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Glued Floor Coverings Based on Wooden End Blocks

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Abstract

A technology for manufacturing glued floor coverings based on wooden end blocks is proposed. The distinctive feature of the technology consists in the preliminary gluing of wooden blocks with an increased cross section, followed by cutting end plates for the coating from these blocks, with further impregnation and gluing of them onto the base. The implementation of this technology makes it possible to produce artistic floor coverings having a high level of wear resistance with a reduced material consumption and reduced production costs.

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REFERENCES

  1. O. A. Gamova and V. A. Povalyaeva, “Review and State of the Russian Market of Flooring Materials,” in Collection of Articles of International Research/Practice Conference “Science and Business: Problems and Perspectives for the Development of Entrepreneurial Activity (Aeterna, Shakhty, 2016), pp. 44–46.

  2. V. V. Molodin, “Decorative parquet: production aspect of architectural design,” Arkhitekton: Izv. Vuzov, No. 4, 23 (2014).

    Google Scholar 

  3. V. S. Dolgushev, “New parquet covering of plane with convex pentagons,” Amurskii Nauch. Vest., No. 2, 72–81 (2016).

  4. I. E. Papulova and A. A. Mityashina, “System Analysis of the Timber Species Used for Parquet,” in Proceedings of the 20th All-Russia Research/Practice Conference “Society. Science. Innovations (NPK-2020)” (Vyatka Gos. Univ., Kirov, 2020) Vol. 2, pp. 296–302.

  5. V. A. Shamaev, Modification of Timber (Voronezh Gos. Lesotekh. Univ., Voronezh, 2016) [in Russian].

    Google Scholar 

  6. D. V. Sheikman, “Calculation of the strength of parquet stave,” Derevoobrabatyvayushchaya Promyshlennost’, No. 3, 26–31 (2020).

    Google Scholar 

  7. I. N. Medvedeva and Yu. M. Kharitonova, “Influence of dry-mixture components on the formation of properties of flooring materials,” Tsement i Ego Primenenie, No. 2, 117–120 (2009).

    Google Scholar 

  8. V. S. Rudnov, E. V. Vladimirova, I. K. Domanskaya, and E. S. Gerasimova, Construction Materials and Products (Ural Federal Univ., Yekaterinburg, 2018) [in Russian].

    Google Scholar 

  9. V. A. Sokolova, K. M. Kuznetsova, G. K. Parfenopulo, E. Yu. Tret’yakova, and M. Gazakbaev, “New Methods for Manufacturing Competitive Construction Products Made of Low-Grade Timber (St. Petersburg Gos. Lesotekh. Univ., 2019), pp. 295–301 [in Russian].

    Google Scholar 

  10. A. P. Pichugin, M. O. Batin, A. Yu. Kudryashov, and L. A. Mitina, Wood Floors with Enhanced Resistance for Production Agricultural Buildings (Novosibirsk Gos. Agricult. Univ., Novosibirsk, 2017) [in Russian].

    Google Scholar 

  11. O. N. Sarakuz and G. I. Goryainov, “Single-component bituminous-rubber cement with enhanced heat-resistance,” Estest. Matem. Nauki Sovr. Mire, No. 29, 168–175 (2015).

  12. S. E. Loginova, E. A. Kurilova, N. V. Nikonova, and S. N. Gladkikh, “Modern glues for reliable parquet floorings,” Klei. Germetiki. Tekhnologii, No. 6, 21–31 (2020).

    Google Scholar 

  13. Yu. N. Shurygina, V. V. Sokolova, and D. S. Baruta, “Polyurethane glue for fixing thermal-insulating materials based on foamed glass,” Klei. Germetiki. Tekhnologii, No. 4, 9–15 (2019).

    Google Scholar 

  14. S. I. Mironova, A. V. Tikhomirov, and S. E. Kiryutina, “Studies of the resistance of glue junctions of wooden constructions on the basis of a single-component polyurethane glue to temperature and moisture effect,” Vest. Grazhd. Inzh. No. 2, 90—95 (2017).

    Google Scholar 

  15. M. S. Kuznetsova, “Classification of methods and techniques for protection of timber,” Alleya Nauki 2, 655–658 (2018).

    Google Scholar 

  16. V. A. Shamaev and A. M. Volgankin, “Development of the Technology for the Production of Nanostructured Timber for Manufacturing Butt-End Parquet,” in Proceedings of the Conference “Developments of Young Researchers of Voronezh Oblast for the Benefit of the Region” (Voronezh Gos. Lesotekh. Univ., Voronezh, 2018), pp. 100–102.

  17. S. S. Glazkov, “Stabilization of wood-block parquet using an epoxy resin,” Inzh.-Stroit. Zh., No. 7, 57–65 (2015).

    Google Scholar 

  18. N. A. Tret’yakova, “Viability of glue compositions as a factor for controlling adhesion strength,” Klei. Germetiki. Tekhnologii, No. 8, 13–17 (2019).

    Google Scholar 

  19. A. V. Meshchenkova, “Studies of the longevity of glue junction of wooden elements using epoxy glues,” Stud. Vestn., No. 39, 48–54 (2019).

    Google Scholar 

  20. E. M. Razin’kov, V. S. Murzin, and E. V. Kantieva, Technology and Equipment for Glue-Based Materials (Voronezh Gos. Lesotekh. Univ., Voronezh, 2018) [in Russian].

    Google Scholar 

  21. A. R. Birman, Yu. I. Tsoi, V. G. Lukin, and V. A. Sokolova, “Options for Improvement of the Technology of Gluing Wood Using A Cold Procedure,” in Proceedings of the 20th International Research/Practice Conference “Wooden Boards: Theory and Practice” (St. Petersburg Gos. Lesotekh. Univ., St. Petersburg, 2017), pp. 45–48 [in Russian].

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Correspondence to S. A. Ugryumov.

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Translated by O. Polyakov

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Birman, A.R., Ugryumov, S.A., Tambi, A.A. et al. Glued Floor Coverings Based on Wooden End Blocks. Polym. Sci. Ser. D 15, 400–403 (2022). https://doi.org/10.1134/S1995421222030078

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  • DOI: https://doi.org/10.1134/S1995421222030078

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