원문정보
A Study on the Heat Transfer and Durability of Carbon Nano Coating for the Safety Improvement of a Pool Boiling System
초록
영어
In this study, we investigated to the heat transfer performance of coating nano-structure with various shapes and patterns on the heat transfer surface. As a result of the measurement of the 3D nano shape, it was confirmed that the roughness generally increases when the adhesive is sprayed on the coating surface and finished durability experiment. In the case of TEOS adhesive, the roughness increased by 0.074 ㎛, 0.012 ㎛ and 0.015 ㎛, and the contact angle decreased 12.64°, 1.31°, 9.84° at the coating time of 120 seconds, 180 seconds and 240 seconds, respectively. In the case of PVA adhesive, the roughness increased by 0.069 ㎛, 0.056 ㎛ and 0.03 ㎛, and the contact angle decreased 2.85°, 4.82°, 6.96° at the coating time of 120 seconds, 180 seconds and 240 seconds, respectively. In the case of DGEBF adhesive, the roughness increased by 0.042 ㎛, 0.053 ㎛ and 0 ㎛, and the contact angle decreased 0.81° at the coating time of 120 seconds, increased 4.82°, 6.96° at the coating time of 180 seconds and 240 seconds, respectively. As a result, the durability tends to decrease as more nano-structures are deposited, and 3D nano shapes, contact angles and SEM photographs showed that the performance of the PVA adhesive was superior among the three adhesives.
목차
1. 서론
2. 실험장치 및 방법
2.1 나노구조체 내구성 실험장치 및 방법
2.2 나노구조체 열전달측정 실험장치 및 방법
3. 실험결과 및 토의
3.1 에어로졸 젯 프린팅을 이용한 나노구조체패턴 형성
3.2 나노구조체 열전달 실험 결과
3.3 접착제가 첨가된 나노코팅의 내구성 실험
4. 결론
5. References