Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Adhesives for Achieving Durable Bonds with Acetylated Wood

View through CrossRef
Acetylation of wood imparts moisture durability, decay resistance, and dimensional stability to wood; however, making durable adhesive bonds with acetylated wood can be more difficult than with unmodified wood. The usual explanation is that the acetylated surface has fewer hydroxyl groups, resulting in a harder-to-wet surface and in fewer hydrogen bonds between wood and adhesive. This concept was evaluated using four different adhesives (resorcinol–formaldehyde, emulsion polymer isocyanate, epoxy, and melamine–formaldehyde) with unmodified wood, acetylated wood, and acetylated wood that had been planed. Strikingly, acetylation did not hinder adhesive bonds with a waterborne resorcinol–formaldehyde adhesive that bonded equally well to both unmodified and acetylated yellow poplar. An epoxy adhesive bonded better to the acetylated wood than to the unmodified wood, in contrast to an emulsion polymer isocyanate, which gave less durable bonds to acetylated than to unmodified wood. Planing of the acetylated wood surface prior to bonding reduced bond durability for the epoxy adhesive and increased the amount of surface hydroxyl groups, as measured using X-ray photoelectron spectroscopic analysis of the trifluoroacetic anhydride-treated wood. These experiments showed that wood modification is useful in understanding wood-adhesive interactions, in addition to determining how to develop adhesives for acetylated woods.
Title: Adhesives for Achieving Durable Bonds with Acetylated Wood
Description:
Acetylation of wood imparts moisture durability, decay resistance, and dimensional stability to wood; however, making durable adhesive bonds with acetylated wood can be more difficult than with unmodified wood.
The usual explanation is that the acetylated surface has fewer hydroxyl groups, resulting in a harder-to-wet surface and in fewer hydrogen bonds between wood and adhesive.
This concept was evaluated using four different adhesives (resorcinol–formaldehyde, emulsion polymer isocyanate, epoxy, and melamine–formaldehyde) with unmodified wood, acetylated wood, and acetylated wood that had been planed.
Strikingly, acetylation did not hinder adhesive bonds with a waterborne resorcinol–formaldehyde adhesive that bonded equally well to both unmodified and acetylated yellow poplar.
An epoxy adhesive bonded better to the acetylated wood than to the unmodified wood, in contrast to an emulsion polymer isocyanate, which gave less durable bonds to acetylated than to unmodified wood.
Planing of the acetylated wood surface prior to bonding reduced bond durability for the epoxy adhesive and increased the amount of surface hydroxyl groups, as measured using X-ray photoelectron spectroscopic analysis of the trifluoroacetic anhydride-treated wood.
These experiments showed that wood modification is useful in understanding wood-adhesive interactions, in addition to determining how to develop adhesives for acetylated woods.

Related Results

Moisture Sensitive Adhesives and Flooring Adhesive Failures
Moisture Sensitive Adhesives and Flooring Adhesive Failures
Over the last decade, changes in environmental government regulations have necessitated the reformulation of many historically durable adhesives used in the application of flooring...
Bonding wood with uncondensed lignins as adhesives
Bonding wood with uncondensed lignins as adhesives
Abstract Plywood is widely used in construction, such as for flooring and interior walls, as well as in the manufacture of household items su...
Climate-linked bonds
Climate-linked bonds
Climate-linked bonds are an innovative financial tool designed to address the growing challenges of climate change. These bonds, ideally issued by governments and supranational org...
Escherichia coli in bacteremia: O-acetylated K1 strains appear to be more virulent than non-O-acetylated K1 strains
Escherichia coli in bacteremia: O-acetylated K1 strains appear to be more virulent than non-O-acetylated K1 strains
A total of 174 blood isolates of Escherichia coli, collected during a 5-year period at the University Hospital Utrecht, were serotyped with rabbit sera against 171 O antigens and 7...
Advancements in Biomass-Derived Adhesives: Enhancing Overall Properties for Versatile Applications
Advancements in Biomass-Derived Adhesives: Enhancing Overall Properties for Versatile Applications
The increasing demand for sustainable materials has propelled research into biomass-derived adhesives as eco-friendly alternatives to traditional synthetic options. This chapter in...
Curriculum research on Sustainable Development Education in Chinese Higher Education -- Education for SD, SD for Education
Curriculum research on Sustainable Development Education in Chinese Higher Education -- Education for SD, SD for Education
Curricula d'éducation au développement durable dans l'enseignement supérieur chinois Ma thèse porte sur “ L'education au Developpement Durable dans le system de sup...
Strength Properties, Thermal Stability, and Microstructure of Acetylated Obeche (Triplochiton Scleroxylon K. Schum) Wood
Strength Properties, Thermal Stability, and Microstructure of Acetylated Obeche (Triplochiton Scleroxylon K. Schum) Wood
Abstract Acetylation is a well-established process to improve dimensional properties of wood and resistance to fungi attack. This study was carried out due to limited studi...

Back to Top