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首页> 外文期刊>Journal of Materials Engineering and Performance >Generalization of the Ramberg-Osgood Model for Elastoplastic Materials
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Generalization of the Ramberg-Osgood Model for Elastoplastic Materials

机译:弹塑性材料Ramberg-Osgood模型的概括

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The paper dwells upon two plastic material models: the "inverse'' and the modified Ramberg-Osgood laws. What makes the modified law different is that it postulates the existence of a strictly linear nonzero portion on a deformation curve, limited by the elastic limit point. The plastic strain portion begins beyond this point and ends with the ultimate stress point, which is another characteristic point of the strain curve. Strain curves corresponding to the inverse law and to the modified law have ben plotted on a sample consisting of 30 experimental Russian 20HGR-steel (Grade 900M SAE/USA) strain curve points. Standard error for the inverse law is s(invers) = 0.45, while that for the modified law is an order of magnitude lower: s(modif) = 0.02. It is proven that the inverse law is a strict limit case of the modified law, where the elastic limit point converges to the origin and contracts the linear strain portion to a point, while the entire strain curve becomes a plastic strain curve.
机译:纸张停留在两个塑料材料模型:“逆”和修改的ramberg-osgood法律。是什么使修改的法律不同的是,它假设在变形曲线上的严格线性非零部分的存在,受弹性极限的限制点。塑料应变部分开始超出这一点,并以极限应力点结束,这是应变曲线的另一个特征点。对应于逆法和改性法的应变曲线具有Ben绘制在由30个实验组成的样品上绘制的俄罗斯20HGR-钢(900M SAE / USA)应变曲线点。逆法的标准误差是S(Invers)= 0.45,而修改的法律是下限的数量级:s(modif)= 0.02。它是逆法是修改规律的严格限制案例,其中弹性限制点会聚到原点并将线性应变部分收敛到一个点,而整个应变曲线成为塑料应变曲线。

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