대형 적층/가공 시스템에서 적층조건에 따른 인장강도에 관한 연구
A Study on the Tensile Strength According to Deposition Conditions in a Large-Scale Additive and Subtractive Manufacturing System
In this paper, the CFRP(Carbon Fiber Reinforced Plastic) parts were printed and cut in a large-scale additive and subtractive hybrid manufacturing system. A method to increase the strength and durability of a product by identifying the interlayer adhesion during the printing process of a large-scale additive manufacturing hybrid system was investigated. According to the printing conditions(CF content, deposition temperature, compaction process), the specimen was printed and cut to determine the tensile strength in the printing direction. As a result of the experiment, the highest tensile strength was shown when ABS-CF 20wt.% Compound was printed at 230℃ extrusion temperature, and the higher the CF content of the material, the lower the tensile strength. As a result of observing the inside of the test piece through an optical microscope, a large number of voids were kept inside the test piece. To remove voids generated inside the test piece, a compaction process was applied to the additive manufacturing hybrid system to prepare a test piece. As a result, void size decreased, and the strength of the part showed a tendency to increase. It is thought that additive manufacturing with high tensile strength can be obtained through studies on the optimization of deposition conditions in additive manufacturing hybrid systems.
목차
ABSTRACT 1. 서론 2. 실험 2.1 소재선정 2.2 시험편 제작 장비 2.3 적층 시험편 제작 2.4 인장시험편 제작 2.5 실험장비 3. 결과 3.1 ABS+CF(5%, 10%, 15%, 20%) 시험편 단면/표면 분석 3.2 다짐 공정을 적용한 ABS+CF(20%) 시험편의 단면/표면 분석 3.3 탄소섬유 함량에 따른 인장강도 시험 3.4 사출 시험편과의 비교 3.5 압출온도에 따른 인장강도 시험 3.6 다짐공정(Compaction Process)에 따른 인장강도 시험 4. 결론 References
키워드
대형 적층/가공 시스템적층제조절삭가공탄소섬유강화 플라스틱인장강도적층조건Large-scale Additive and Subtractive Manufacturing SystemAdditive ManufacturingSubtractive ManufacturingCarbon Fiber Reinforced PlasticTensile StrengthDeposition Condition
저자
오제하 [ Je-Ha Oh | Member, Korea Carbon Industry Promotion Agency ]
Corresponding Author
국호형 [ Ho-Hyeong Guk | Korea Carbon Industry Promotion Agency ]