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Thermal Analysis of Ceramic Materials

세라믹스 재료의 열분석

  • Received : 2019.12.08
  • Accepted : 2019.12.18
  • Published : 2019.12.31

Abstract

Thermal analysis means the analysis of a change in a property of a sample, which is related to an imposed temperature alteration. Measurements are usually made with increasing temperature, but isothermal measurements or measurements made with decreasing temperatures are also possible. In fact, any measuring technique can be made into a thermal analysis technique by adding thermal control. Simultaneous use of multiple techniques increases the power of thermal analysis, and modern instrumentation has permitted extensive growth of application. The basic theories of thermal analysis are well developed and some of them are explained in this paper.

Keywords

References

  1. T. Lever, P. Haines, J. Rouquerol, E. Charsley, P. Eckeren and D. Burlett, "ICTAC nomenclature of thermal analysis," Pure Appl. Chem., 84 [4] 545-553 (2014).
  2. M. E. Brown, Introduction to Thermal Analysis; Vol. 1, pp. 6-10, Kluwer Academic Publishers, New York, 2001.
  3. A. Clout, A. Buanz, T. Prior, C. Reinhard, Y. Wu, D. Hare, G. Williams and S. Gaisford, "Simultaneous Differential Scanning Calorimetry-Synchrotron X-ray Powder Diffraction: A Powerful Technique for Physical Form Characterization in Pharmaceutical Materials," Anal. Chem., 88 10111-10117 (2016). https://doi.org/10.1021/acs.analchem.6b02549
  4. G. Safaraliev, S. Emirov, Sh. Shabanov, G Kardashova, R. Akhmedov, F. Al-Heyun and S. Shabanov, "A reversible high-pressure second-order phase transition in silicon carbide ceramics SiC-BeO," Bull. Russ. Acad. Sci.: Phys., 80 [5] 500-503 (2016). https://doi.org/10.3103/S1062873816050154
  5. B. K. Ryu, Introduction to Glass Engineering, pp. 225-228, Pusan National University Publisher, Pusan, 2017.
  6. Y. Jeon, J. Cha, D. Kim, B. Lee and B. Ryu, "Crystallization Kinetics by Thermal Analysis (DTA) on Starting Glass Compositions for PDP(Plasma Display Panel) Rib," J. Korean Ceram. Soc., 39 [8] 721-727 (2002). https://doi.org/10.4191/KCERS.2002.39.8.721
  7. S. Lee, B. Ryu and H. Park, "Crystallization Behavior of $CaO.Al_2O_3.2SiO_2$ Glass with Kinetic Parameters." J. Korean Ceram. Soc., 31 [12] 1545-1551 (1994).
  8. R. Brown, Introduction to Instrumental Analysis, pp. 933, McGraw-Hill, New York, 1987.
  9. Y. Zeng and Y. Lin, "A transient TGA study on oxygen permeation properties of perovskite-type ceramic membrane," Solid State Ionics, 110 [3-4] 209-221 (1998). https://doi.org/10.1016/S0167-2738(98)00136-2
  10. Japan Society of Thermophysical Properties, Thermophysical Properties Handbook, Yokendo, Tokyo, 2008.
  11. AIST/Network Database System for Thermophysical Property Data, http://riodb.ibase.aist.go.jp/TPDB/DBGVsupport/
  12. J. Park, I. Bang and S. Lee, "Phase Transition and Thermal Expansion Behavior of Zirconia Setter Fabricated from Fused CaO Stabilized Zirconia," J. Korean Ceram. Soc., 56 [2] 184-190 (2019). https://doi.org/10.4191/kcers.2019.56.2.08
  13. J. Bae, J. Cha, D. Kim, Y. Kim and B. Ryu, "Structure and Antibacterial Property of ZnO-$B_2O_3-P_2O_5$ Glasses," J. Korean Ceram. Soc., 55 [2] 135-139 (2018). https://doi.org/10.4191/kcers.2018.55.2.03
  14. N. Yamada, "Measurement Methods of Thermal Expansion Property of Solid Materials and Thin Films," Ceramics, 46 [11] 911-915 (2011).
  15. H. Watanabe, Y. Nishimoto, H. Kato, R. Ozao, H. Kawaji, T. Kimura, N. Koga, Y. Sawada, Y. Shimizu, A. Yamazaki, H. Yoshida and N. Yamada, "Round-Robin Test for Measurement of Thermal Expansion of Solid Materials by Thermomechanical Analyzer," Netsu Sokute, 35 [4] 164-175 (2008).
  16. M. Agne, P. Voorhees and G. Snyder, "Phase Transformation Contributions to Heat Capacity and Impact on Thermal Diffusivity, Thermal Conductivity, and Thermoelectric Performance," Adv. Mater., 31 [35] 1902980 (2019) https://doi.org/10.1002/adma.201902980
  17. V. John, Introduction to Engineering Materials; Phase Transformations and Diffusion, pp.153-166, Palgrave Macmillan, London, 1992.

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