Physical Exploration of Materials as a Method to Determine the Maximum Limit of the Attainment Shapes of Three-Ply Plywood
محورهای موضوعی :Ali Ramadhan 1 , Dinar Cahyaningrum 2
1 - Product Design, Design and Creative Art Faculty, Universitas Mercu Buana
2 - Ardesign26 Workshop
کلید واژه: physical, material, exploration, Three-ply, Plywood,
چکیده مقاله :
Three-layer plywood is a material produced from processed wood in sheet form. As a wood material in sheet form, plywood is known to have advantages over solid wood. So Three Layer plywood has the potential to be exploited in terms of its shape. Physical exploration of a material is one way to determine the potential of a material. So with physical exploration, materials can be maximized in various forms that can be produced. By using research and development methods, physical exploration studies of this material can be one way to increase knowledge about harness materials. In addition, with this method the material can have various opportunities to be applied to various types of objects. Because three-layer plywood is a material that has several stages and criteria in its manufacture, and reaches the final stage of using the material in the form of the material not being used. The stages and criteria involved in the production of three-layer plywood are beyond the control of the manufacturer to be able to continue producing three-layer plywood. Physical exploration carried out on three-layer plywood material shows that this material has other potential. Because the material is in sheet form, three-layer plywood has the potential to be a processed material that can be recycled into other materials. And the results obtained also prove that three ply plywood material has the potential to be used in forms other than sheets on various objects other than its use in sheet form.
Three-layer plywood is a material produced from processed wood in sheet form. As a wood material in sheet form, plywood is known to have advantages over solid wood. So Three Layer plywood has the potential to be exploited in terms of its shape. Physical exploration of a material is one way to determine the potential of a material. So with physical exploration, materials can be maximized in various forms that can be produced. By using research and development methods, physical exploration studies of this material can be one way to increase knowledge about harness materials. In addition, with this method the material can have various opportunities to be applied to various types of objects. Because three-layer plywood is a material that has several stages and criteria in its manufacture, and reaches the final stage of using the material in the form of the material not being used. The stages and criteria involved in the production of three-layer plywood are beyond the control of the manufacturer to be able to continue producing three-layer plywood. Physical exploration carried out on three-layer plywood material shows that this material has other potential. Because the material is in sheet form, three-layer plywood has the potential to be a processed material that can be recycled into other materials. And the results obtained also prove that three ply plywood material has the potential to be used in forms other than sheets on various objects other than its use in sheet form.
Acton, R. (2017). Place-people-practice-process: Using sociomateriality in university physical spaces research. Educational Philosophy and Theory, 49(14), 1441-1451.
Ajayi, S. O., Oyedele, L. O., Akinade, O. O., Bilal, M., Alaka, H. A., & Owolabi, H. A. (2017). Optimizing material procurement for construction waste minimization: An exploration of success factors. Sustainable materials and technologies, 11, 38-46.
Akinade, O. O., Oyedele, L. O., Ajayi, S. O., Bilal, M., Alaka, H. A., Owolabi, H. A., ... & Kadiri, K. O. (2017). Design for Deconstruction (DfD): Critical success factors for diverting end-of-life waste from landfills. Waste management, 60, 3-13.
Alexa, M., Hildebrand, K., & Lefebvre, S. (2017). Optimal discrete slicing. ACM Transactions on Graphics (TOG), 36(1), 1-16.
Allen, E., & Iano, J. (2019). Fundamentals of building construction: materials and methods. New Jersey: John Wiley & Sons.
Arnott, L. (2016). An ecological exploration of young children’s digital play: framing children’s social experiences with technologies in early childhood. Early Years, 36(3), 271-288.
Ashaari, Z., Lee, S. H., & Zahali, M. R. (2016). Performance of compreg laminated bamboo/wood hybrid using phenolic- resin-treated strips as core layer. European Journal of Wood and Wood products, 74(4), 621-624.
Ashby, M. F., & Johnson, K. (2013). Materials and design: the art and science of material selection in product design. Oxford: Butterworth-Heinemann.
Astini, R., & Tafiprios, T. (2017). The Application of Three Orientation (Market, Technology and Entrepreneurship Orientation) and Global Mindset as Efforts to Increase the Growth and Export Performance: Evidence from Micro, Small and Medium Sized Industries of Teak Furniture in JAVA Island. International Journal of Economic Perspectives, 11(1). 1731-1742.
Barata, T. Q. F., Rodrigues, O. V., Matos, B. M., & Pinto, R. S. (2017). Furniture design using MDF boards applying concepts of sustainability. Product: Management & Development, 14(1), 68-83.
Barcík, Š., Ugryumov, S., Razumov, E., & Safin, R. (2019). Studies of component interconnection in a plywood structure with internal layers of veneer chips. Acta Facultatis Xylologiae Zvolen res Publica Slovaca, 61(1), 121-129.
Bekhta, P., Lyutyy, P., & Ortynska, G. (2017). Properties of veneered flat pressed wood plastic composites by one-step process pressing. Journal of Polymers and the Environment, 25(4), 1288-1295.
Bekhta, P., & Salca, E. A. (2018). Influence of veneer densification on the shear strength and temperature behavior inside the plywood during hot press. Construction and Building Materials, 162, 20-26.
Bekhta, P., Salca, E. A., & Lunguleasa, A. (2020). Some properties of plywood panels manufactured from combinations of thermally densified and non-densified veneers of different thicknesses in one structure. Journal of Building Engineering, 29, 101116.
Bekhta, P., Sedliačik, J., & Bekhta, N. (2020). Effect of veneer-drying temperature on selected properties and formaldehyde emission of birch plywood. Polymers, 12(3), 593.
Bekhta, P., Sedliačik, J., & Jones, D. (2018). Effect of short-term thermomechanical densification of wood veneers on the properties of birch plywood. European journal of wood and wood products, 76(2), 549-562.
Belsky, M., Sacks, R., & Brilakis, I. (2016). Semantic enrichment for building information modeling. Computer‐Aided Civil and Infrastructure Engineering, 31(4), 261-274.
Beorkrem, C. (2017). Material strategies in digital fabrication. London: Routledge.
Benthien, J. T., Lüdtke, J., & Ohlmeyer, M. (2019). Effect of increasing core layer particle thickness on lightweight particleboard properties. European Journal of Wood and Wood Products, 77(6), 1029-1043.
Biadała, T., Czarnecki, R., & Dukarska, D. (2020). Water Resistant Plywood Of Increased Elasticity Produced From European Wood Species. Wood Research, 65(1), 111-124.
Białasz, S., & Klepka, T. (2017). An Innovative Method Of Polimeric Sawdust Boards Production. Innovations, 5(3), 129-132.
Bonfante, A., Terribile, F., & Bouma, J. (2019). Refining physical aspects of soil quality and soil health when exploring the effects of soil degradation and climate change on biomass production: an Italian case study. Soil, 5(1), 1.
Broun, J. (2018). Encyclopedia of Woodworking Techniques. Kent: Search Press Limited.
Burnard, M. D., Muszyński, L., Leavengood, S., & Ganio, L. (2018). An optical method for rapid examination of check development in decorative plywood panels. European Journal of Wood and Wood Products, 76(5), 1367-1377.
Byeon, J. W., Kim, T. H., Yang, J. K., Byeon, H. S., & Park, H. M. (2018). Static Bending Performances of Cross- Laminated Wood Panels Made with Tropical and Temperate Woods. 목재공학 (Journal of the Korean Wood Science and Technology), 46(6), 726-734.
Chanda, A., Dutta, S., & Bhattacharyya, D. (2020). Shape conformance via spring-back control during thermo-forming of veneer plywood into a channel section. Materials and Manufacturing Processes, 1-10.
Chang, L., Tang, Q., Gao, L., Fang, L., Wang, Z., & Guo, W. (2018). Fabrication and characterization of HDPE resins as adhesives in plywood. European journal of wood and wood products, 76(1), 325-335.
Chen, S. M., Gao, H. L., Zhu, Y. B., Yao, H. B., Mao, L. B., Song, Q. Y., & Yu, S. H. (2018). Biomimetic twisted plywood structural materials. National Science Review, 5(5), 703-714.
Chen, M., Zhang, R., Tang, L., Zhou, X., Li, Y., & Yang, X. (2016). Effect of plasma processing rate on poplar veneer surface and its application in plywood. BioResources, 11(1), 1571-1584.
Choi, C., Kojima, E., Kim, K. J., Yamasaki, M., Sasaki, Y., & Kang, S. G. (2018). Analysis of mechanical properties of cross-laminated Timber (CLT) with plywood using Korean larch. BioResources, 13(2), 2715-2726.
Csanády, E., Kovács, Z., Magoss, E., & Ratnasingam, J. (2019). Optimum design and manufacture of wood products. Cham, Switzerland: Springer International Publishing.
Cui, W., Gfeller, T., Fernando, D., Heitzmann, M., & Gattas, J. (2018). Folding fabrication of curved-crease origami spindle beams. In Origami 7: Seventh International Meeting of Origami Science, Mathematics, and Education. 4, 1329- 934.
Dawson, C. (2019). Introduction to Research Methods 5th Edition: A Practical Guide for Anyone Undertaking a Research Project. London: Robinson.
Denes, L., Lang, E. M., & McNeel, J. F. (2017). Development of veneer-based corrugated composites, Part 1: Manufacture and basic material properties. BioResources, 12(1), 774-784.
Demirkir, C., Aydin, I., Colak, S., & Ozturk, H. (2017). Effects of plasma surface treatment on bending strength and modulus of elasticity of beech and poplar plywood. Maderas. Ciencia y tecnología, 19(2), 195-202.
Dubary, N., Taconet, G., Bouvet, C., & Vieille, B. (2017). Influence of temperature on the impact behavior and damage tolerance of hybrid woven-ply thermoplastic laminates for aeronautical applications. Composite Structures, 168, 663-674.
Dungani, R., Karliati, T., Hadiyane, A., Suheri, A., & Suhaya, Y. (2019). Coconut fibers and laminates with Jabon trunk (Anthocephalus cadamba Miq.) veneer for hybrid plywood composites: dimensional stability and mechanical properties. European Journal of Wood and Wood Products, 77(5), 749-759.
Dutton, J. E., & Ragins, B. R. (2017). Exploring positive relationships at work: Building a theoretical and research foundation. London: Psychology Press.
El Haouzali, H., Marchal, R., Bléron, L., Butaud, J. C., & Kifani-Sahban, F. (2020). Some properties of plywood produced from 10 cultivars of poplar. International wood products journal, 11(2), 101-106.
El Moustaphaoui, A., Chouaf, A., Kimakh, K., & Chergui, M. H. (2021). Determination of the onset and propagation criteria of delamination of Ceiba plywood by an experimental and numerical analysis. Wood Material Science & Engineering, 16(5), 325-335.
Fahrussiam, F., Praja, I. A., Darmawan, W., Wahyudi, I., Nandika, D., Usuki, H., & Koseki, S. (2016). Wear characteristics of multilayer-coated cutting tools in milling wood and wood-based composites. Tribology in Industry, 38(1), 66.
Fauziah, S., & Pujiraharjo, Y. (2018). Shape Exploration Analysis on Sungkai Wood Fossil. Bandung Creative Movement (BCM) Journal, 4(1).
Ferreira, B. S., Silva, J. V. F., & de Campos, C. I. (2017). Static bending strength of heat-treated and chromated copper arsenate-treated plywood. BioResources, 12(3), 6276-6282
Fink, A. (2019). Conducting research literature reviews: From the internet to paper. New York: Sage publications.
Fischer, F. D., Kolednik, O., Predan, J., Razi, H., & Fratzl, P. (2017). Crack driving force in twisted plywood structures. Acta biomaterialia, 55, 349-359.
Flick, U. (2018). An introduction to qualitative research. New York: Sage Publications Limited.
Ford, S., & Despeisse, M. (2016). Additive manufacturing and sustainability: an exploratory study of the advantages and challenges. Journal of Cleaner Production, 137, 1573-1587.
Galos, J., Sutcliffe, M., & Newaz, G. (2017). Mechanical behaviour of phenolic coated Finnish birch plywood with simulated service damage. Wood Material Science & Engineering, 12(5), 307-315.
Ghauri, P., Grønhaug, K., & Strange, R. (2020). Research methods in business studies. Cambridge: Cambridge University Press.
Goldie, J. G. S. (2016). Connectivism: A knowledge learning theory for the digital age?. Medical teacher, 38(10), 1064- 1069.
Grimaud, V., & Cassen, S. (2019). Implementing a protocol for employing three-dimensional representations in archaeology (PETRA) for the documentation of neolithic funeral architecture in Western France. Digital Applications in Archaeology and Cultural Heritage, 13, e00096.
Grubîi, V., & Johansson, J. (2019). Performance of multi-layered wood flooring elements produced with sliced and sawn lamellas. Pro Ligno, 15(4), 166-172.
Guo, S., He, M., Li, Z., Liang, F., Chen, F., Sun, Y., ... & He, G. (2020). Lateral performance of midply wood shear walls with anchor tie-down system: Experimental investigation and numerical simulation. Construction and Building Materials, 235, 117518.
Gutowski, S, M. (2019). Bend, break, and learn. MFA (Master of Fine Arts) thesis, Iowa: University of Iowa.
Hanington, B., & Martin, B. (2019). Universal Methods of Design Expanded and Revised: 125 Ways to Research Complex Problems, Develop Innovative Ideas, and Design Effective Solutions. Massachusetts: Rockport Publishers.
Hepworth, D. H., Rooney, R. H., Rooney, G. D., & Strom-Gottfried, K. (2016). Empowerment Series: Direct social work practice: Theory and skills. Toronto: Nelson Education.
Illankoon, I. C. S., & Lu, W. (2020). Cost implications of obtaining construction waste management-related credits in green building. Waste Management, 102, 722-731.
Iqbal, A., Smith, T., Pampanin, S., Fragiacomo, M., Palermo, A., & Buchanan, A. H. (2016). Experimental performance and structural analysis of plywood-coupled LVL walls. Journal of Structural Engineering, 142(2), 04015123.
Jakubik, M. (2019). Capturing Knowledge Co-Creation with the Practice Ecosystem Framework in Business and Academia Collaboration. International Journal of Management, Knowledge, and Learning, (1), 95-114.
Jia, C., Chen, C., Kuang, Y., Fu, K., Wang, Y., Yao, Y., & Hu, L. (2018). From wood to textiles: top‐down assembly of aligned cellulose nanofibers. Advanced Materials, 30(30), 1801347.
Jia, L., Chu, J., Ma, L., Qi, X., & Kumar, A. (2019). Life Cycle Assessment of Plywood Manufacturing Process in China. International journal of environmental research and public health, 16(11), 2037.
Johnston, M. P. (2017). Secondary data analysis: A method of which the time has come. Qualitative and quantitative methods in libraries, 3(3), 619-626.
Jones, Z. V., Gwinnett, C., & Jackson, A. R. (2019). The effect of tape type, taping method and tape storage temperature on the retrieval rate of fibres from various surfaces: An example of data generation and analysis to facilitate trace evidence recovery validation and optimisation. Science & Justice, 59(3), 268-291.
Kajaks, J., Kalnins, K., & Matvejs, J. (2019). Accelerated Aging of WPCs Based on Polypropylene and Plywood Production Residues. Open Engineering, 9(1), 115-128.
Kesen, S. E., & Bektaş, T. (2019). Integrated production scheduling and distribution planning with time windows. Lean and Green Supply Chain Management: Optimization Models and Algorithms, 231-252.
Kim, H., Shen, Z., Kim, I., Kim, K., Stumpf, A., & Yu, J. (2016). BIM IFC information mapping to building energy analysis (BEA) model with manually extended material information. Automation in Construction, 68, 183-193.
Kumar, R. (2019). Research methodology: A step-by-step guide for beginners. New York: Sage Publications Limited.
Labans, E., Kalnins, K., & Bisagni, C. (2019). Flexural behavior of sandwich panels with cellular wood, plywood stiffener/foam, and thermoplastic composite core. Journal of Sandwich Structures & Materials, 21(2), 784-805.
Laskowska, A., & Mamiński, M. (2018). Properties of particleboard produced from post-industrial UF-and PF-bonded plywood. European journal of wood and wood products, 76(2), 427-435.
Liang, J., Sun, Z. H., Li, F., & Cheng, H. M. (2016). Carbon materials for Li–S batteries: functional evolution and performance improvement. Energy Storage Materials, 2, 76-106
Leszczyszyn, E. (2018). Wood By-Products And Their Use in Poland in a Context of the Direct Survey of Wood Producers. Intercathedra, 34 (1), 35-43.
Lestari, E., Amin, Y., Pramasari, D. A., & Dwianto, W. (2019). Exploration Of Potential Tree Species In Sumba Island. Teknologi Indonesia, 41(1), 16-23.
Lewis, H., Gertsakis, J., Grant, T., Morelli, N., & Sweatman, A. (2017). Design+ environment: a global guide to designing greener goods. London: Routledge.
Lune, H., & Berg, B. L. (2016). Qualitative research methods for the social sciences. New Jersey: Pearson Higher Ed.
Ma, Q., Yu, Y., Sindoro, M., Fane, A. G., Wang, R., & Zhang, H. (2017). Carbon‐based functional materials derived from waste for water remediation and energy storage. Advanced Materials, 29(13), 1605361.
Mahendrawathi, E. R., Zayin, S. O., & Pamungkas, F. J. (2017). ERP post-implementation review with process mining: A case of procurement process. Procedia Computer Science, 124, 216-223.
Martínez-Conde, A., Krenke, T., Frybort, S., & Müller, U. (2017). Comparative analysis of CO 2 laser and conventional sawing for cutting of lumber and wood-based materials. Wood Science and Technology, 51(4), 943-966.
Makowski, A. (2019). Analytical Analysis of Distribution of Bending Stresses in Layers of Plywood with Numerical Verification. Wood Industry/Drvna Industrija, 70(1).
Mills, J., & Ajaj, R. (2017). Flight Dynamics and control using folding wingtips: an experimental study. Aerospace, 4(2).
Miranda, P. L., Morabito, R., & Ferreira, D. (2018). Optimization model for a production, inventory, distribution and routing problem in small furniture companies. Top, 26(1), 30-67.
Motlhagodi, M. N., & Motlhagodi, M. K. (2018). The Assessment Of Contractors’awareness On Sup-Ply Chain Collaboration: A Case Study. International Journal of Organizational Innovation, 10(4), 1.
Öncel, M., Vurdu, H., Aydoğan, H., Özkan, O. E., & Kaymakci, A. (2019). The tensile shear strength of outdoor type plywood produced from fir, alnus, pine and poplar wood. Wood Research, 64(5), 913-920.
Ozturk, H., Demir, A., Demirkir, C., & Colakoglu, G. (2019). Effect of Veneer Drying Process on Some Technological Properties of Polystyrene Composite Plywood Panels. Drvna industrija: Znanstveni časopis za pitanja drvne tehnologije, 70(4), 369-376.
Oya, T., Tsunenari, S., & Nagase, H. (2018). Material and structural design based on biological information using optimized stress distribution. Computer-Aided Design and Applications, 15(6), 841-851.
Pangestu, K. T. P., Darmawan, W., Nandika, D., & Usuki, H. (2019). Cutting performance of multilayer coated tungsten carbide in milling of wood composites. International Wood Products Journal, 10(2), 78-85.
Park, H. J., & Jo, S. U. (2020). Evaluation of Physical, Mechanical Properties and Pollutant Emissions of Wood- Magnesium Laminated Board (WML Board) for Interior Finishing Materials. 목재공학 (Journal of the Korean Wood Science and Technology), 48(1), 86-94.
Parthiban, K. T., Dey, S., Krishnakumar, N., & Das, A. (2019). Wood And Plywood Quality Characterization Of New And Alternate Species Amenable For Composite Wood Production. Wood and Fiber Science, 51(4), 1-8.
Phan Thi, A., Lin, J., & Cao, J. Z. (2018). Fabrication and characterization of isolated lignin as adhesive for three‐ply plywood. Polymer Composites, 39(2), 484-490.
Pöllänen, S. H. (2020). Perspectives on Multi‐Material Craft in Basic Education. International Journal of Art & Design Education, 39(1), 255-270.
Pommier, R., Grimaud, G., Princaud, M., Perry, N., & Sonnemann, G. (2016). LCA (Life Cycle Assessment) of EVP– engineering veneer product: plywood glued using a vacuum moulding technology from green veneers. Journal of Cleaner Production, 124, 383-394.
Prasad, H., Lohchab, R. K., Singh, B., Nain, A., & Kumari, M. (2019). Lime treatment of wastewater in a plywood industry to achieve the zero liquid discharge. Journal of Cleaner Production, 240, 118176.
Ramadhan, A., Syarifuddin, G., Cahyaningrum, D., & Pribadi, S. (2021, April). Utilization of Three Dimensional Printers as a Production Tool. In International Conference on Engineering, Technology and Social Science (ICONETOS 2020), (pp. 418-423).
Ramadhan, A. Syarifuddin, G. Pribadi, S., & Medina, R. (2022). Physical Character Of Polylactic Acid Material, 2nd International Symposium on Cultural Heritage, 1(1), 273-280
Ramage, M. H., Burridge, H., Busse-Wicher, M., Fereday, G., Reynolds, T., Shah, D. U., ... & Allwood, J. (2017). The wood from the trees: The use of timber in construction. Renewable and Sustainable Energy Reviews, 68, 333-359.
Réh, R., Igaz, R., Krišťák, Ľ., Ružiak, I., Gajtanska, M., Božíková, M., & Kučerka, M. (2019). Functionality of beech bark in adhesive mixtures used in plywood and its effect on the stability associated with material systems. Materials, 12(8), 1298.
Reinharz, S. (2017). On Becoming a Social Scientist: from survey research and participant observation to Experimental Analysis. London: Routledge.
Rizanti, D. E., Darmawan, W., George, B., Merlin, A., Dumarcay, S., Chapuis, H., ... & Gerardin, P. (2018). Comparison of teak wood properties according to forest management: short versus long rotation. Annals of Forest Science, 75(2), 1- 12.
Rizzi, E., Giongo, I., Ingham, J. M., & Dizhur, D. (2020). Testing and modeling in-plane behavior of retrofitted timber diaphragms. Journal of Structural Engineering, 146(2), 04019191.
Rohrbacher, G., Filson, A., France, A. K., & Young, B. (2017). Design for CNC: Furniture Projects and Fabrication Technique. California: Maker Media, Inc.
Rohumaa, A., Hunt, C. G., Frihart, C. R., Kers, J., Denaud, L., & Hughes, M. (2017). The impact of log heating on veneer quality and plywood performance. In 6 th International Scientific Conference on Hardwood Processing (p. 213).
Romagnoli, F., Baena, J., Naranjo, A. I. P., & Sarti, L. (2017). Evaluating the performance of the cutting edge of Neanderthal shell tools: A new experimental approach. Use, mode of operation, and strength of Callista chione from a behavioural, Quina perspective. Quaternary International, 427, 216-228.
Rose, G. (2016). Visual methodologies: An introduction to researching with visual materials. New York: SAGE.
Sanoff, H. (2016). Visual Research Methods in Design (Routledge Revivals). London: Routledge.
Savolainen, R. (1995). Everyday life information seeking: Approaching information seeking in the context of “way of life”. Library & information science research, 17(3), 259-294.
Shaheen, S. M., Niazi, N. K., Hassan, N. E., Bibi, I., Wang, H., Tsang, D. C., & Rinklebe, J. (2019). Wood-based biochar for the removal of potentially toxic elements in water and wastewater: a critical review. International Materials Reviews, 64(4), 216-247.
Shaikhutdinova, A. R., Safin, R. R., & Nazipova, F. V. (2017). Thermal modification of wood in production of finishing materials. In Solid State Phenomena, 265, 171-176
Shrivastava, S., Mohite, P. M., & Limaye, M. D. (2019). Optimal design of fighter aircraft wing panels laminates under multi-load case environment by ply-drop and ply-migrations. Composite Structures, 207, 909-922.
Shamaev, V., Efimova, T., & Ishchenko, T. (2018). Production of High Strength Plywood from Birch Wood. Acta Facultatis Xylologiae Zvolen res Publica Slovaca, 60(2), 135-141.
Song, W., Wei, W., Li, X., & Zhang, S. (2017). Utilization of polypropylene film as an adhesive to prepare formaldehyde- free, weather-resistant plywood-like composites: Process optimization, performance evaluation, and interface modification. BioResources, 12(1), 228-254.
Steiger, L. (2017). Basics timber construction. Basel: Birkhäuser.
Sulistyono, I. B. (2018). Plywood Furniture Designs (A Study on Shapes, Functions, Materials, Construction Techniques, and Production Processes). Bandung Creative Movement (BCM) Journal, 4(1). 273-276
Sun, P., Ma, R., & Sasaki, T. (2018). Recent progress on exploring exceptionally high and anisotropic H+/OH− ion conduction in two-dimensional materials, Chemical science, 9(1), 33-43.
Sydor, M., Rogoziński, T., Stuper-Szablewska, K. M., & Starczewski, K. (2020). The Accuracy of Holes Drilled in the Side Surface of Plywood. BioResources, 15(1), 117-129.
Tripati, S., Shukla, S. R., Shashikala, S., & Sardar, A. (2016). Role of teak and other hardwoods in shipbuilding as evidenced from literature and shipwrecks. Current Science, 111(7), 1262-1268.
Tsunenari, S., & Oya, T. (2016). Method for evaluating mechanical characteristics of biological material for bio-inspired lightweight design. Computer-Aided Design and Applications, 13(4), 503-510.
Ugryumov, S. A., Varankina, G. S., & Katsadze, V. A. (2019). A Method for Manufacturing Glued Plywood Based on Furan Resins. Polymer Science, Series D, 12(4), 398-400.
Unwin, A. P., Hine, P. J., Ward, I. M., Fujita, M., Tanaka, E., & Gusev, A. A. (2018). Novel phase separated multi-phase materials combining high viscoelastic loss and high stiffness. Composites Science and Technology, 167, 106-114.
Van Damme, B., Schoenwald, S., & Zemp, A. (2017). Modeling the bending vibration of cross-laminated timber beams. European journal of wood and wood products, 75(6), 985-994.
Vergauwen, A., De Laet, L., & De Temmerman, N. (2017). Computational modelling methods for pliable structures based on curved-line folding. Computer-Aided Design, 83, 51-63.
Wang, L., Yu, K., Zhang, D., & Qian, K. (2018). Cut resistant property of weft knitting structure: a review. The Journal of The Textile Institute, 109(8), 1054-1066.
Wareing, R. R., Davy, J. L., & Pearse, J. R. (2016). The sound insulation of single leaf finite size rectangular plywood panels with orthotropic frequency dependent bending stiffness. The Journal of the Acoustical Society of America, 139(1), 520-528.
Wascher, R., Kühn, C., Avramidis, G., Bicke, S., Militz, H., Ohms, G., & Viöl, W. (2017). Plywood made from plasma- treated veneers: melamine uptake, dimensional stability, and mechanical properties. Journal of Wood Science, 63(4), 338- 349.
Way, D., Sinha, A., & Kamke, F. A. (2020). Performance of light-frame timber shear walls produced with weathered sheathing. Journal of Architectural Engineering, 26(1), 04019022.
Wu, K., Yang, D., & Wright, N. (2016). A coupled SPH-DEM model for fluid-structure interaction problems with free- surface flow and structural failure. Computers & Structures, 177, 141-161.
Yawar, S. A., & Seuring, S. (2017). Management of social issues in supply chains: a literature review exploring social issues, actions and performance outcomes. Journal of Business Ethics, 141(3), 621-643.
Zaki, M., Theodoulidis, B., Shapira, P., Neely, A., & Tepel, M. F. (2019). Redistributed manufacturing and the impact of big data: a consumer goods perspective. Production Planning & Control, 30(7), 568-581.
Zhang, B. H., Fan, B., Li, M., Zhang, Y. H., & Gao, Z. H. (2018). Effects of thermal treatment on the properties of defatted soya bean flour and its adhesion to plywood. Royal Society Open Science, 5(5), 180015.