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Improvement of Binderless Banana Pseudo-Stem Particleboard Properties via Natural Laminating Materials

机译:通过天然层压材料改进无合体香蕉伪茎刨花板性能

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摘要

In this study, the first objective was to investigate the basic mechanical and physical properties of the binderless banana pseudo-stem particleboard (BBP) at a targeted density of 650 kg/m~3. The second objective was to examine the effect of laminates on the properties of BBP. Three types of BBP were produced, that were oil palm veneer laminated BBP, layered banana leaf laminated BBP, and BBP without lamination. No adhesive was used in the production of the BBP, but for lamination process, cold setting polyvinyl acetate (PVAc) was used. Three tests were conducted which were internal bonding (IB), static bending, and water absorption resistance tests. According to the results, BBP without lamination had the lowest IB. The lowest modulus of rupture (MOR) and lowest modulus of elasticity (MOE) in static bending was also recorded by BBP without lamination. The highest IB, MOR and MOE, were of BBP laminated with oil palm veneer. These values were followed by IB, MOR and MOE of BBP with banana leaf lamination. Highest percentage water absorption (WA) was exhibited by BBP without lamination, followed by BBP laminated with oil palm veneer, and then by BBP laminated with layered banana leaves. The types of BBP significantly influence the MOR and MOE, but did not significantly affect the IB and WA. In general, laminating the BBP using natural layered materials has significantly improved the MOR and MOE.
机译:在这项研究中,第一个目的是以650kg / m〜3的目标密度研究粘合剂香蕉假茎刨花板(BBP)的基本机械和物理性质。第二个目的是检查层压材料对BBP性质的影响。生产了三种类型的BBP,即油棕榈胶层层压BBP,层状香蕉叶层压BBP,BBP无层压。在生产BBP的生产中没有使用粘合剂,但是对于层压过程,使用冷凝乙酸乙烯酯(PVAC)。进行三种测试,其是内键合(IB),静态弯曲和吸水性抗性试验。根据结果​​,没有层压的BBP具有最低的IB。在没有层压的情况下,BBP还记录了静态弯曲中的最低破裂模量(MOR)和弹性的最低弹性模量(MOE)。最高的IB,Mor和Moe,是与油棕榈饰板层压的BBP。这些值之后是BBP的IB,Mor和Moe,与香蕉叶层压。 BBP在没有层压的情况下通过BBP展出的最高百分比吸水性(WA),其次是用油棕榈胶层层压的BBP,然后通过层压的BBP与层状香蕉叶层压。 BBP的类型显着影响了Mor和Moe,但没有显着影响IB和WA。通常,使用天然层状材料层压BBP,显着改善了Mor和Moe。

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