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Wet-preserved Hemp Fibreboard Properties Improvement with Veneering

机译:用肢体改进湿保留的大麻纤维板属性

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The initial research describes a new type of fiber boards for the furniture interior design, developed in cooperation with ATB (Leibniz-Institute for Agricultural Engineering) by using a new method of raw materials preparation and specific production technologies of ATB. The main raw materials are aerobically aged hemp stalks. The samples are made of hemp chips with a long preservation time and fastened together with the UF glue. Specimens are 8 mm thick and correspond to a medium-density fiberboard, fitting standard EN622. Due to the fact that non-veneered material can be used only in non-load-bearing constructions, material improving technologies were studied, such as increase of board density, increase of glue percentage, partially substitution of wet-preserved hemp chips with a dry hemp and/or wooden chips to equalize moisture content of obtained mixture. The particular article describes how the new material is veneered with the oak veneer obtaining three-ply composite board with the improved mechanical properties that allows to use these boards in a load-bearing constructions. Tests are performed with the veneered material to determine such parameters as static bending strength (MOR), modulus of elasticity in static bending (MOE), swelling in thickness and hardness.
机译:初步研究描述了一种新型的家具室内设计纤维板,通过使用新的原材料制备和ATB的特定生产技术的新方法与ATB(Leibniz-Africional Engineirct)合作开发。主要原料是有氧均匀的大麻茎。样品由大麻芯片制成,具有长的保存时间,并与UF胶水固定在一起。标本厚8毫米,对应于中密度纤维板,配件标准EN622。由于非嵌体材料只能在非承载结构中使用,研究了材料改进技术,例如板密度的增加,胶水百分比的增加,湿润的大麻芯片的含量较好大麻和/或木屑均衡获得的混合物的水分含量。该特定文章描述了如何用橡木贴面具获得三层复合板的新材料,其改进的机械性能,允许在承载结构中使用这些板。用嵌体材料进行测试,以确定静态弯曲强度(MOR),静态弯曲(MOE)的弹性模量,厚度和硬度溶胀。

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