首页> 外文期刊>European journal of wood and wood products >Improved strength properties of three-layered particleboards with different core and surface layers based on kiri wood (Paulownia spp.)
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Improved strength properties of three-layered particleboards with different core and surface layers based on kiri wood (Paulownia spp.)

机译:基于基于基于小柯伍德(Paulownia SPP)的三层刨花板的强度特性改进了三层刨花板的强度特性。

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摘要

The kiri tree produces low-density wood, which serves as an excellent material for particleboards (PB) due to the correspondingly low bulk density of the particles and better glue utilization. In this study, kiri particles (KPs) are used in surface and core layers to explicitly improve certain strength properties of three-layered PBs. Six variants of three-layered PBs were produced from KPs and industrial particles (IPs) with a target density of 500 kg m(-3). The composition of the PBs was 100% KPs, 100% IPs, KPs in the surface layer with IPs in the core layer and vice versa, and KPs and IPs, respectively, in the surface layer with a 50/50% mixture of KPs and IPs. KPs in the surface layer improved bending strength and bending MOE for all different core layers. The internal bond strength increased accordingly with the amount of KPs in the core layer. Thickness swelling was lower with KPs in the surface layer for panels with all different core layers. Water absorption was lower with KPs in the surface layer for most of the panels. Density profiles reveal that the variants with lowest density in the core layer do not necessarily show the lowest IB results, which indicates that IB is more dependent on the compression of the particles and resulting enhanced adhesion than on density alone. Screw withdrawal resistance was not affected by the surface layer, but it increased with the overall amount of KPs in the PB.
机译:基希树生产低密度木材,其用作刨花板(PB)的优异材料,由于颗粒的相应低堆积密度和更好的胶水利用。在该研究中,基希颗粒(KPS)用于表面和芯层以明确地改善三层PBS的一定强度性质。从KPS和工业颗粒(IPS)产生六种三层PBS的六种变体,其目标密度为500kg m(-3)。 PBS的组合物为100%KPS,100%IPS,在表面层中,在核心层中的IPS中,在表面层中分别在核心层中,反之亦然,并且KPS和IPS,具有50/50%的KPS混合物和ips。表面层中的KPS改善了所有不同芯层的弯曲强度和弯曲的MOE。内键强度随着核心层中的KPS的量而增加。厚度溶胀在带有所有不同芯层的面板中的kps较低。对于大多数面板,表面层中的kps较低吸水率。密度曲线显示,核心层中最低密度的变体不一定显示最低的IB结果,这表明IB更依赖于颗粒的压缩并产生比单独密度的增强的粘附性。螺杆取消阻力不受表面层的影响,但随着PB中的kPs的总量增加。

著录项

  • 来源
    《European journal of wood and wood products》 |2019年第5期|761-769|共9页
  • 作者

    Nelis Philipp A.; Mai Carsten;

  • 作者单位

    Univ Goettingen Burckhardt Inst Wood Biol & Wood Prod Busgenweg 4 D-37077 Gottingen Germany;

    Univ Goettingen Burckhardt Inst Wood Biol & Wood Prod Busgenweg 4 D-37077 Gottingen Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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