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Drying Technology
An International Journal
Volume 39, 2021 - Issue 7
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Research Article

Drying characteristics of log cross sections of Japanese cedar during hybrid kiln drying combined with dielectric heating

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Pages 925-931 | Received 21 Oct 2019, Accepted 14 Feb 2020, Published online: 02 Mar 2020

References

  • Lee, N. H.; Hayashi, K. Effect of End-Covering and Low Pressure Steam Explosion Treatment on Drying Rate and Checking during Radio-Frequency/Vacuum Drying of Japanese Cedar Log Cross Sections. Forest Prod. J. 2000, 50, 73–78.
  • Lee, N. H.; Zhao, X. F.; Chang, S. H.; Shin, I. H. Effect of End-Taping Treatments on Prevention of Drying Defects during Radio-Frequency/Vacuum Drying of Domestic Yellow Poplar Log Cross Section. J. Korean Wood Sci. Technol. 2008, 36, 59–68. (in Korean). DOI: 10.5658/WOOD.2013.41.5.456.
  • Kubler, H. Drying Tree Disks Simply without Defects. Forest Prod. J. 1974, 24, 33–35.
  • Kubler, H. Formation of Checks in Tree Stems during Heating. Forest Prod. J. 1977, 27, 41–46.
  • Kang, W.; Lee, N. H.; Choi, J. H. A Radial Distribution of Moistures and Tangential Strains within a Larch Log Cross Section during Radio-Frequency/Vacuum Drying. Holz Roh. Werkst. 2004, 62, 59–63. DOI: 10.1007/s00107-003-0432-3.
  • Choi, J. H.; Lee, N. H. Effect of End-Taping and Removal of Sapwood on Radial Distribution of Moisture Content and Tangential Strains during Radio-Frequency/Vacuum Drying of Cedrela Sinsensis Log Cross Sections. J. Wood Sci. 2004, 50, 315–320. DOI: 10.1007/s10086-003-0577-z.
  • Lee, N. H.; Li, C.; Choi, J. H.; Hwang, U. D. Comparison of Moisture Distribution along Radial Direction in a Log Cross Section of Heartwood and Mixed Sapwood and Heartwood during Radio-Frequency/Vacuum Drying. J. Wood Sci. 2004, 50, 484–489. DOI: 10.1007/s10086-003-0605-z.
  • Lee, N. H.; Hayashi, K.; Jung, H. S. Effect of Radio-Frequency/Vacuum Drying and Mechanical Press-Drying on Shrinkage and Checking of Walnut Log Cross Sections. Forest Prod. J. 1998, 48, 73–79.
  • Li, C.; Lee, N. H. Effect of External Compressive Load on Tangential Strain Behavior in Japanese Larch Log Cross Sections during Radio-Frequency/Vacuum Drying. J. Wood Sci. 2007, 53, 291–295. DOI: 10.1007/s10086-006-0869-1.
  • Choi, J. H.; Lee, N. H. Investigation of Radial Distributions of Tangential Strains and of Moisture Contents within a Log Cross Section by Circumferential Slices. J. Korean Wood Sci. Technol. 2008, 36, 20–28.
  • Poulin, A.; Dostie, M.; Proulx, P.; Kendall, J. Convective Heat and Mass Transfer and Evolution of the Moisture Distribution in Combined Convection and Radio Frequency Drying. Drying Technol. 1997, 15, 1893–1907. DOI: 10.1080/07373939708917335.
  • Miller, D. G. Combining Radio-Frequency Heating with Kiln-Drying to Provide Fast Drying without Degrade. Forest Prod. J. 1971, 21, 17–21.
  • Kawabe, J.; Mori, M. Vacuum Drying of Wood with High Frequency Heating, 1: On the Drying Rate, Comparing with Kiln Drying. Bull. Kyushu Univ. Forests 1984, 54, 125–135. (in Japanese).
  • Sasaki, K.; Kawabe, J.; Mori, M. Vacuum Drying of Wood with High Frequency Heating, 2: The Pressure within Lumber during Evacuation and Drying. Bull. Kyushu Univ. Forests 1987, 57, 245–265. (in Japanese).
  • Kawai, Y.; Kobayashi, Y.; Norimoto, M. Hybrid Drying with High-Frequency and Hot Air under Atmospheric Pressure (2). Mokuzai Gakkaishi 2001, 47, 7–13. (in Japanese).
  • Lee, N. H.; Li, C.; Choi, J. H.; Hwang, U. D.; Jin, Y. M. Determination of Trend of a Radial Distribution of Moisture Content within a Log Cross Section by Oven-Drying of Circumferential Slices (II) –for Some of Domestic Softwoods. Mokchae Konghak 2004, 32, 19–25. (in Korean).
  • Sachs, G. Der Nachweis Innerer Spannungen in Stangen Und Rohren. Zeitshrift Fur Metallkunde 1927, 19, 352–357.
  • Avramidis, S.; Liu, F. Drying Characteristics of Thick Lumber in a Laboratory Radio-Frequency Dryer. Drying Technol. 1994, 12, 1963–1981. DOI: 10.1080/07373939408962215.
  • Koumoutsakos, A.; Avramidis, S.; Hatzikiriakos, S. G. Radio Frequency Vacuum Drying of Wood II. Experimental Model Evaluation. Drying Technol. 2001, 19, 85–98. DOI: 10.1081/DRT-100001353.
  • Zongying, F.; Avramidis, S.; Weng, X.; Cai, Y.; Zhou, Y. Influence Mechanism of Radio Frequency Heating on Moisture Transfer and Drying Stress in Larch Boxed-Heart Square Timber. Drying Technol. 2019, 37, 1625–1632. DOI: 10.1080/07373937.2018.1526191.
  • Kanagawa, Y. Resin Distribution in Lumber Dried by Vacuum Drying Combined with Radio-Frequency. Proceedings of the IUFRO International Wood Drying Symposium, Seattle, Washington, USA, 1989; pp 158–163.
  • Avramidis, S.; Liu, F.; Neilson, B. J. Radio-Frequency/Vacuum Drying of Softwoods: Drying of Thick Western Red Cedar with Constant Electrode Voltage. Forest Prod J. 1994, 44, 41–47.
  • Lee, N. H.; Luo, J. Y. Effect of Steam Explosion Treatments on Drying Rates and Moisture Distributions during Radio-Frequency/Vacuum Drying of Larch Pillar Combined with a Longitudinal Kerf. J. Wood Sci. 2002, 48, 270–276. DOI: 10.1007/BF00831346.
  • Forestry and Forest Products Research Institute. Wood Industry Handbook. MARUZEN: Tokyo, Japan, 2004; pp 135–136. (in Japanese).

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