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\n  \n 2023\n \n \n (1)\n \n \n
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\n \n\n \n \n \n \n \n \n Approaching Self-Bonded Medium Density Fiberboards Made by Mixing Steam Exploded Arundo donax L. and Wood Fibers: A Comparison with pMDI-Bonded Fiberboards on the Primary Properties of the Boards.\n \n \n \n \n\n\n \n Vitrone, F.; Brinker, S.; Ramos, D.; Ferrando, F.; Salvadó, J.; and Mai, C.\n\n\n \n\n\n\n Materials, 16(12): 4343. June 2023.\n \n\n\n\n
\n\n\n\n \n \n \"ApproachingPaper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n  \n \n abstract \n \n\n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{vitrone_approaching_2023,\n\ttitle = {Approaching {Self}-{Bonded} {Medium} {Density} {Fiberboards} {Made} by {Mixing} {Steam} {Exploded} {Arundo} donax {L}. and {Wood} {Fibers}: {A} {Comparison} with {pMDI}-{Bonded} {Fiberboards} on the {Primary} {Properties} of the {Boards}},\n\tvolume = {16},\n\tissn = {1996-1944},\n\tshorttitle = {Approaching {Self}-{Bonded} {Medium} {Density} {Fiberboards} {Made} by {Mixing} {Steam} {Exploded} {Arundo} donax {L}. and {Wood} {Fibers}},\n\turl = {https://www.mdpi.com/1996-1944/16/12/4343},\n\tdoi = {10.3390/ma16124343},\n\tabstract = {This study presents an unexplored method to produce formaldehyde-free MDF. Steam exploded Arundo donax L. (STEX-AD) and untreated wood fibers (WF) were mixed at different mixing rates (0/100, 50/50, and 100/0, respectively) and two series of boards were manufactured, with 4 wt\\% of pMDI, based on dry fibers, and self-bonded. The mechanical and physical performance of the boards was analyzed as a function of the adhesive content and the density. The mechanical performance and dimensional stability were determined by following European standards. The material formulation and the density of the boards had a significant effect on both mechanical and physical properties. The boards made solely of STEX-AD were comparable to those made with pMDI, while the panels made of WF without adhesive were those that performed the worst. The STEX-AD showed the ability to reduce the TS for both pMDI-bonded and self-bonded boards, although leading to a high WA and a higher short-term absorption for the latter. The results presented show the feasibility of using STEX-AD in the manufacturing of self-bonded MDF and the improvement of dimensional stability. Nonetheless, further studies are needed especially to address the enhancement of the internal bond (IB).},\n\tlanguage = {en},\n\tnumber = {12},\n\turldate = {2023-07-05},\n\tjournal = {Materials},\n\tauthor = {Vitrone, Federica and Brinker, Sascha and Ramos, Diego and Ferrando, Francesc and Salvadó, Joan and Mai, Carsten},\n\tmonth = jun,\n\tyear = {2023},\n\tpages = {4343},\n\tfile = {Volltext:C\\:\\\\Users\\\\Eva\\\\Zotero\\\\storage\\\\5K25YZNG\\\\Vitrone et al. - 2023 - Approaching Self-Bonded Medium Density Fiberboards.pdf:application/pdf},\n}\n\n
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\n This study presents an unexplored method to produce formaldehyde-free MDF. Steam exploded Arundo donax L. (STEX-AD) and untreated wood fibers (WF) were mixed at different mixing rates (0/100, 50/50, and 100/0, respectively) and two series of boards were manufactured, with 4 wt% of pMDI, based on dry fibers, and self-bonded. The mechanical and physical performance of the boards was analyzed as a function of the adhesive content and the density. The mechanical performance and dimensional stability were determined by following European standards. The material formulation and the density of the boards had a significant effect on both mechanical and physical properties. The boards made solely of STEX-AD were comparable to those made with pMDI, while the panels made of WF without adhesive were those that performed the worst. The STEX-AD showed the ability to reduce the TS for both pMDI-bonded and self-bonded boards, although leading to a high WA and a higher short-term absorption for the latter. The results presented show the feasibility of using STEX-AD in the manufacturing of self-bonded MDF and the improvement of dimensional stability. Nonetheless, further studies are needed especially to address the enhancement of the internal bond (IB).\n
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\n  \n 2018\n \n \n (1)\n \n \n
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\n \n\n \n \n \n \n \n \n The influence of curing conditions on properties of melamine modified wood.\n \n \n \n \n\n\n \n Behr, G.; Gellerich, A.; Bollmus, S.; Brinker, S.; and Militz, H.\n\n\n \n\n\n\n European Journal of Wood and Wood Products, 76(4): 1263–1272. July 2018.\n \n\n\n\n
\n\n\n\n \n \n \"ThePaper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n\n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{behr_influence_2018,\n\ttitle = {The influence of curing conditions on properties of melamine modified wood},\n\tvolume = {76},\n\tissn = {0018-3768, 1436-736X},\n\turl = {http://link.springer.com/10.1007/s00107-018-1290-3},\n\tdoi = {10.1007/s00107-018-1290-3},\n\tlanguage = {en},\n\tnumber = {4},\n\turldate = {2019-01-07},\n\tjournal = {European Journal of Wood and Wood Products},\n\tauthor = {Behr, Georg and Gellerich, Antje and Bollmus, Susanne and Brinker, Sascha and Militz, Holger},\n\tmonth = jul,\n\tyear = {2018},\n\tpages = {1263--1272},\n\tfile = {Behr et al. - 2018 - The influence of curing conditions on properties o.pdf:C\\:\\\\Users\\\\Eva\\\\Zotero\\\\storage\\\\HI3NBMJ4\\\\Behr et al. - 2018 - The influence of curing conditions on properties o.pdf:application/pdf},\n}\n
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