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Finite Element Analysis of VentlHand Hole Designs for Corrugated Fibreboard Boxes

机译:瓦楞纸箱的VentlHand孔设计的有限元分析

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摘要

Corrugated fibreboard is an economical and efficient material for fabricating shipping containers that are widely used for the distribution, transportation and storage of goods. Corrugated fibreboard is usually considered to be an orthotropic material because the principal fibre directions, machine direction (MD) and cross-machine direction (CD), are identical to the fibres in paperboard, which has apparent directional property differences. The purpose of this study is to investigate the principal design parameters of ventilation holes and hand holes in the faces of the shipping container, (corrugated fibreboard boxes), using finite element analysis (FEA). Various designs of ventilation holes were studied with respect to stress distribution and stress level. It was found that the appropriate pattern and location of the ventilation holes were vertical oblong-shaped and symmetrically positioned within a certain extent of distance to the right and left from the centre of the front and rear faces of the boxes. On the other hand, the appropriate location and pattern of the hand holes were a short distance from the centre to the top of the boxes on both side faces. The appropriate pattern was a modified shape, such as the radius of curvature of both sides in horizontal oblong. The pattern and location of both the ventilation holes and the hand holes determined by the FEA simulation generally agreed well with laboratory experimental results. The decrease in compression strength of the box could be minimized with identical area of the ventilation holes if the length of the major axis of the ventilation hole is less than 1/4 of the depth of the box and the ratio of the minor axis to the major axis is 1/3.5-1/2.5, provided that even-numbered holes are located symmetrically.
机译:波纹纤维板是一种经济有效的材料,用于制造被广泛用于货物的分配,运输和储存的运输容器。瓦楞纤维板通常被视为正交异性材料,因为主要纤维方向,纵向(MD)和横向(CD)与纸板中的纤维相同,具有明显的方向性差异。这项研究的目的是使用有限元分析(FEA)研究运输集装箱(瓦楞纸箱)表面通风孔和手孔的主要设计参数。就应力分布和应力水平研究了通风孔的各种设计。已经发现,通风孔的合适的图案和位置是垂直的长方形,并且对称地定位在从盒子的前后表面的中心到左右的一定距离内。另一方面,手孔的适当位置和样式在两个侧面上从盒子的中心到顶部的距离很短。合适的图案是修改后的形状,例如水平椭圆形的两侧的曲率半径。通过FEA模拟确定的通风孔和手孔的模式和位置​​通常与实验室实验结果非常吻合。如果通风孔的长轴长度小于包装箱深度的1/4,且短轴与外壳的比值小于通风箱的深度的1/4,则在通风孔面积相同的情况下,可使包装箱的抗压强度下降最小化。只要偶数编号的孔对称放置,长轴为1 / 3.5-1 / 2.5。

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