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The use of shellac as wood adhesive
ID Brus, Maks (Author), ID Šernek, Milan (Mentor) More about this mentor... This link opens in a new window, ID Jones, Dennis (Comentor)

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Abstract
Shellac is a natural biopolymer, and traditionally it has been used in coatings and food packaging, with little scientific study of its application as a wood adhesive. This study explored shellac adhesive properties and optimized pressing conditions. Six different shellacs were examined with cold pressing with bond values between 7.5 and 9.5 MPa; SH2 (platinum shellac) was selected for more detailed examination. Thermal treatment improved stability: curing at 175 °C for 60 min increased Tg from 42 °C to 77 °C and reduced mass loss at 200 °C from 1.55 % to 0.47 %. FTIR confirmed crosslinking with reduced hydroxyl content and increased ester bands. Modelling of shear strength formation with ABES showed good fit with Hill model (R2 = 0.971) and moderate fit with Logistic model (R2 = 0.875). Hot pressing at 175 °C and 200 °C yielded 9.78 MPa and 8.2 MPa under dry conditions (D1), and 3 MPa and 8.4 MPa under occasional moisture conditions (D2), respectively. However, 200 °C pressing temperatures resulted in wood degradation with nearly 100 % wood failure. Shellac has potential for application as a bio-based adhesive, particularly in cold-pressing, and niche water free bonding, but optimization is required to improve moisture resistance and to prevent wood modification in hot pressing.

Language:English
Keywords:shellac, bio-based adhesive, natural adhesive, wood bonding, thermal curing, hot pressing, cold pressing, ABES, FTIR, DSC, TGA, bond strength
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:BF - Biotechnical Faculty
Publisher:[M. Brus]
Year:2025
PID:20.500.12556/RUL-173372 This link opens in a new window
UDC:630*824.82
COBISS.SI-ID:249222659 This link opens in a new window
Publication date in RUL:17.09.2025
Views:588
Downloads:370
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Secondary language

Language:Slovenian
Title:Uporaba šelaka kot lepila za les
Abstract:
Šelak je naravni biopolimer, ki se tradicionalno uporablja za premaze in živilske aplikacije, raziskav o njegovi uporabi kot lepila za les pa je malo. V tej študiji je bila ocenjena lepilna sposobnost šelaka in optimizirani so bili parametri stiskanja. Pri hladnem stiskanju je bilo preizkušenih šest vrst šelaka, pri čemer so bile dosežene trdnosti spoja med 7,5 in 9,5 MPa; za nadaljnjo analizo je bil izbran šelak SH2 (platina). Modeliranje rasti strižne trdnosti z ABES je pokazalo dobro ujemanje s Hillovim modelom (R2 = 0,971) in delno ujemanje z Logističnim modelom (R2 = 0,875). Toplotna obdelava je izboljšala termično stabilnost: pri utrjevanju pri 175 °C za 60 min se je točka steklastega prehoda (Tg) povečala z 42 °C na 77 °C, izguba mase pri 200 °C pa zmanjšala z 1,55 % na 0,47 %. Z FTIR je bilo potrjeno zamreženje z zmanjšanjem vsebnosti hidroksilnih skupin in povečanjem esterskih vezi. Pri vročem stiskanju pri 175 °C in 200 °C so bile dosežene trdnosti spoja 9,78 MPa in 8,2 MPa v suhih pogojih (D1) ter 3 MPa in 8,4 MPa pri občasni povišani vlažnosti (D2). Stiskanje pri 200 °C je povzročilo degradacijo lesa, kar je privedlo do skoraj 100 % porušitve lesa. Ugotovljeno je bilo, da šelak kaže potencial kot naravno lepilo, zlasti pri hladnem stiskanju, medtem ko je za vroče stiskanje potrebna nadaljnja optimizacija za izboljšanje odpornosti na vlago in preprečitev termične degradacije lesa.

Keywords:šelak, bio-osnovano lepilo, naravno lepilo, lepljenje lesa, toplotno utrjevanje, vroče stiskanje, hladno stiskanje, ABES, FTIR, DSC, TGA, strižna trdnost

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