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Short Span Compressive Stress-strain Relation and Model of Molded Pulp Material

机译:成型 r n纸浆材料的短跨度压缩应力-应变关系及模型

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Short span compressive experiments of molded pulp specimens were carried out on the SHIMADZU material test machine, resulting in the stress-strain curves. The analytic results indicate that the material density and the loading rate are the two major factors that influence the stress-strain relationships of the molded pulp materials. With the increase of material's density, elastic modulus and ultimate strength both increase. With the increase of loading rate, elastic modulus decreases whereas ultimate strength increases. By analyzing the test results and the existing models, an improved stress-strain model for molded pulp material, with the two factors taken into consideration, has been proposed. The model coefficients are obtained by fitting against the short span compressive experimental data for the materials with different densities under different loading rate. Comparison made between the experimental results and calculated results indicates that the proposed model can well fit the stress-strain curves of molded pulp.
机译:在SHIMADZU材料试验机上进行了模制纸浆样本的短跨度压缩实验,得出了应力-应变曲线。分析结果表明,材料密度和加载速率是影响模塑纸浆材料应力-应变关系的两个主要因素。随着材料密度的增加,弹性模量和极限强度均增加。随着加载速率的增加,弹性模量减小,而极限强度增加。通过分析测试结果和现有模型,提出了一种考虑到两个因素的改进的纸浆模塑材料应力应变模型。通过拟合不同密度,不同加载速率的材料的短跨度压缩实验数据,获得模型系数。实验结果与计算结果的比较表明,所提出的模型能够很好地拟合模塑纸浆的应力-应变曲线。

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