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[국내논문] Progresses in Ultra-Precise Temperature Control and Thermometry Techniques
초정밀 온도제어 및 측정기술 동향

한국정밀공학회지 = Journal of the Korean Society for Precision Engineering, v.38 no.12, 2021년, pp.905 - 915  

Joung, Wukchul

초록이 없습니다.

참고문헌 (37)

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  4. Pearce, J., Steur, P. P. M., Joung, W., Sparasci, F., Strouse, G., et al., “Guide to the Realization of the ITS-90-Metal Fixed Points for Contact Thermometry,” www.bipm.org/en/committees/cc/cct/guide-its90.html (Accessed 15 NOVEMBER 2021) 

  5. Joung, Wukchul, Gam, Kee Sool, Kim, Yong-Gyoo. Realization of tin freezing point using a loop heat pipe-based hydraulic temperature control technique. Metrologia, vol.52, no.5, 694-707.

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  11. Marcarino, P, Merlone, A. Towards new temperature standards for contact thermometry above 660 °C. Metrologia, vol.39, no.4, 395-398.

  12. Joung, W., Kim, Y.G., Yang, I., Gam, K.S.. Operating characteristics of a loop heat pipe-based isothermal region generator. International journal of heat and mass transfer, vol.65, 460-470.

  13. Merlone, A., Coppa, G., Bassani, C., Bonnier, G., Bertiglia, F., Dedyulin, S., Favreau, J-O., Fernicola, V., van Geel, J., Georgin, E., Gotoh, M., Krenek, S., Iacomini, L., Joung, W., Machin, G., Marcarino, P., McEvoy, H., Musacchio, C., Pearce, J.V., Rudtsch, S., Sadli, M., Tamba, J., Woods, D., Yan, X.. Gas-controlled heat pipes in metrology: More than 30 years of technical and scientific progresses. Measurement : journal of the International Measurement Confederation, vol.164, 108103-.

  14. Merlone, A., Giunta, S., Tiziani, A.. A New Mercury Gas-Controlled Heat Pipe for Temperature Amplifier and as Calibration Facility. International journal of thermophysics, vol.29, no.5, 1876-1886.

  15. Gotoh, M. and Hill, K., “Temperature Stability and Reproducibility of Pressure-Controlled Sodium-Filled Heat Pipe Furnaces,” Temperature, Its Measurement and Control in Science and Industry, Vol. 6, No. Part 2, pp. 955-959, 1992. 

  16. Merlone, A., Dematteis, R., and Marcarino, P., “Gas-Controlled Heat Pipes for Accurate Liquid-Vapor Transition Measurements,” International Journal of Thermophysics, Vol. 24, No. 3, pp. 695-712, 2003. 

  17. 10.1063/1.1627251 

  18. Sadli, M., Renaot, E., Elgourdou, M., Bonnier, G., “Approximation of the ITS-90 between 600 °C and 830 °C Using the Potassium Vapour P-T Relation,” Proc. of TEMPMEKO’ 96, pp. 49-54, 1996. 

  19. Joung, Wukchul, Gam, Kee Sool, Kim, Yong-Gyoo, Yang, Inseok. Hydraulic operating temperature control of a loop heat pipe. International journal of heat and mass transfer, vol.86, 796-808.

  20. Joung, W., Kim, Y.G., Lee, J.. Transient characteristics of a loop heat pipe-based hydraulic temperature control technique. International journal of heat and mass transfer, vol.103, 125-132.

  21. Joung, Wukchul, Lee, Joohyun. Effect of Sink Temperature on the Stability of the Pressure-Controlled Loop Heat Pipe. Journal of heat transfer, vol.141, no.9, 091805-.

  22. Marcarino, P., Merlone, A., Coggiola, G., and Tiziani, A., “Gas Controlled Heat Pipe for Thermometer Calibration between 450 °C and 950 °C,” Proc. of the 7th International Symposium on Temperature and Thermal Measurements in Industry, pp. 298-303, 1999. 

  23. Marcarino, P., Merlone, A., and Dematteis, R., “Low Cost Apparatus for Accurate Comparisons of Platinum Resistance Thermometers,” Proc. of the 8th International Symposium on Temperature and Thermal Measurements in Industry, pp. 641-646, 2002. 

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  25. Webster, E., Mason, R., Greenen, A., Pearce, J.. A System for High-Temperature Homogeneity Scanning of Noble-Metal Thermocouples. International journal of thermophysics, vol.36, no.10, 2922-2939.

  26. Kim, Yong-Gyoo, Lee, Young Hee, Joung, Wukchul. Temperature dependence of the thermoelectric inhomogeneity for type B thermocouples from 180 °C to 960 °C. Measurement science & technology, vol.28, no.5, 055006-.

  27. Hill, K. and Woods, D., “A Preliminary Assessment of the Non-Uniqueness of the Its-90 in the Range 500 °C to 660 °C as Measured with a Cesium-Filled, Pressure-Controlled, Heat-Pipe Furnace,” Temperature, Its Measurement and Control in Science and Industry, Vol. 6, pp. 215-219, 1992. 

  28. Marcarino, P., “Preliminary Results on Its-90 Non-Uniqueness between Freezing Points of Al and Ag,” Proc. of the Tempmeko’ 96, pp. 25-32, 1997. 

  29. 10.1063/1.1627253 

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  31. 10.1080/13682199.2000.11784341 

  32. Joung, Wukchul, Park, Jihye, Pearce, Jonathan V. Determination of the liquidus temperature of tin using the heat pulse-based melting and comparison with traditional methods. Metrologia, vol.55, no.3, 334-349.

  33. Joung, Wukchul, Pearce, Jonathan V, Park, Jihye. Comparison between the liquidus temperature and triple-point temperature of tin realized by heat pulse-based melting. Metrologia, vol.55, no.3, L17-L24.

  34. Joung, Wukchul, Pearce, Jonathan V, Park, Jihye. Comparison between the liquidus temperatures of tin samples having different impurity compositions and correction of the impurity effect. Metrologia, vol.56, no.4, 045005-.

  35. Marcarino, P. and Bassani, C., “Approximation of the ITS-90 between 660 °C and 962 °C Using the Sodium Vapour Pt Relation,” Temperature, Its Measurement and Control in Science and Industry, Vol. 6, pp. 209-214, 1992. 

  36. Merlone, A., Dematteis, R., and Marcarino, P., “Gas-Controlled Heat Pipes for Accurate Liquid-Vapor Transition Measurements,” International Journal of Thermophysics, Vol. 24, No. 3, pp. 695-712, 2003. 

  37. Merlone, A., Musacchio, C.. The mercury vapour pressure vs. temperature relation between (500 and 665)K. The Journal of chemical thermodynamics, vol.42, no.1, 38-47.

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