고에너지 직접적층(DED) 공정에 의한 Co-Cr 합금 적층 최적화 연구

Optimization of the Additive Manufacturing of Co-Cr Alloy by using DED Process
  • 권용재; 
  • 신성선; 
  • 주상은; 
  • 이종훈; 
  • 황준호; 
  • ... 김현덕

초록

In this study, the directed energy deposition (DED) process was applied to additively manufacture cobalt-chro- mium alloy materials, which are commonly used in molds, dental/orthopedic medical applications, vehicles, and aircraft. The quality of the deposition obtained by using the DED technology is affected by process parameters. Therefore, the aim of this experiment, was to evaluate the microstructure changes caused by varying parameters such as the laser power, laser header moving speed, and powder feeding rate, with the goal of improving and opti- mizing the stacking quality. The shape, heat-affected zone, and dilution ratio of the microstructure were analyzed us- ing an optical microscope. Furthermore, the global energy density(GED) was calculated because it affects the qual- ity of the 3D-printed product. The optimal process conditions for the DED method determined by calculating the GED under various process conditions.

키워드

DED(Direct Energy Deposition); AM(Additive Manufacturing); Metal powder(Co-Cr); Dilution ratio; HAZ(Heat Affected Zone); GED(Global Energy Density)
제목
고에너지 직접적층(DED) 공정에 의한 Co-Cr 합금 적층 최적화 연구
제목 (타언어)
Optimization of the Additive Manufacturing of Co-Cr Alloy by using DED Process
저자
권용재; 신성선; 주상은; 이종훈; 황준호; 김현덕
DOI
10.5781/JWJ.2023.41.1.6
발행일
2023-02
유형
Y
저널명
대한용접접합학회지
권
41
호
1
페이지
56 ~ 63