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Strain Measurements within Fiber Boards. Part I: Inhomogeneous Strain Distribution within Medium Density Fiberboards (MDF) Loaded Perpendicularly to the Plane of the Board

机译:纤维板上的应变测量。第一部分:垂直于板平面加载的中密度纤维板(MDF)中的不均匀应变分布

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Internal bond strength testing is a widely used approach for testing quality traits of wood based panels. Generally, failure of internal bond specimens is due to adhesion and/or wood failure in the specimen. It has been reported that a composite product with a large variation in the vertical density profile fails in the center part of the board which is either the middle of the core layer or the transition zone between core layer and face layer. The density in the failure zone is typically 50% lower than the maximum density in the face layers. The aim of this study was to analyze the strain distribution in a specimen under tension perpendicular to the panel plane. The results showed that a high variety of strain magnitude occurred in the specimen. The strain is either aligned with the tension direction or a tension zone is built in one of the edge zones leading to failure. Vector graphics of the specimen show the problematic test setup of internal bond strength measurement. Strain spots in the edges lead to the assumption of an uneven stress distribution due to the momentum which results from non-perfect alignment or irregularities in the test setup.
机译:内部粘合强度测试是一种广泛用于测试人造板质量特性的方法。通常,内部粘结样品的破坏是由于样品中的附着力和/或木材破坏。据报道,垂直密度分布变化很大的复合产品在板的中心部分失效,该中心部分要么是芯层的中间,要么是芯层和表面层之间的过渡区。破坏区的密度通常比表面层的最大密度低50%。这项研究的目的是分析在垂直于面板平面的张力下样品中的应变分布。结果表明,试样中出现了各种各样的应变幅度。应变要么与拉伸方向对齐,要么在边缘区域之一中建立了一个拉伸区域,导致失效。样品的矢量图形显示了内部粘结强度测量的问题测试设置。由于动量的缘故,边缘中的应变点会导致应力分布不均匀的假设,动量是由于测试设置中的不正确对齐或不规则性而产生的。

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