original gear, it was possible to completely restore all gear teeth through post-processing. The arrangement interval of the flow lines of the deposition part was narrower than that of the substrate. The hardness of the substrate was 172 HV, and that of the deposition part was 345 HV, which was twice as high as that of the substrate.

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      참고문헌 (Reference) 논문관계도

      1 엄재근 ; 정승원 ; 전만수, "소성유동선도를 강조한 소성가공 시뮬레이션과 그 적용 사례" 한국소성가공학회 22 (22): 323-327, 2013

      2 노영화, "노후된 공작기계의 재제조에 관한 연구" 한국산업융합학회 23 (23): 403-410, 2020

      3 J.L. Li, "Surface design and tooth contact analysis of an innovative modified spur gear with crowned teeth" 219 (219): 2005

      4 L. Ladani, "Review of Powder Bed Fusion Additive Manufacturing for Metals" 11 (11): 1391-, 2021

      5 P. Rönkkö, "Remanufacturing in the Heavy Vehicle Industry—Case Study of a Finnish Machine Manufacturer" 13 (13): 1-15, 2021

      6 D. Singhal, "Remanufacturing for the circular economy:Study and evaluation of critical factors" 156 : 2020

      7 A. Sola, "Microstructural porosity in additive manufacturing: The formation and detection of pores in metal parts fabricated by powder bed fusion" 1 (1): e10021-, 2019

      8 L. Ahmels, "Investigation of Material Flow During Linear Flow Splitting Using Tracer Diffusion Experiments and Finite-Element Simulations" 23 (23): 2021

      9 S. M. Yusuf, "Influence of energy density on metallurgy and properties in metal additive manufacturing" 33 (33): 1269-1289, 2017

      10 J. Savolainen, "How Additive Manufacturing Technology Changes Business Models? –Review of Literature" 32 : 2020

      1 엄재근 ; 정승원 ; 전만수, "소성유동선도를 강조한 소성가공 시뮬레이션과 그 적용 사례" 한국소성가공학회 22 (22): 323-327, 2013

      2 노영화, "노후된 공작기계의 재제조에 관한 연구" 한국산업융합학회 23 (23): 403-410, 2020

      3 J.L. Li, "Surface design and tooth contact analysis of an innovative modified spur gear with crowned teeth" 219 (219): 2005

      4 L. Ladani, "Review of Powder Bed Fusion Additive Manufacturing for Metals" 11 (11): 1391-, 2021

      5 P. Rönkkö, "Remanufacturing in the Heavy Vehicle Industry—Case Study of a Finnish Machine Manufacturer" 13 (13): 1-15, 2021

      6 D. Singhal, "Remanufacturing for the circular economy:Study and evaluation of critical factors" 156 : 2020

      7 A. Sola, "Microstructural porosity in additive manufacturing: The formation and detection of pores in metal parts fabricated by powder bed fusion" 1 (1): e10021-, 2019

      8 L. Ahmels, "Investigation of Material Flow During Linear Flow Splitting Using Tracer Diffusion Experiments and Finite-Element Simulations" 23 (23): 2021

      9 S. M. Yusuf, "Influence of energy density on metallurgy and properties in metal additive manufacturing" 33 (33): 1269-1289, 2017

      10 J. Savolainen, "How Additive Manufacturing Technology Changes Business Models? –Review of Literature" 32 : 2020

      11 이재호 ; 송진영 ; 진철규 ; 김채환, "DED 방식을 적용한 플래너 밀러의 손상된 스핀들 키 보수 작업에 관한 연구" 한국산업융합학회 25 (25): 699-706, 2022

      12 K. Gupta, "Analysis of Design and Material Selection of a Spur gear pair for Solar Tracking Application" 5 (5): 789-795, 2018

      13 C. Zhang, "Additive manufacturing of products with functional fluid channels: A review" 36 : 2020

      14 M. Askari, "Additive manufacturing of metamaterials: A review" 36 : 2020

      15 S. Liu, "Additive manufacturing of Ti6Al4V alloy: A review" 164 : 2019

      16 J. Alam, "A Study on Design Optimization of Spur Gear Set" 1334 : 629-641, 2021

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