Impregnated Paper-Based Decorative Laminates Prepared from Lignin-Substituted Phenolic Resins

被引:10
|
作者
Thebault, Marion [1 ]
Li, Ya [1 ]
Beuc, Christopher [1 ]
Froemel-Frybort, Stephan [1 ,2 ]
Zikulnig-Rusch, Edith-Martha [1 ]
Kutuzova, Larysa [3 ]
Kandelbauery, Andreas [3 ]
机构
[1] Kompetenzzentrum Holz Wood K Plus, Altenberger Str 69, A-4040 Linz, Austria
[2] Univ Life Sci & Nat Resources BOKU, Univ & Forschungszentrum Tulln UFT, A-3430 Tulln, Austria
[3] Reutlingen Univ, Lehr & Forschungszentrum Proc Anal & Technol PA&T, Sch Appl Chem, D-72762 Reutlingen, Germany
关键词
Lignin; phenol-formaldehyde resin (PF); decorative laminate; impregnated paper; MELAMINE-FORMALDEHYDE RESIN; EPOXIDIZED LINSEED OIL; DSC THERMAL-ANALYSIS; KRAFT LIGNIN; SOY PROTEIN; BEHAVIOR; POLYURETHANES; PERFORMANCE; ADHESIVES; KINETICS;
D O I
10.32604/jrm.2020.09755
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
High Pressure Laminates (HPL) panels consist of stacks of self-gluing paper sheets soaked with phenol-formaldehyde (PF) resins. An important requirement for such PFs is that they must rapidly penetrate and saturate the paper pores. Partially substituting phenol with bio-based phenolic chemicals like lignin changes the physico-chemical properties of the resin and affects its ability to penetrate the paper. In this study, PF formulations containing different proportions of lignosulfonate and kraft lignin were used to prepare paper-based laminates. The penetration of a Kraft paper sheet was characterized by a recently introduced, new device measuring the conductivity between both sides of the paper sheet after a drop of resin was placed on the surface and allowed to penetrate the sheet. The main target value measured was the time required for a specific resin to completely penetrate the defined paper sample ("penetration time"). This penetration time generally depends on the molecular weight distribution, the flow behavior and the polarity of the resin which in turn are dependent on the manufacturing conditions of the resin. In the present study, the influences of the three process factors: (1) type of lignin material used for substitution, (2) lignin modification by phenolation and (3) degree of phenol substitution on the penetration times of various lignin-phenolic hybrid impregnation resins were studied using a complete two-level three-factorial experimental design. Thin laminates made with the resins diluted in methanol were mechanically tested in terms of tensile and flexural strains, and their cross-sections were studied by light microscopy.
引用
收藏
页码:1181 / 1198
页数:18
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