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首页> 外文期刊>Holz als Roh- und Werkstoff >New wood-based panel with imprinted 3D surface pattern and improved internal bonding
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New wood-based panel with imprinted 3D surface pattern and improved internal bonding

机译:新型3D表面图案和改进的内部粘合的人造板

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摘要

This research is on a new development towards three-dimensional surfaces for wood-based panels, i.e., particleboards (PB). By imprinting a self-designed stainless steel grid on both sides of PB the following research questions were investigated: (1) feasability of the 3D-pattern imprintment during hotpressing of resinated PB furnishes, (2) assessment of mechanical properties of imprinted PB, and (3) finite element modelling to understand and optimize material properties, including veneer-added sandwich panels. Following a factorial experimental design PB were produced in the laboratory and cut specimens were tested according to standards. As a result, the 3D-pattern imprintment resulted in a much higher internal bonding: For the 500 kg/m(3) PB the IB increase was 35 %, while for the 700 kg/m(3) the increase was even 67 %. The vertical density profile showed a roof-like shape, with a high density level in the core layer. Bending strength and stiffness turned out to be much lower than for the control. Through finite element modeling (FEM) these property changes could be mechanically explained. A successful compensation for the reduced bending performance could be demonstrated through two-side veneer sheet additions. FEM is also shown to be instrumental for the property optimization of the 3D-pattern imprinted PB. Since IB has significantly increased, the overall PB density could be reduced, meaning a light panel is required for the same product performance. The new 3D-pattern imprinted PB also constitutes a decorative design feature, which could lead to various product applications. Since the imprintment process is easy to execute, this new PB product option might be easily adopted by industry.
机译:这项研究是针对人造板(即刨花板)的三维表面的新开发。通过在PB的两面压印一个自行设计的不锈钢网格,研究了以下研究问题:(1)在热压树脂PB配料期间3D模式压印的可行性,(2)评估压印的PB的机械性能,以及(3)有限元建模,以了解和优化材料特性,包括单板夹芯板。按照析因实验设计,在实验室中生产了PB,并根据标准测试了切割的样品。结果,3D图案压印导致更高的内部粘合力:对于500 kg / m(3)PB,IB的增加是35%,而对于700 kg / m(3)PB的增加甚至是67% 。垂直密度分布呈屋顶状,芯层的密度较高。弯曲强度和刚度被证明远低于对照组。通过有限元建模(FEM),可以机械地解释这些特性变化。通过增加双面胶合板可以成功地弥补弯曲性能的下降。 FEM还显示出有助于3D图案压印PB的属性优化。由于IB显着增加,因此总PB密度可能会降低,这意味着相同产品性能需要光面板。新的3D图案压印PB还具有装饰性设计功能,可导致各种产品应用。由于压印过程易于执行,因此该新的PB产品选件可能会被行业轻松采用。

著录项

  • 来源
    《Holz als Roh- und Werkstoff》 |2017年第3期|375-383|共9页
  • 作者单位

    Mendel Univ Brno, Fac Forestry & Wood Technol, Dept Wood Sci, Zemedelska 3, Brno 61300, Czech Republic;

    Mendel Univ Brno, Fac Forestry & Wood Technol, Dept Wood Sci, Zemedelska 3, Brno 61300, Czech Republic|Univ Nat Resources & Life Sci, Inst Nat Mat Technol, IFA Tulln, Konrad Lorenz Str 20, A-3430 Tulln, Austria;

    Competence Ctr Wood Composites & Wood Chem, Konrad Lorenzstr 24, A-3430 Tulln, Austria;

  • 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
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