STUDY OF MODIFIED WOOD BY ELECTRON MICROSCOPY
DOI:
https://doi.org/10.37482/0536-1036-2020-1-190-199Keywords:
wood, microstructure, modification, electron microscopyAbstract
Wood modification is a popular method for improvement of wood properties of low-value deciduous species. The method of pressing across the wood fibers preliminarily plasticized with urea was used in order to increase the strength properties. Impregnation with Biol mineral oil was used for the improvement of anti-friction properties. Metallic nickel is introduced into wood in the form of a continuous metal film lining the inner surface of wood cavities for thermal conductivity increasing. Studies carried out with the listed catalog samples using scanning and upright electron microscopes allowed to find, that: carbamide is located in the walls of cells and manifests itself in the cavities very sharply in the form of single crystals; pressing of wood plasticized with urea leads to flattening of anatomical elements without their destruction; Biol oiling with its low content spreads as a film on the cell walls and is not visualized; metallic nickel is present in wood in the form of film and individual elements on the cell walls. Weight and atomic microanalyses of the longitudinal section were performed for it.
For citation: Shamaev V.A. Study of Modified Wood by Electron Microscopy. Lesnoy Zhurnal [Russian Forestry Journal], 2020, no. 1, pp. 190–199. DOI: 10.37482/0536-1036-2020-1-190-199
Funding: The research materials presented in the article were obtained within the framework of the state assignment of the Ministry of Education and Science of the Russian Federation No. 11.3960.2017/4.6.
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Патент № 2339505 Российская Федерация, МПК В27К 5/06, С23С 16/16. Способ модификации древесины / Шамаев В.А., Уэльский А.А., Гребенников А.В., Стороженко П.А., Рахманов В.Г. [Shamaev V.A., Uehl’skij A.A., Grebennikov A.V., Storozhenko P.A., Rakhmanov V.G. Method of Wood Modification. Patent RF, no. 2339505, 2008].
Патент № 2539022 Российская Федерация, МПК F16C 17/12, F16C 33/12, F16C 33/18. Подшипник скольжения и способ изготовления / Шамаев В.А., Медведев И.Н., Галаворян Р.А., Манаев В.А. [Shamaev V.A., Medvedev I.N., Galavorjan R.A., Manaev V.A. Plain Bearing and Method of Its Manufacture. Patent RF, no. 2539022, 2015].
Шамаев В.А. Подшипники скольжения из модифицированной древесины // Вестн. машиностроения. 2010. № 7. С. 45–48. [Shamaev V.A. Bearings of Modified Wood. Vestnik mashinostroyeniya [Russian Engineering Research], 2010, no. 7, p. 45–48].
Шамаев В.А., Медведев И.Н. Модифицированная древесина нового поколения для деталей трения // Полимерные композиты и трибология (ПоликомТриб–2011): тез. докл. междунар. науч.-техн. конф., Гомель, Беларусь, 27–30 июня 2011 г. Гомель: ИММС НАНБ, 2011. С. 225–226. [Shamaev V.A., Medvedev I.N. Modified Wood of New Generation for Friction Parts. Polymer Composites and Tribology (POLICOMTRIB-2011): Abstracts of the International Scientific and Technical Conference, Gomel, Belarus, June 27–30, 2011. Gomel, IMMS NANB Publ., 2011, pp. 225–226].
Шамаев В.А., Никулина Н.С., Медведев И.Н. Модифицирование древесины. М.: Флинта, Наука, 2013. 448 с. [Shamaev V.A., Nikulina N.S., Medvedev I.N. Modification of Wood. Moscow, Nauka Publ., 2013. 448 p.].
Dykstra M.J., Reuss L.E. Biological Electron Microscopy: Theory, Techniques, and Troubleshooting. Springer US, 2003. 534 p. https://doi.org/10.1007/978-1-4419-9244-4
Igaz R., Macek Š., Zemiar J. The Influence of Unidirectional Cyclic Bend Loading on Initial Relaxation Speed of Beech Lamellas. Acta Facultatis Xylologiae Zvolen, 2014, vol. 56, pp. 27–35.
Kúdela J., Rešetka M. Influence of Pressing Parameters on Dimensional Stability and Selected Properties of Pressed Beech Wood. I. Dimensional Stability and Density. Acta Facultatis Xylologiae Zvolen, 2012, vol. 54(1), pp. 15–24.
Lekounougou S., Kocaefe D., Oumarou N., Kocaefe Y., Poncsak S. Effect of Thermal Modification on Mechanical Properties of Canadian White Birch (Betula papyrifera). International Wood Products Journal, 2011, vol. 2, iss. 2, pp. 101–107. https://doi.org/10.1179/2042645311Y.0000000016
Maunsbach A.B., Afzelius B.A. Biomedical Electron Microscopy: Illustrated Methods and Interpretations. London, Academic Press, 1998. 548 p.
Medvedev I.N., Shamayev V.A., Parinov D.A. Resource-Saving Production Sleepers of Modified Wood. Put’ i putevoye khozyaystvo [Railway Track and Facilities], 2018, no. 11, pp. 30–32.
Proceedings of IUFRO Meetings in 2006: The 5th International Symposium on Wood Structure and Properties, Sliak, Slovakia, September 3–6, 2006. Ed. by S. Kurjatko, J. Kúdela, R. Lagana. Zvolen, Slovakia, Arbora Publishers, 2006. 522 p.
Sandberg D., Haller P., Navi P. Thermo-hydro and Thermo-hydro-mechanical Wood Processing: An Opportunity for Future Environmentally Friendly Wood Products. Wood Material Science & Engineering, 2013, vol. 8, no. 1, pp. 64–88. https://doi.org/10.1080/17480272.2012.751935
Shamaev V., Medvedev I., Parinov D. Study of Modified Wood as a Bearing Material for Machine-Building. Proceedings of the International Conference “Aviamechanical Engineering and Transport (AVENT 2018). 2018, vol. 158, pp. 478–482. https://dx.doi.org/10.2991/avent-18.2018.92
Shamaev V., Medvedev I., Parinov D., Shakirova O., Anisimov M. Investigation of Modified Wood as a Material Power Transmission Pole Produced by Self-Pressing Method. Acta Facultatis Xylologiae Zvolen, 2018, vol. 60(2), pp. 25–32. https://doi.org/10.17423/afx.2018.60.2.02
Shamaev V., Parinov D., Medvedev I. Wood Modification by Pressing. Engineering Studies, 2018, vol. 10, iss. 3(2), pp. 708–718.
Šmidriaková M., Kollár M. Modification of Resorcinol Adhesives with Biopolymers for Gluing of Wood with Higher Moisture Content. Acta Facultatis Xylologiae Zvolen, 2011, vol. 53(1), pp. 33–41.
The Official Website of Accoya Company. Available at: https://www.accoya.com/ (accessed 23.05.19).
Tshabalala M.A., McSweeny J.D., Rowell R.M. Heat Treatment of Wet Wood Fiber: A Study of the Effect of Reaction Conditions on the Formation of Furfurals. Wood Material Science & Engineering, 2012, vol. 7, iss. 4, pp. 202–208. https://doi.org/10.1080/17480272.2012.669406
Wagenführ R., Scheiber C. Holzatlas. Leipzig, WEB Fachbuchverlag, 1989. 720 S.
Wahyudi I., Ishiguri F., Makino K., Tanabe J., Tan L., Tuhumury A. et al. Growth Characteristics and Wood Properties of 26-Year-Old Eucalyptus alba Planted in Indonesia. International Wood Products Journal, 2015, vol. 6, iss. 2, pp. 84–88. https://doi.org/10.1179/2042645315Y.0000000003