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Effect of accelerated ageing on some surface properties of UV-coated hackberry (Celtis australis L.) wood parquet

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The importance of UV-curable coatings is currently increasing. In the parquet industry, where UV systems are applied, it is beneficial to investigate new tree species as potential raw materials. This study was carried out to determine the effect of accelerated ageing on some surface properties of hackberry (Celtis australis L.) wood treated with UV system parquet varnish. UV system parquet varnishes were applied to hackberry wood surfaces in three and five layers, according to the requirements of industrial applications. The varnished surfaces were then exposed to UV rays for 252 and 504 h using UVA-340 lamps in a QUV ageing device. Glossiness, colour parameters, pendulum hardness and adhesion strength (pull-off) (MPa) were determined for the coated samples before and after ageing, and the results for the aged and unaged test samples were compared. Analysis of variance showed that the results were significant for all tests. The results for all tests varied by ageing time.
Słowa kluczowe
Rocznik
Strony
17--33
Opis fizyczny
Bibliogr. 49 poz., rys., tab.
Twórcy
autor
  • Bayburt University, Faculty of Arts and Design, Department of Interior Architecture and Environmental Design, Bayburt, Turkey
  • Polytechnic Institute of Viseu and Research Center for Natural Resources, Environment and Society (CERNAS) Viseu, Portugal
  • Golyaka Vocational and Technical Anatolian High School, Duzce, Turkey
  • Duzce University, Faculty of Forestry, Department of Forest Industry Engineering, Duzce, Turkey
  • Polytechnic Institute of Viseu and Research Center for Natural Resources, Environment and Society (CERNAS) Viseu, Portugal
  • Polytechnic Institute of Viseu and Research Center for Natural Resources, Environment and Society (CERNAS) Viseu, Portugal
autor
  • Efeler-Mesleki Egitim Merkezi, Aydın, Turkey
Bibliografia
  • Ayata U. [2019]: Effects of artificial weathering on the surface properties of ultraviolet varnish applied to lemonwood (Citrus limon (L.) Burm.). Bioresources 14: 8313-8323. DOI: 10.15376/biores.14.4.8313-8323
  • Ayata U., Cakicier N., Gurleyen L. [2021a]: Determination of the artificial aging performance of the apricot wood applied with UV system parquet varnish used indoors. Furniture and Wooden Material Research Journal 4: 40-50. DOI: 10.33725/mamad.922311
  • Ayata U., Cakicier N., Gurleyen L. [2021b]: Determination of some surface properties of UV curable varnish-applied cedar wood after artificial aging application. Furniture and Wooden Material Research Journal 4: in press. DOI: 10.33725/mamad.1005120
  • Ayata U., Çavuş V. [2018]: The determination of the surface adhesion resistance and pendulum hardness on the parquets applied UV varnish as single and double layers. Journal of Engineering Sciences and Design 6: 541-545. DOI: 10.21923/jesd.388346
  • Ayata U., Gurleyen L., Cakicier N. [2016]: The determination of the surface adhesion resistance and pendulum hardness values on laminated parquets of a UV system varnish applied oak wood derived by using different water-based paints, International Forestry Symposium, 07-10 December, Kastamonu, Turkey, p. 827-831
  • Ayata U., Gurleyen L., Esteves B., Gurleyen T., Cakicier N. [2017a]: Effect of heat treatment (ThermoWood) on some surface properties of parquet beech (Fagus orientalis Lipsky.) with different layers of UV system applied. BioResources 12: 3876-3889. DOI: 10.15376/biores.12.2.3876-3889
  • Ayata U., Gurleyen T., Gurleyen L., Esteves B., Çakicier N. [2017b]: Determination of some surface properties on single/double layer UV system parquet varnish layers applied and heat-treated (ThermoWood) wood at 212oC for 2 hours ash (Fraxinus excelsior). 5th International Symposium on Innovative Technologies in Engineering And Science, 29 September – 01 October 2017, Architecture and Construction University, Baku – Azerbaijan, p. 1318-1326
  • Ayata U., Sahin S., Esteves B., Gurleyen L. [2018a]: Effect of thermal aging on color and glossiness of UV system varnish applied laminated parquet layers. Bioresources 13: 861-868. DOI: 10.15376/biores.13.1.861-868
  • Ayata U., Sahin S., Gurleyen L., Esteves B. [2018b]: Effect of thermal aging on adhesion resistance strength of UV system varnish-applied laminated parquet layers. Multidisciplinary Studies-3 (Health and Natural Sciences), Edited by Ridvan Karapinar & Murat A. Kus, Ankara, Turkey, p. 301-311
  • Barański J., Klement I., Vilkovská T., Konopka A. [2017]: High temperature drying process of beech wood (Fagus sylvatica L.) with different zones of sapwood and red false heartwood. BioResources 12: 1861-1870. DOI: 10.15376/biores.12.1.1861-1870
  • Bhatt B.P., Verma N.D. [2002]: Some multipurpose tree species for agroforestry systems. Published by ICAR Research Complex for NEH Region, Umiam, Meghalaya, pp. 148
  • Bilgen S. [2010]: The effects of outside conditions over some characteristics of varnished juniper wood. Master’s thesis, Karabuk University, Graduate School of Natural and Applied Sciences, Department of Furniture and Decoration, Karabuk, Turkey
  • Cakicier N. [2007]: Changes due to weathering of surface finishing layers of wood. 234 p. Ph D. Thesis Istanbul University. Institute of Science and Technology, Istanbul. Turkey
  • Çavuş V. [2020]: Determination of some physical and mechanical properties of hackberry (Celtis australis L.) wood. 1. International Hazar Scientific Research Congress, Baku, Azerbaijan, 18-20 September, p. 912-927
  • Çavuş V. [2021]: Weathering performance of mulberry wood with UV varnish applied and its mechanical properties. BioResources 16: 6791-6798. DOI: 10.15376/biores.16.4.6791-6798
  • Clerc G., Brülisauer M., Affolter S., Volkmer T., Pichelin F., Niemz P. [2017]: Characterization of the ageing process of one-component polyurethane moisture curing wood adhesive. International Journal of Adhesion and Adhesives 72: 130-138. DOI: 10.1016/j.ijadhadh.2016.09.008
  • Cristea M.V., Riedl B., Blanchet P. [2010]: Enhancing the performance of exterior waterborne coatings for wood by inorganic nanosized UV absorbers. Progress in Organic Coatings 69: 432-441. DOI: 10.1016/j.porgcoat.2010.08.006
  • Cugen I. [2011]: Orman ormancılık kavramları ve terimleri sözlüğü (Botanik-Coğrafya-Çevre) (Ekoloji-Orman), Memleket ve Amenajman Haritaları Lejandı. Turhan Kitapevi, Ankara, Turkey. ISBN: 978-605-5593-32-2, 1409 p.
  • de Moura L.F., Brito J.O., Nolasco A.M., Uliana L.R., De Muniz G.I.B. [2013]: Evaluation of coating performance and colour stability on thermally rectified Eucalyptus grandis and Pinus caribaea var. hondurensis woods. Wood Research 58: 231-242
  • Gaur R.D. [1999]: Flora of the District Garhwal Northwest Himalaya with Ethnobotanical Notes. Srinagar, Dehradun; Transmedia Publication Center: p. 811
  • Gultekin H.C. [2014]: Önemli Orman Ağaçlarının Fidan Üretim Teknikleri (Doğal Yayılışları, Kullanım Alanları, Çiçeklenme Zamanları, Meyve veya Kozalak Toplama Zamanı, Tohum Toplama ve Çıkarma Yöntemleri, Tohum Özellikleri, Tohum
  • Uygulanacak Ön İşlemler, Fidanlık Tekniği). Çeşitli Yayınlar Serisi No: 26, Müdürlük Yayın No: 271, ISSN: 1300-395X, 338 p.
  • Gurleyen L. [2020]: Effect of artificial weathering on the some surface properties of UV system parquet varnish applied to persian silk (Albizia julibrissin) wood. Turkish Journal of Forestry 21: 451-460. DOI: 10.18182/tjf.795597
  • Gurleyen L. [2021]: Effects of artificial weathering on the color, gloss, adhesion, and pendulum hardness of UV system parquet varnish applied to doussie (Afzelia africana) wood. BioResources 16: 1616-1627. DOI: 10.15376/biores.16.1.1616-1627
  • Gurleyen L., Ayata U., Esteves B., Cakicier N. [2017a]: Effects of heat treatment on the adhesion strength, pendulum hardness, surface roughness, color and glossiness of Scots pine laminated parquet with two different types of UV varnish application. Maderas-Ciencia y Tecnologia 19: 213-224. DOI: 10.4067/S0718-221X2017005000019
  • Gurleyen L., Ayata U., Esteves B., Gurleyen T., Cakicier N. [2019]: Effects of thermal modification of oak wood upon selected properties of coating systems. Bioresources 14: 1838-1849. DOI: 10.15376/biores.14.1.1838-1849
  • Gurleyen T., Ayata U., Gurleyen L., Esteves B., Cakicier N. [2017b]: Determination of color, glossiness and hardness values on single and double layer UV system parquet varnish layers applied to rowanberry (Sorbus L.) wood. 5th International Symposium on Innovative Technologies in Engineering and Science, 29 September – 01 October 2017, Architecture and Construction University, Baku – Azerbaijan, p. 1327-1336, 2017b
  • Herrera R., Sandak J., Robles E., Krystofiak T., Labidi J. [2018]: Weathering resistance of thermally modified wood finished with coatings of diverse formulations. Progress in Organic Coatings 119: 145-154. DOI: 10.1016/j.porgcoat.2018.02.015
  • Kaygin B., Akgun E. [2008]: Comparison of conventional varnishes with nanolacke UV varnish with respect to hardness and adhesion durability. International Journal of Molecular Sciences 9: 476-485. DOI: 10.3390/ijms9040476
  • Li X., Wang D., Zhao L., Hou X., Liu L., Feng B., Li M., Zheng P., Zhao X., Wei S. [2021]: UV LED curable epoxy soybean-oil-based waterborne PUA resin for wood coatings. Progress in Organic Coatings 151: 105942. DOI: 10.1016/j.porgcoat.2020.105942
  • Pearson R.S., Brown H.P. [1932]: Commercial timbers of India. Colkata; Central Government Publication Branch
  • Salca E.A., Krystofiak T., Lis B., Mazela B., Proszyk S. [2016]: Some coating properties of black alder wood as a function of varnish type and application method. BioResources 11: 7580-7594. DOI: 10.15376/biores.l 1.3.7580-7594
  • Sedai P., Kalita D., Deka D. [2016]: Assessment of the fuel wood of India: A case study based on fuel characteristics of some indigenous species of Arunachal Pradesh. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38: 891-897. DOI: 10.1080/15567036.2013.834399
  • Sogutlu C., Sonmez A. [2006]: The effect of UV lights on color changes on some local wood processed with differential preservatives. Journal of the Faculty of Engineering and Architecture of Gazi University 21: 151-159
  • Sonmez A. [1989]: Durability of varnishes used on surfaces of wooden furniture against important physical mechanical and chemical effects. 142 p. Ph D. Thesis Gazi University, Institute of Science and Technology, Ankara, Turkey
  • Stachowiak-Wencek A. [2019]: Influence of the packing method of wood products on the emission of volatile organic compounds. Wood Research 64: 515-528
  • Teacă C.A., Bodîrlău R. [2016]: Photochemical behavior of wood based materials, D. Rosu, P.M. Visakh (Eds.), Photochemical Behavior of Multicomponent Polymeric-based Materials, Advanced Structured Materials, 26, Springer, Cham. DOI: 10.1007/978-3-319-25196-7_4
  • Trotter M. [1944]: The common commercial timber. New Delhi. Government Press Usher G. [1974]: A dictionary of plants used by man. Constable and Company Ltd., London
  • Vardanyan V., Poaty B., Chauve G., Landry V., Galstian T., Riedl B. [2014]: Mechanical properties of UV-waterborne varnishes reinforced by cellulose nanocrystals. Journal of Coatings Technology and Research 11: 841-852. DOI: 10.1007/s11998-014-9598-3
  • Viengkhou V., Ng, L.T., Garnett J.L. [1996]: Role of additives on UV curable coatings on wood. Journal of Applied Polymer Science 61: 2361-2366
  • Wang J., Wu H., Liu R., Long L., Xu J., Chen M., Qiu, H. [2019]: Preparation of a fast water-based UV cured polyurethane-acrylate wood coating and the effect of coating amount on the surface properties of oak (Quercus alba L.). Polymers 11: 1414. DOI: 10.3390/polym11091414
  • Zhao Z., Niu Y., Chen F. [2021]: Development and finishing technology of waterborne UV lacquer-coated wooden flooring. BioResources 16: 1101-1114. DOI: 10.15376/biores.16.1.1101-1114
  • List of standards
  • ASTM D 2244-3:2007 Standard practice for calculation or color tolerances and color, differences from instrumentally measured color coordinates. ASTM International, West Conshohocken, PA
  • ASTM D 4366-95:1984 Standard test methods for hardness of organic coatings by pendulum test. ASTM, Philadelphia, PA
  • ASTM D 4541:1995 Standard test method for pull-off strength of coatings using portable adhesion testers. ASTM International, West Conshohocken, PA
  • DIN EN ISO/IEC 17025:2016 General requirements for the competence of testing and calibration laboratories. German Institute for Standardization, Berlin, Germany
  • ISO 2813:1994 Paints and varnishes – determination of specular gloss of non-metallic paint films at 20 degrees, 60 degrees and 85 degrees. International Organization for Standardization, Geneva, Switzerland
  • ISO 4892-3:2016 Plastics – Methods of exposure to laboratory light sources – Part 3: Fluorescent UV lamps. The International Organization for Standardization
  • TS 2471:1976 Wood – determination of moisture content for physical and mechanical tests. Turkish Standards Institution, Ankara, Turkey
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ee6350b4-d962-4f41-a2ed-12bba9261afe
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