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Effect of addition of microfibrillated cellulose to urea-formaldehyde on selected adhesive characteristics and distribution in particle board
by
Gindl-Altmutter, Wolfgang
, Schmidberger, Clemens
, van Herwijnen, Hendrikus W. G.
, Veigel, Stefan
, Pinkl, Stefan
, Mahrdt, Eike
in
Adhesive bonding
/ Adhesives
/ Bioorganic Chemistry
/ Bond strength
/ Bonding strength
/ Cellulose
/ Ceramics
/ Chemistry
/ Chemistry and Materials Science
/ Composites
/ Formaldehyde
/ Glass
/ light microscopy
/ Mechanical properties
/ Natural Materials
/ Organic Chemistry
/ Original Paper
/ Particle board
/ Particle size distribution
/ particleboards
/ Physical Chemistry
/ Polymer Sciences
/ Shear thinning (liquids)
/ Sustainable Development
/ urea formaldehyde
/ Urea formaldehyde resins
/ Viscosity
/ wood
/ wood strength
2016
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Effect of addition of microfibrillated cellulose to urea-formaldehyde on selected adhesive characteristics and distribution in particle board
by
Gindl-Altmutter, Wolfgang
, Schmidberger, Clemens
, van Herwijnen, Hendrikus W. G.
, Veigel, Stefan
, Pinkl, Stefan
, Mahrdt, Eike
in
Adhesive bonding
/ Adhesives
/ Bioorganic Chemistry
/ Bond strength
/ Bonding strength
/ Cellulose
/ Ceramics
/ Chemistry
/ Chemistry and Materials Science
/ Composites
/ Formaldehyde
/ Glass
/ light microscopy
/ Mechanical properties
/ Natural Materials
/ Organic Chemistry
/ Original Paper
/ Particle board
/ Particle size distribution
/ particleboards
/ Physical Chemistry
/ Polymer Sciences
/ Shear thinning (liquids)
/ Sustainable Development
/ urea formaldehyde
/ Urea formaldehyde resins
/ Viscosity
/ wood
/ wood strength
2016
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Effect of addition of microfibrillated cellulose to urea-formaldehyde on selected adhesive characteristics and distribution in particle board
by
Gindl-Altmutter, Wolfgang
, Schmidberger, Clemens
, van Herwijnen, Hendrikus W. G.
, Veigel, Stefan
, Pinkl, Stefan
, Mahrdt, Eike
in
Adhesive bonding
/ Adhesives
/ Bioorganic Chemistry
/ Bond strength
/ Bonding strength
/ Cellulose
/ Ceramics
/ Chemistry
/ Chemistry and Materials Science
/ Composites
/ Formaldehyde
/ Glass
/ light microscopy
/ Mechanical properties
/ Natural Materials
/ Organic Chemistry
/ Original Paper
/ Particle board
/ Particle size distribution
/ particleboards
/ Physical Chemistry
/ Polymer Sciences
/ Shear thinning (liquids)
/ Sustainable Development
/ urea formaldehyde
/ Urea formaldehyde resins
/ Viscosity
/ wood
/ wood strength
2016
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Effect of addition of microfibrillated cellulose to urea-formaldehyde on selected adhesive characteristics and distribution in particle board
Journal Article
Effect of addition of microfibrillated cellulose to urea-formaldehyde on selected adhesive characteristics and distribution in particle board
2016
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Overview
Several studies demonstrate that the addition of microfibrillated cellulose (MFC) to urea-formaldehyde (UF) wood adhesive improves the mechanical bond strength of wood particle board. In order to elucidate potential underlying mechanisms, the distribution of unmodified UF as well as MFC-modified UF (UF-MFC) in particle board was studied by means of light microscopy. The viscosity and cure characteristic of the adhesive systems were also characterised. UF-MFC showed high viscosity and shear thinning compared to UF. Both chemical and mechanical cure of adhesive were delayed in the presence of MFC. In UF-MFC, the size distribution of adhesive particles shifts towards larger particles compared to UF. More adhesive is directly available for adhesive bonding, and a larger part of the wood is covered with adhesive. This may be the cause for the better mechanical performance of particle board bonded with UF-MFC compared to UF.
Publisher
Springer Netherlands,Springer Nature B.V
Subject
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