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Mechanical and thermal properties of 3D printing metallic materials at cryogenic temperatures

초록

영어

Metal 3D printing is utilized in various industrial fields due to its advantages, such as fewer restrictions on production shape and reduced production time and cost. Existing research on 3D printing metal materials focused on changes in material properties depending on manufacturing conditions and was mainly conducted in a room temperature environment. In order to apply metal 3D printing products to cryogenic applications, research on the properties of materials in cryogenic environments is necessary but still insufficient. In this study, we evaluate the properties of stainless steel (STS) 316L and CuCr1Zr manufactured by Laser Powder Bed Fusion (LPBF) in a cryogenic environment. CuCr1Zr is a precipitation hardening alloy, and changes in material properties were compared by applying various heat treatment conditions. The mechanical properties of materials manufactured using the LBPF method are evaluated through tensile tests at room temperature and cryogenic temperature (77 K), and the thermal properties are evaluated by deriving the thermal conductivity of CuCr1Zr according to various heat treatment conditions. In a cryogenic environment, the mechanical strength of STS 316L and CuCr1Zr increased by about 150% compared to room temperature, and the thermal conductivity of CuCr1Zr after heat treatment increased by about 6 to 10 times compared to before heat treatment at 40 K.

목차

Abstract
1. 서론
2. 시편 제작 및 열처리
2.1. 금속 3D 프린팅 제작 방식
2.2. 시편의 형상 및 조성
2.3. CuCr1Zr 소재의 열처리
3. 실험 방법
3.1. 인장 시험
3.2. 열전도도 측정 시험
4. 실험 결과 및 분석
4.1. STS 316L 인장 시험 결과
4.2. CuCr1Zr 인장 시험 결과
4.3. CuCr1Zr 열전도도 측정 시험 결과
5. 결론
ACKNOWLEDGMENT
REFERENCES

저자정보

  • Jangdon Kim Changwon National University, Republic of Korea
  • Jaehwan Lee Changwon National University, Republic of Korea
  • Seokho Kim Changwon National University, Republic of Korea

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