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Low formaldehyde emission MDF overlaid with wood veneer: bonding problems assessment

机译:木饰面板覆盖的低甲醛排放中密度纤维板:粘合问题评估

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The aim of this work is to assess wood bonding problems in medium density fibreboard (MDF) surfacing with decorative wood veneer (beech). Three sets of tests were carried out. The first set was carried out using automatic bonding evaluation system (ABES) in order to assess the bond strength development rate of two UF resins produced according to different processes. The second set permitted the study of the behaviour of bonding between MDF and beech veneer using ABES, and for this purpose a special MDF sample was designed. These MDF samples were pressed to conventional beech test strips and pulled at any given time immediately after pressing. A third set of tests were performed in a pilot hot-press used for MDF surfacing with beech veneer. Differentoperating conditions were tested (pressing time and resin type). The quality of bonding between wood veneer and MDF was evaluated using the surface soundness test (EN311). The tensile load required to pull off a defined surface area of overlaid panel was recorded and it was observed that in all samples the failure mode occurred within the underlying board. An analysis of variance test was performed to evaluate the significance level of the effects of the different factors on surface soundness. The mainconclusion of this work is that the MDF surfacing operation seems to induce degradation in the MDF surface layers, probably due to the presence of urea, which could be responsible for a decrease in the surface soundness, which was mostly observed for longer pressing times.
机译:这项工作的目的是评估装饰木板饰面(山毛榉)中密度纤维板(MDF)中的木材粘合问题。进行了三组测试。第一组使用自动粘合评估系统(ABES)进行,以评估根据不同工艺生产的两种UF树脂的粘合强度发展速度。第二组允许使用ABES研究中密度纤维板和山毛榉胶合板之间的粘结性能,并为此目的设计了特殊的中密度纤维板样品。将这些MDF样品压制成常规的山毛榉试条,并在压紧后的任何给定时间将其拉出。第三套测试是在用于中密度纤维板与榉木贴面的中试热压机中进行的。测试了不同的操作条件(加压时间和树脂类型)。木质贴面和中密度纤维板之间的粘合质量使用表面硬度测试(EN311)进行了评估。记录了拉下覆盖面板的限定表面积所需的拉伸载荷,并且观察到在所有样品中,破坏模式都发生在下面的板上。进行方差分析以评估不同因素对表面稳固性影响的显着性水平。这项工作的主要结论是,中密度纤维板的堆焊操作似乎在中密度纤维板的表面层中引起了降解,这可能是由于尿素的存在,而尿素的存在可能会导致表面硬度的降低,而这通常是在较长的压制时间内观察到的。

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