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Improvements of White Pine Wood Properties by Impregnation with Unsaturated Polyesters in Admixture with Styrene

Journal of Applied Polymer Science • 2001
العودة
معلومات البحث
المؤلفون A. A. MAHMOUD, A. M. F. EISSA, M. S. OMAR, A. A. EL-SAWY, A. F. SHAABAN
الكلمات المفتاحية white pine wood; impregnation; unsaturated polyesters; water repellent; antiswelling; compressive strength; fire retardancy
المجلة العلمية Journal of Applied Polymer Science
الناشر © 2001 John Wiley & Sons, Inc. J Appl Polym Sci 82: 1410–1416, 2001
المجلد 82
العدد Not Available
الصفحات 1410–1416
publication.type International
رابط البحث Not Available
المواد المرفقة Not Available
الملخص
Four unsaturated polyester resins based on poly(ethyleneglycol-maleatephthalate)
(PE) with different bromine contents were used for the impregnation and
coating of oven-dried white pine wood samples in admixture with styrene (St). Curing
was affected by the initiator–heat technique by using 0.2 wt % of benzoyl peroxide
(Bz2O2). It was found that the use of the four prepared unsaturated polyester/styrene
(PE/St) mixtures resulted in the formation of wood plastic combinations (WPC) with a
higher percentage retention, higher percentage crosslinking, water repellent effectiveness,
and antiswelling efficiency. ASE properties are excellent for wood samples impregnated
with resin without bromine. Water absorption was decreased and a good
water uptake was obtained by wood samples impregnated by resin of lower bromine
content. Compressive strength was increased for all samples, especially for the wood
samples impregnated with resin without bromine. The flammability test for the prepared
plastics showed that the samples without bromine are classified as burning
substance and the other three samples contain bromine are classified as self-extinguishing
samples fromASTMD635-68T (1956). On the other hand, impregnated wood
samples with PE/St mixtures show no fire retardancy after carrying ASTM E160-50
(1965), whereas coated wood samples with the same mixtures show excellent fire retarding properties.