1. Boyko S.V., Yeroshenko A.M. (2011): Modelyuvannya fizyko-mekhanichnykh vlastyvostey modyfikovanoyi derevyny metodom skinchennykh elementiv [Modeling of physical and mechanical properties of modified wood using the finite element method] / Technical sciences and technologies: Bulletin of ChDTU 2.4:184–188 (in Ukrainian).
2. Dendyuk M.V., Pobereyko B.P., Sokolovskyy Y.I. (2003): Zastosuvannya metodu skinchen-nykh elementiv dlya rozrakhunku nestatsionarnykh poliv volohoperenesennya u vysushuvaniy derevyni [Application of the finite element method for the calculation of non-stationary moisture transfer fields in drying wood] / Forestry, Forest, Paper and Woodworking Industry 27:100-106. (in Ukrainian).
3. Denysyuk V.A., Kushpit A.S., Kushpit O.M. (2018) Analiz vplyvu vydu zʺyednanʹ za shyry-noyu 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).
4. DIN 68705-2:2014-10. Plywood – Part 2. Blockboard and laminboard for general use. Germany.
5. 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).