FDM 3D프린팅 윤활유에 따른 내부응력 완화에 관한 연구

Investigation of the Internal Stress Relaxation in FDM 3D Printing : vegetable lubricating oil

초록

In this paper, the effects of different 3D printing conditions including oil lubrication and annealing are observed for their effects on tensile testing. In 3D printing, a press-out extrude filament is rapidly heated and cooled to create internal stress in the printed part. The 3D printing internal stress can be removed using oil-coated filament and annealing. During the oven cooling at an annealing temperature of 106℃, the stress of the specimens with laminated angle 0° tends to increase by 12.6%, and that of the oil-coated filament printing specimens is increased by 17%. At the annealing temperature of 106℃, the stress of the oil-coated filament printing specimens tends to increase by 35%. In this study, we have found that the oil lubrication and annealing remove the internal stresses and increase the strength of the printed specimens. The oil lubrication and annealing reform the crystalline structures to even out the areas of high and low stress, which creates fewer fragile areas. These results are very useful for the manufacture of 3D printing products with a suitable mechanical strength for applications.

키워드

Additive Manufacturing(적층가공)3D Printing Laminated Angle(3D프린팅 적층 각도)3D Printing Annealing(3D프린팅 어닐링)3D프린팅 윤활(3D Printing Lubrication)
제목
FDM 3D프린팅 윤활유에 따른 내부응력 완화에 관한 연구
제목 (타언어)
Investigation of the Internal Stress Relaxation in FDM 3D Printing : vegetable lubricating oil
저자
이선곤김용래김수현강선호김주형
DOI
10.14775/ksmpe.2019.18.2.082
발행일
2019-02
유형
Y
저널명
한국기계가공학회지
18
2
페이지
82 ~ 90