Mechanical and physical properties of oil palm trunk core particleboard bonded with different UF resins

Rapid price increases and reduc­tion in the sup­ply of rub­ber­wood has forced the par­ti­cle­board man­u­fac­tur­ers to look for new alter­na­tive raw mate­ri­als. The pro­duc­tion of par­ti­cle­board from other wood species will be a good solu­tion to the prob­lem of deplet­ing wood sup­plies. The...

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Bibliographic Details
Main Authors: Lee, Seng Hua, H'ng, Paik San, Lum, Wei Chen, Ashaari, Zaidon, Bakar, Edi Suhaimi, M. Y., Nurliyana, Chai, Ee Wen, Chin, Kit Ling
Format: Article
Published: Malaysian Palm Oil Board 2014
Online Access:http://psasir.upm.edu.my/id/eprint/34467/
http://jopr.mpob.gov.my/mechanical-and-physical-properties-of-oil-palm-trunk-core-particleboard-bonded-with-different-uf-resins/
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Summary:Rapid price increases and reduc­tion in the sup­ply of rub­ber­wood has forced the par­ti­cle­board man­u­fac­tur­ers to look for new alter­na­tive raw mate­ri­als. The pro­duc­tion of par­ti­cle­board from other wood species will be a good solu­tion to the prob­lem of deplet­ing wood sup­plies. The objec­tive of this study was to eval­u­ate the prop­er­ties of par­ti­cle­board made from rub­ber­wood and oil palm trunk pressed at dif­fer­ent tem­per­a­tures and times com­pared to par­ti­cle­boards made from sin­gle species. Two types of UF resins (E1 resin and SE0 resin) were applied in this study. The effect of surface-to-core ratio was also exam­ined in this study. The mod­u­lus of rup­ture, inter­nal bond strength and thick­ness swelling of the boards were eval­u­ated based on the Japan­ese Indus­trial Stan­dard for par­ti­cle­board (JIS A 5908:2003). After eval­u­a­tion, the pan­els pro­duced are a poten­tial sub­sti­tute to the pan­els made from pure rubberwood.