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首页> 外文期刊>International Journal of Solids and Structures >Determining material true stress-strain curve from tensile specimens with rectangular cross-section
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Determining material true stress-strain curve from tensile specimens with rectangular cross-section

机译:用矩形截面的拉伸试样确定材料的真实应力-应变曲线

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The uniaxial true stress logarithmic strain curve for a thick section can be determined from the load-diameter reduction record of a round tensile specimen. The correction of the true stress for necking can be performed by using the well-known Bridgman equation. For thin sections, it is more practical to use specimens with rectangular cross-section. However, there is no established method to determine the complete true stress-logarithmic strain relation from a rectangular specimen. In this paper, an extensive three- dimensional numerical study has been carried out on the diffuse necking behavior of tensile specimens made of isotropic materials with rectangular cross-section, and an approximate relation is established between the area reduction of the minimum cross-section and the measured thickness reduction. It is found that the area reduction can be normalized by the uniaxial strain at maximum load which represents the material hardening and also the section aspect ratio. Furthermore, for the same material, specimens with different aspect ratio give exactly the same true average stress-logarithmic strain curve. This finding implies that Bridgman's correction can still be used for necking correction of the true average stress obtained from rectangular specimens. Based on this finding, a method for determining the true stress-logarithmic strain relation from the load-thickness reduction curve of specimens with rectangular cross-section is proposed. Materials: steel and aluminum.
机译:厚截面的单轴真应力对数应变曲线可以从圆形拉伸试样的载荷直径减小记录中确定。可以通过使用众所周知的Bridgman方程来校正颈缩的真实应力。对于薄截面,使用具有矩形截面的样本更为实用。但是,还没有确定的方法来确定矩形试样的完整真实应力-对数应变关系。在本文中,对矩形截面各向同性材料制成的拉伸试样的扩散颈缩行为进行了广泛的三维数值研究,并建立了最小截面面积减小与截面的近似关系。测得的厚度减少量。发现可以通过在最大载荷下的单轴应变来归一化面积减小,该最大轴向载荷代表材料硬化以及截面纵横比。此外,对于相同的材料,具有不同长宽比的试样会给出完全相同的真实平均应力-对数应变曲线。这一发现意味着Bridgman校正仍可用于从矩形试样获得的真实平均应力的颈缩校正。在此基础上,提出了一种由矩形截面试件的减荷曲线确定真实应力-对数应变关系的方法。材料:钢和铝。

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