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Original Articles

Effects of surface laminate type and recycled fiber content on properties of three-layer medium density fiberboard

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Pages 163-171 | Received 19 Apr 2018, Accepted 22 Sep 2018, Published online: 08 Oct 2018
 

ABSTRACT

High global production of medium-density fiberboard (MDF) in recent years could generate an equal quantity of waste MDF at the end of its service life, requiring recycling of waste MDF instead of landfilling or incineration. This study investigated effects of the addition of recycled fiber (RF) obtained from surface laminated MDFs with three different materials to the properties of three-layer recycled MDF (rMDF). Three types of surface laminates such as low-pressure laminate, polyethylene terephthalate, and polyester coating were hammer milled, and then went through a patent-pending fiber recovery system to obtain the resultant RFs that were added to the core layer of rMDF. These RFs at three contents (10, 20, and 30%) were blended with 12% of urea-formaldehyde (UF) resin prior to hot-pressing. Statistical analysis showed that the best internal bonding strength, modulus of rupture, and modulus of elasticity of rMDF panels were obtained for LPL-rMDF with a 20% RF content. Thickness swelling, water absorption, and formaldehyde emission of rMDF were reduced by increasing the RF content. These findings suggest that a minimum RF content of 20% can be replaced with virgin fibers for the rMDF manufacture, indicating the feasibility of recycling waste laminated MDF into three-layer rMDF.

Acknowledgements

This study was conducted with support from Korea Forest Science Technology (Project No. 2015077B10-1718-AA01) provided by the Korea Forest Service (Korea Forestry Promotion Institute).

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

This study was carried out with the support from Korea Forest Service (Project No. 2015077B10-1718-AA01) through The Korea Forestry Promotion Institute.

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