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The Influence of 3D Printing Parameters on the Mechanical Properties of Reinforced PLA – A Review

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Awal A., Cescutti G., Ghosh S.B., Müssig J., Interfacial studies of natural fibre/polypropylene composites using single fibre fragmentation test (SFFT), Composites Part A: Applied Science and Manufacturing, 42(1), 50-56, (2011). Search in Google Scholar

Awal A., Ghosh S., Sain M., Thermal properties and spectral characterization of wood pulp reinforced bio-composite fibers, Journal Hermal Analysis and Calorimetry, 99(2), 695-701, doi:10.1007/s10973-009-0100-x, (2010). Search in Google Scholar

Awal A., Sain M., Chowdhury M., Thermal analysis and spectroscopic studies of electrospun nano-scale composite fibers, Journal of Thermal Analysis and Calorimetry, 107(3), 1237-1242, doi:10.1007/s10973-011-1875-0, (2012). Search in Google Scholar

Awal A., Rana M., Sain M., Thermorheological and mechanical properties of cellulose reinforced PLA bio-composites, Mechanics of Materials, Elsevier Ltd, 80 (Part A), 87-95, doi:10.1016/j.mechmat.2014.09.009, (2015). Search in Google Scholar

Awal A., Sain M., Chowdhury M., Preparation of cellulose-based nanocomposite fibers by electrospinning and understanding the effect of processing parameters, Composites Part B: Engineering, 42(5), 1220-1225, doi:10.1016/j.compositesb.2011.02.011, (2011). Search in Google Scholar

Bejan M., Ingineria – artă sau meșteșug, vol. 4; (Engineering – Art or Craft, vol. 4), Editura AGIR, București, 2019 și Editura MEGA, Cluj Napoca, 2019. Search in Google Scholar

Berce P., Tehnologii de fabricație prin adăugare de material și aplicațiile lor, (Additive manufacturing technologies and their applications), Editura Academiei Române, București, România, 2014. Search in Google Scholar

Carneiro O.S., Silva A.F., Fused deposition modeling with polypropylene, http://dx.doi.org/10.1016/j.matdes.2015.06.053, (2015). Search in Google Scholar

Ciofu C., Mazurchevici S.-N., Maldonado-Cortes D., Pena Paras L., Quintanilla Correa D.I., Nedelcu D., Tribological Behavior of PLA Biodegradable Materials used in the Automotive Industry, International Journal of Modern Manufacturing Technologies 11 (3), 83-88, (2019). Search in Google Scholar

Correa D., Papadopoulou A., Guberan C., Jhaveri N., Reichert S., Menges A., Tibbits S., 3D-Printed Wood: Programming Hygroscopic, Material Transformation, 2(3), Mary Ann Liebert, Inc., DOI: 10.1089/3dp.2015.0022, (2015). Search in Google Scholar

Faludi G., Dora G., Renner K., Móczó J., Pukánszky B., Improving interfacial adhesion in PLA/wood biocomposites, Compos. Sci. Technol., 89, 77-82, http://dx.doi.org/10.1016/j.compscitech.2013.09.009, (2013). Search in Google Scholar

Gaoa Wei, Zhang Yunbo, Ramanujana Devarajan, Ramani Karthik, Chenc Yong, Christopher B. Williams, Charlie C.L. Wang, Yung C. Shina, Song Zhang, Pablo D. Zavattieri, The status, challenges, and future of additive manufacturing in engineering, http://dx.doi.org/10.1016/j.cad.2015.04.001, (2015). Search in Google Scholar

Graupner N., Application of lignin as natural adhesion promoter in cotton fibrereinforced poly(lactic acid) (PLA) composites, Journal of Materials Science, 43(15), 5222-5229, DOI:10.1007/s10853-008-2762-3 (2008). Search in Google Scholar

Graupner N., Herrmann A.S., Müssig J., Natural and man-made cellulose fibrereinforced poly(lactic acid) (PLA) composites: An overview about mechanical characteristics and application areas, Composites Part A: Applied Science and Manufacturing, 40(6-7), 810-821 (2009). Search in Google Scholar

Graupner N., Axel S. Herrmann, Jörg Müssig, A comparison of the mechanical characteristics of kenaf and lyocell fibre einforced poly(lactic acid) (PLA) and poly(3-hydroxybutyrate) (PHB) composites, Composites Part A: Applied Science and Manufacturing, 42(12), 2010-2019 doi:10.1016/j.compositesa.2009.04.003, (2011). Search in Google Scholar

Huda M.S., Drzal L.T., Mohanty A.K., Misra M., Effect of fiber surfacetreatments on the properties of laminated biocomposites from poly(lactic acid) (PLA) and kenaf fibers, Composites Science and Technology, 68(2), 424-432 (2008). Search in Google Scholar

Jianu C., Spiridon Ș.-I., Ioniţă Gh., Tehnologia de fabricație aditivă 3d: inovație și aplicabilitate în domeniul ingineriei, Institutul Național de Cercetare-Dezvoltare pentru Tehnologii Criogenice și Izotopice, Râmnicu Vâlcea, România, Buletinul AGIR, 3-4, 102-107, (2020). Search in Google Scholar

Le Duigou A., Castro M., Bevan R., Martin N., 3D printing of wood fibre biocomposites: From mechanical to actuation functionality, https://doi.org/10.1016/j.matdes.2016.02.018 (2015). Search in Google Scholar

Liu L.S., Fishman M.L., Hicks K.B., Liu C.-K., Biodegradable Composites from Sugar Beet Pulp and Poly(lactic acid), Journal of Agricultural and Food Chemistry, 53(23), 9017-9022, (2005). Search in Google Scholar

Ma Quanjina, M.R.M. Rejaba, M.S.Idrisa, Nallapaneni Manoj Kumarc, M.H. Abdullaha, Guduru Ramakrishna Reddyd, Recent 3D and 4D intelligent printing technologies: A comparative review and future perspective, Procedia Computer Science 167(9):1210-1219, DOI: 10.1016/j.procs.2020.03.434, (2020). Search in Google Scholar

Masud S. Huda, Lawrence T. Drzal, Amar K. Mohanty, Manjusri Misra, Fabrication and mechanical properties of completely biodegradable hemp fiber reinforced polylactic acid composites, Journal of Composite Materials, 41(13), 1655-1669, doi:10.1016/j.compscitech.2007.06.022, (2007). Search in Google Scholar

Mazurchevici A.D., Contribuții la studiul procesului de printare 3D a materialelor biodegradabile, Teză doctorat - Universitatea Tehnică’’Gheorghe Asachi’’ din Iași-Facultatea de Constructii de Mașini și Management Industrial – Departamentul de Tehnologia Construcțiilor Mașini, (2020). Search in Google Scholar

Mazurchevici A.D., Carausu C., Ciofu C., Popa R., Mazurchevici S.-N., Nedelcu D., Infill and Type Influence on Tensile Strength of PLA Biodegradable Material using FDM Technology, International Journal of Modern Manufacturing Technologies 11 (2), 44-49, (2019). Search in Google Scholar

Mazzanti V., Malagutti L., Mollica F., FDM 3D Printing of Polymers Containing Natural Fillers: A Review of their Mechanical Properties, Polymers 2019, 11(7), 1094, https://doi.org/10.3390/polym11071094. Search in Google Scholar

Migneault S., Koubaa A., Perré P., Riedl B., Effects of wood fiber surface chemistry on strength of woodplastic composites, Appl. Surf. Sci. 343, 11-18, http://dx.doi.org/10.1016/j.apsusc.2015.03.010, (2015). Search in Google Scholar

Nedelcu D., Mazurchevici S.-N., Popa R.-I., Lohan N.-M., Maldonado-Cortés D., Carausu C., Tribological and dynamical mechanical behavior of prototyped PLA-based polymers, Materials 13 (16), 3615, https://doi.org/10.3390/ma13163615, (2020). Search in Google Scholar

Peltola H., Pääkkönen E., Jetsu P., Heinemann S., Wood based PLA and PP composites: effect of fibre type and matrix polymer on fibre morphology, dispersion and composite properties, Compos. A: Appl. Sci. Manuf. 61, 13-22, http://dx.doi.org/10.1016/j.compositesa.2014.02.002, (2014). Search in Google Scholar

Singh G., Replace wooden pattern to polymer pattern by 3D printing, Department of Mechatronics Engineering, Chandigarh University, Ghauran Mohali-140413 Punjab, India, august 2020, https://doi.org/10.1016/j.matpr.2020.08.284. Search in Google Scholar

Sobczak L., Lang R.W., Haider A., Polypropylene composites with natural fibers and wood – general mechanical property profiles, Compos. Sci. Technol. 72, 550-557, http://dx.doi.org/10.1016/j.compscitech.2011.12.013 (2012). Search in Google Scholar

https://www.pcbway.com/rapid-prototyping/3d-printing/ Accessed on 04.10.2022. Search in Google Scholar

https://sim.tuiasi.ro/wp-content/uploads/2018/05/Infografica-In-imprimarea-3D.pdf - Accessed on 09.08.2022. Search in Google Scholar

http://www.trosol.com/fortus/WPGrimm.pdf Accesat 10.01.2022 - FUSED DEPOSITION MODELLING: A TECHNOLOGY EVALUATION. Search in Google Scholar

http://creativecommons.org/licenses/by/3.0, Accessed on 01.09.2022. Wikipedia, Composite material [Internet]., 2012, Available from: https://en.wikipedia.org/wiki/Composite_material, Accessed on 08.12.2022. Search in Google Scholar

www.blog.3ddot.ro/introducere-in-fdm/, Acessed on14.08.2022. Search in Google Scholar