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An elliptical pore model for the mechanical properties of paper

机译:用于纸张力学性能的椭圆孔模型

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摘要

A simple mechanical model for paper comprising only isotropic cell-wall cellulose and a single elliptical pore is presented. Finite element method analysis applied to this model produced two stress-strain curves equivalent to the anisotropy observed in machine-made paper. Nissan's hydrogen-bond domination theory for cell-wall material with a density of 1000 kg/m(3) provided the stress-strain functionality to control the displacement of the mesh nodes. Experimental data were collected from a single roll of paper produced on a pilot machine run where formation was decreased in five steps. Fiber properties, sheet grammage, and density were held constant in the final paper. Regardless of the level of formation, all breaking stress and strain data fell into one of two stress-strain curves, a machine-direction curve and a cross-direction curve. The initial modulus of each stress-strain curve was used to estimate the shape of the elliptical pore used in the finite element method model. The results for the model matched the results from the experimental data.
机译:提出了一种仅包含各向同性细胞壁纤维素和单个椭圆孔的纸张简单机械模型。对该模型进行的有限元方法分析产生了两条应力-应变曲线,它们等效于机器纸中观察到的各向异性。日产针对密度为1000 kg / m(3)的细胞壁材料的氢键控制理论提供了应力应变功能来控制网格节点的位移。实验数据是从在中试机上生产的单卷纸中收集的,该纸机在五个步骤中减少了形成量。最终纸张的纤维特性,纸张克重和密度保持恒定。无论地层的水平如何,所有断裂应力和应变数据都落入两条应力-应变曲线之一,即机器方向曲线和横向方向曲线之一。每个应力-应变曲线的初始模量用于估计有限元方法模型中使用的椭圆孔的形状。该模型的结果与实验数据的结果相匹配。

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