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A Study of Diffusion Bonding Process for High Temperature and High Pressure Micro Channel Heat Exchanger Using Inconel 617

인코넬 617을 이용한 고온고압용 미세채널 열교환기의 확산접합 공정에 관한 연구

  • Song, Chan Ho (Department of Extreme Thermal Systems, Korea Institute of Machinery and Materials) ;
  • Yoon, Seok Ho (Department of Extreme Thermal Systems, Korea Institute of Machinery and Materials) ;
  • Choi, Joon Seok (Department of Extreme Thermal Systems, Korea Institute of Machinery and Materials)
  • 송찬호 (한국기계연구원 열공정극한기술연구실) ;
  • 윤석호 (한국기계연구원 열공정극한기술연구실) ;
  • 최준석 (한국기계연구원 열공정극한기술연구실)
  • Received : 2014.11.17
  • Accepted : 2014.12.09
  • Published : 2015.02.10

Abstract

Recently, the heat exchangers are requiring higher performance and reliability since they are being used under the operating condition of high temperature and pressure. To satisfy these requirements, we need special materials and bonding technology. This study presents a manufacturing technology for high temperature and high pressure micro channel heat exchanger using Inconel 617. The bonding performance for diffusion bonded heat exchanger was examined and analyzed. The analysis were conducted by measuring thermal and mechanical properties such as thermal diffusivity and tensile strength, and parametric studies about bonding temperature and pressing force were also carried out. The results provided insight for bonding evaluation and the bonding condition of $1200^{\circ}C$, and 50 tons was found to be suitable for this heat exchanger. From the results, we were able to establish the base technology for the manufacturing of Inconel 617 heat exchanger through the application of the diffusion bonding.

Keywords

References

  1. Li, X., Kininmont, D., Pierres, R. L., and Dewson, S. J., 2008, Alloy 617 for the high temperature diffusion- bonded compact heat exchangers, Proceedings, ICAPP 2008, Anaheim, CA, USA, pp. 282-288.
  2. Mylavarapu, S. K., Sun, X., Glosup, R. E., Christensen, R. N., and Patterson, M. W., 2014, Thermal hydraulic performance testing of printed circuit heat exchangers in a high-temperature helium test facility, Applied Thermal Engineering, Vol. 65, No. 1/2, pp. 605-614. https://doi.org/10.1016/j.applthermaleng.2014.01.025
  3. Kim, J. H., Baek, S., Jeong, S., and Jung J., 2010, Hydraulic performance of a microchannel PCHE, Applied Thermal Engineering, Vol. 30, No. 14/15, pp. 2157-2162. https://doi.org/10.1016/j.applthermaleng.2010.05.028
  4. Lee, Y. S., 2007, A study on diffusion brazing of aluminium alloys by an eutectic reaction, Ph.D thesis, Inha University, Korea.
  5. Park, Y. H. and Kang, C. Y., 2006, Sinter diffusion bonding technology for assembly and hybrid of materials, Journal of the Korean Welding Society, Vol. 24, No. 5, pp. 7-10.
  6. Samavatian, M., Halvaee, A., Amadeh, A. A., and Khodabandeh, A., 2014, An investigation on microstructure evolution and mechanical properties during liquid state diffusion bonding of Al2024 to Ti-6Al- 4V, Materials Characterization, Vol. 98, pp. 113-118. https://doi.org/10.1016/j.matchar.2014.10.018
  7. Duval, A., Miserque, F., Tabarant, M., Nogier, J. P., and Gedeon, A., 2010, Influence of the oxygen partial pressure on the oxidation of Inconel 617 alloy at high temperature, Oxidation of Metals, Vol. 74, No. 5/6, pp. 215-238. https://doi.org/10.1007/s11085-010-9207-5
  8. Hsu, S. S., 1993, Time-dependent crack growth in a heat-resistant alloy Inconel 617, Journal of Nuclear Science and Technology, Vol. 30, No. 4, pp. 302-313. https://doi.org/10.1080/18811248.1993.9734487
  9. Jo, T. S., Kim, S. H., Kim, D. G., Park, J. Y., and Kim, Y. D., 2008, Thermal degradation behavior of Inconel 617 alloy, Metals and Materials International, Vol. 14, No. 6, pp. 739-743. https://doi.org/10.3365/met.mat.2008.12.739
  10. Ontaku, T., 1988, The theory and basis of diffusion bonding, Journal of the Korean Welding Society, Vol. 6, No. 1.
  11. Li, X., 2012, Development and qualification of diffusion bonding procedures for microchannel heat exchangers, Proceedings, ASME 2012 31st International Conference on Ocean, Offshore and Arctic Engineering, Rio de Janeiro, Brazil.

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