А study of the influence of the transverse dimensions of beech of strips on the form of stability of furniture board
DOI:
https://doi.org/10.36930/42194521Keywords:
common, forest or European beech (Fagus sylvatica L.), furniture board, technology, furniture board designs, form of stability, deformation, gluing, polyvinyl acetate adhesives, mathematical model, stress.Abstract
It has been established that the wood of hardwood species in a massive form, in particular defect-free pieces of common beech wood (Fagus sylvatica L.) is a suitable resource for the manufacture of furniture panels, since glued structures with the correct selection of transverse dimensions of the rails have the acceptance of internal stresses, which is reflected in the form of panel glued structures. The regularities of the influence of the thickness and width of the slats on the dimensional stability of furniture boards made of hardwood species, in particular common beech (Fagus sylvatica L.), were obtained. Based on the results of experimental studies, an adequate regression equation of the second order was obtained, using the B-plan, to determine the arrow of the deflection of glued shields, depending on the thickness and width of the blanks. It was found that the minimum deviation Smin = 0.067 mm, taken as an absolute value, can be obtained by fixing the dimensional parameters of the slats of the furniture board: the thickness of the slats from common beech (Fagus sylvatica L.) Bthickness (x1) = 32 mm; width of the rail made of common beech (Fagus sylvatica L.) (tangential) Bwidth (x2) = 36 mm. The influence of variable factors on dimensional stability has been determined, in particular, it should be noted that variable factors affect differently: thickness – inversely proportional, i.e. ensures dimensional stability of the structure, width – directly proportional, i.e. increases the deflection beam with increasing width. The second factor width (x2) – the width of the slats – has the greatest effect on the dimensional stability of furniture boards made of hardwood species, in particular common beech (Fagus sylvatica L.) with alternate stacking. The influence of the first factor Bthickness (x1) on dimensional stability compared to the second factor width (x2) is 1.32 times smaller. It was established that the deviations from flatness along the deflection arrow for most samples of experimental slabs meet the requirements of regulatory documents, except for one where 84 mm wide rails were used. When laying a rail with a thickness of 16 mm, the width of the rail cannot be wider than 70 mm, since the value of the deflection arrow from flatness will be greater than the standard value, i.e. for a width of furniture boards up to 500 mm, it is 0.4 mm (according to the 13th degree of accuracy). Practical recommendations for the production of furniture boards from hardwood species, in particular common beech (Fagus sylvatica L.): it is necessary to use a ratio of sides in the cross section of the rails of 1:3, i.e. the width of the rails for a furniture board thickness of 16 mm should be 40-50 mm, with with a thickness of 24 mm, it should be 70-75 mm, with a thickness of 32 mm, it should be 85-90 mm, since a decrease in the width of the workpiece leads to an increase in cost (the number of operations and glue consumption increases), and an increase in width leads to a deterioration of dimensional stability; selection of rails by width and thickness with alternating laying, giving preference to radial ones, application of glue to the edges of the rails with a consumption of 200-220 g/m2, gluing in wicks (mode parameters: temperature – 90-92 ºС, exposure time – 25-30 min , pressure – 0.9-1.5 MPa), technological aging (humidity – 50±5%, temperature 20±2 ºС) for 6-9 hours.
References
Bykovsky V.N. , Sokolovsky B.S. (1949) Derevyannye kleenye konstruktsyy [Wooden glued constructions. – Mashstroyizdat Publishing House, 151-153. (in Russian).
Denysyuk V.A., Kushpit A.S., Kushpit O.M. (2018) Analiz vplyvu vydu zʺyednanʹ za shyrynoyu na formostiykistʹ meblevykh shchytiv [Analysis of the influence of the type of joints by width on the dimensional stability of furniture boards] / Comprehensive quality assurance of technological processes and systems: theses materials, add. VIII International science – practice conf. (Chernihiv, May 10-12, 2018) . – Chernihiv. Vol. 1:209-210. (in Ukrainian).
DIN 68705-2:2014-10. Plywood – Part 2. Blockboard and laminboard for general use. Germany.
Gayda S.V. (2007). А problem of arboreal raw material is in Europe and Ukraine. Forestry, Forest, Paper and Woodworking Industry 33:60-63 (in Ukrainian).
Gayda S.V. (2007). Матеріали для виготовлення виробів з деревини / Навч. посібн. – Львів: ВМС. – 160 с. (in Ukrainian).
Gayda S.V. (2007). Проблема деревної сировини у Європі та Україні / Problema derevnoyi syrovyny u Yevropi ta Ukrayini [А problem of arboreal raw material is in Europe and Ukraine]. Forestry, Forest, Paper and Woodworking Industry 33:55-63 (in Ukrainian).
Gayda S.V. (2010). A comparative analysis of physical and mechanical parameters of variously designed glued boards made of post-consumer recovered wood. Forestry, Forest, Paper and Woodworking Industry 36:81-91.
Gayda S.V. (2011). Recycled of post-consumer wood is for the production of particleboard in Ukraine / Proceedings of the XXI International symposium Adhesives in Woodworking Industry (Slovakia, Zvolen Juve 29 – July 01. 2011). TU Zvolen. – P. 108-121.
Gayda S.V. (2013). Resource-saving technologies of recycling of post-consumer wood. Scientific Bulletin of NULES of Ukraine: Technology and Energy of agroindustrial complex 185(2).271-280 (in Ukrainian).
Gayda S.V. (2013). Techniques for utilization of post-consumer wood in the production of fuel pellets and briquettes. Proceedings of the XXI International symposium Adhesives in Woodworking Industry (Slo-vakia, Zvolen Juve 23-26. 2013). TU Zvolen, 119-130.
Gayda S.V. (2013). Technologies and recommendations on the utilization of post-consumer wood in woodworking industry. Forestry, Forest, Paper and Woodworking Industry 39(1).48-67 (in Ukrainian).
Gayda S.V. (2013). Розроблення технології виробництва паливних гранул на основі енергетичного потенціалу вживаної деревини [Development of technology for the production of fuel pellets based on the energy potential of used wood]. Scientific Bulletin of UNFU 23.14:83-93. (in Ukrainian).
Gayda S.V. (2015). Investigation of physical and mechanical properties of post-consumer wood (PCW). Actual problems of forest complex 43:175-179 (in Russian).
Gayda S.V. (2015). Tekhnologії і fіziko-mekhanіchnі vlastivostі stolyarnikh plit іz vzhivanoї derevini [Technology and physical and mechanical properties blockboard made of post-consumer wood]. Technical service of agriculture, forestry and transport systems 3(1).145-152, (in Ukrainian).
Gayda S.V. (2016). A investigation of form of stability of variously designed blockboards made of post-consumer wood. ProLigno 12(1).22-31.
Gayda S.V. (2016). Formoustoychivost' stolyarnykh plit iz vtorichno ispol'zuemoy drevesin [A form of stability of blockboards made of post-consumer wood]. Actual problems of forest complex 46:148-153, (in Russian).
Gayda S.V. (2017). A technology and properties of furniture board (FB) made of post-consumer wood (PCW). Actual problems of forest complex 48:34-38 (in Russian).
Gayda S.V. (2017). Використання нечітких експертних систем для підтримки прийняття рішень в процесі сортування вживаної деревини / Vykorystannya nechitkykh ekspertnykh system dlya pidtrymky pryynyattya rishenʹ v protsesi sortuvannya vzhyvanoyi derevyny [Using fuzzy expert systems for decision sup-port in the process of post-consumer wood sorting]. Forestry, Forest, Paper and Woodworking Industry 43:5-20 (in Ukrainian). doi: https://doi.org/10.36930/42174301
Gayda S.V. (2017). Комплексні дослідження зміни пружних властивостей вживаної деревини ялиці з віком / Kompleksni doslidzhennya zminy pruzhnykh vlastyvostey vzhyvanoyi derevyny yalytsi z vikom [The complex studies on the change of elastic properties of post-consumer fir wood with age]. Forestry, Forest, Pa-per and Woodworking Industry 43:58-72 (in Ukrainian). doi: https://doi.org/10.36930/42174308
Gayda S.V. (2018). A investigation and analysis of characteristics of solid furniture boards made of post-consumer wood. Forestry, Forest, Paper and Woodworking Industry, 44, 15-25. https://doi.org/10.36930/42184402 (in Ukrainian).
Gayda S.V. (2018). Doslidzhennya ta analiz kharakterystyk shchytovykh konstruktsiy iz vzhyvanoyi derevyny [A investigation and analysis of characteristics of solid furniture boards made of post-consumer wood]. Forestry, Forest, Paper and Woodworking Industry 44:14-24 (in Ukrainian).
Gayda S.V. (2018). Strength of combined blockboard made of post-consumer wood (PCW). Bulletin of KhNTUA 197:3-9, (in Ukrainian).
Gayda S.V. (2018). Технологія МДФ-фасадів / Tekhnolohiyi MDF-Fasadiv [MDF Facade Technologies]. Forestry, Forest, Paper and Woodworking Industry 44:70-83 (in Ukrainian). doi: https://doi.org/10.36930/42184410
Gayda S.V. (2019). Scientific and technical basis of the use of used wood in woodworking: thesis of the Doctor of Technical Sciences in the specialty 05.23. – Lviv: UNFU. – 465 (in Ukrainian).
Gayda S.V., Maksymiv V.M. (2007). Analysis, features, problems and experience of the use of additional resources of raw material – wastes and of used wood. Forestry, Forest, Paper and Woodworking Industry 33:63-73 (in Ukrainian).
Gayda S.V., Bilyy Ya.M. (2016). Doslidzhennya formostiykosti kleyenykh shchytiv iz vzhyvanoyi derevyny [The investigation of the shape stability of glued panels made of post-consumer wood]. Forestry, Forest, Paper and Woodworking Industry 42: 33-51. , (in Ukrainian).
Gayda S.V., Bilyy Ya.M. (2016). The investigation of the shape stability of glued panels made of post-consumer wood. Forestry, Forest, Paper and Woodworking Industry, 42, 69-79. https://doi.org/10.36930/42164211 (in Ukrainian).
Gayda S.V., Dyak T.P. (2011). The analysis of economic efficiency of post-consumer wood use for par-ticleboard manufacture for LLC Swisspan Limited // Forestry, Forest, Paper and Woodworking Industry 37.2:129-136. doi: https://doi.org/10.36930/421137221
Gayda S.V., Kiyko O.A. (2013). Технология очистки вторично используемой древесины иглофре-зерными станками [The technology of cleaning recycled wood with needle milling machines] // Actual prob-lems and prospects of the development of LPK: materials II NTK., September 9-11, 2013 – Kostroma. – P. 36-39. (in Russian).
Gayda S.V., Kiyko O.A. (2018). Shape stability as a quality criterion for PCW-made blockboards. Pro-ceedings of the Forestry Academy of Sciences of Ukraine, 17, 185-192. https://doi.org/10.15421/411834 (in Ukrainian)
Gayda S.V., Maksimiv V.M., Kiyko O.A., Ferenc O.B. (2013). Залишки деревини та деревина після споживання. Класифікація. Терміни та визначення [Wood residues and post-consumer wood. Classification. Terms and definitions] / Agreement No. 08.24-11-1: draft international standard ISO. – Lviv: NLTU of Ukraine – 53 p. (in Ukrainian).
Gayda S.V., Voronovich V.V. (2011). Comparative analysis of bending particularities for various post-consumer wood species and age categories. Forestry, Forest, Paper and Woodworking Industry 37(1). 84-88 (in Ukrainian).
Gayda S.V., Voytovych I.G. (2017). Durability and stability of elements for beam furniture products made from post-consumer wood (PCW) are investigated. Bulletin of KhNTUA 185:13-21 (in Ukrainian).
Gayda S.V. (2013). The technological solutions for recycling of post-consumer wood. Proceedings of I International Interdisciplinary Scientific Conference Formation of stable outlook as the basis of sustainable development (Ukraine, Lviv, 14-16 March 2013) UNFU: Lviv, 5-11.
GOST 13715:1978. Plity stolyarnye. Tekhnicheskie usloviya [Blockboards. Technical specifications]. Moskow: Publishing house of standards, (in Russian).
GOST 16483.3:1984. Drevesina. Metod opredeleniya predela prochnosti pri staticheskom izgibe [Wood. Method for determining the strength of static bending]. Moskow: Publishing house of standards, (in Russian), 1984. – 7 p.
Kiyko I.O. (2013) Possibilities of the woodworking industry's wastes using for manufacturing of the furniture boards with improved aesthetic properties . Technical University in Zvolen (Slovakia). Proceedings of the XXI symposium. Vydavatelstvo TU Zvolen, 107-112.
Kiyko, I.O (2014) Vplyv rozmiriv strukturnykh elementiv kleyenykh shchytiv na yikh formostiykistʹ. [The impact of the structural element sizes on the furniture board form stability]. Collection Bulletin UNFU, Lviv. Vol. 24(5).169-175 (in Ukrainian).
Kovalchuk L.M. (1973) Tekhnolohyya skleyvanyya [Technology of gluing]. – Forest industry, 208. (in Russian).
Kryvyk O.O., Mayevskyy V.O (2011) Dynamika zminy formostiykosti shchytiv kleyenykh z poyednannyam riznykh porid de- revyny [Dynamics of shape stability change for glued panels with a combination of different wood species]. Forestry, Forest, Paper and Woodworking Industry, Lviv. Vol. 37(1).30-33 (in Ukrainian).
Mayevskyy V.O, Benyah Yu.V. (2005). Investigations of stability of shape of Composite boards from oak solid. Collection Bulletin UNFU, Lviv. Vol. 15(5).199-208 (in Ukrainian).
Pardaev, A.S (2008). Modelyuvannya fizyko-mekhanichnykh vlastyvostey derevyny pry zvychayno-elementnomu analizi stolyarnykh vyrobiv [Modeling of physical and mechanical properties of wood during conventional elemental analysis of carpentry]. Collection Bulletin USTU, Ekaterinburg. Vol. 3:77-83 (in Russian).
Pardaev, A.S (2009). Otsinka yakisnykh pokaznykiv deformatyvnosti vyrobiv z derevyny na osnovi modelyuvannya navantazhenʹ i vplyviv [Increased form stability glued board of wood based on process modeling shrinkage and swelling]. Architecture and Construction, Minsk. Vol. 3(202).41-44 (in Russian).
Popov H.A. (1972) Skleyvanye drevesyny (proyzvodstvo kleenykh zahotovok) [Wood gluing (production of glued blanks)], 33. (in Russian).
Volynsky V.N. (2003) Tekhnolohyya kleenykh materyalov [Technology of glued materials], 280. (in Russian).
Voytovych I.G. (2010). Osnovi tekhnologії virobіv z derevini [The basic technology of wood]. – Textbook. –Lviv: Kraine andeljat. – 304 p. (in Ukrainian).
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