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A new experimental approach for obtaining diffuse-strain flow stress curves

机译:一种获得扩散应变流应力曲线的新实验方法

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A new experimental approach for determining the sheet metal flow stress curve for diffuse necking deformation through the hydraulic bulge expansion (HBE) test is introduced. For this approach, a flat sheet of metal is bulged under the load of hydraulic pressure within the confines of a rigid binder/die tool set of circular die opening. The hydraulic pressure and volume flow rate of the pressurized water entering the die cavity are recorded in real time. Operating under the assumption of thin-walled pressure vessel behavior, the real time data are used to compute the flow stress curve for the material type considered. The novel aspect of the proposed technique is the use of water volume measurement for determining the radius of curvature of the expanding dome. An example flow stress curve for 1.0 mm thick DDQ cold rolled sheet steel is shown to be in good agreement with the flow stress curve obtained through the standard uniaxial tension test. One key advantage of this proposed method is that the analyst may determine the diffuse neckingportion of the flow stress curve without employing cumbersome techniques associated with uniaxial tensile test methods. Two disadvantages of the proposed method are the uncertainty associated with having to assume a yield surface, and the error associated with having to assume membrane behavior in the work piece. The introduction of this new method will increase researchers' access to practical methods for obtaining sheet metal flow stress curves.
机译:介绍了一种新的实验方法,该方法可通过水力凸胀膨胀(HBE)测试确定用于弥散颈缩变形的钣金流动应力曲线。对于这种方法,在液压压力的作用下,在圆形模具开口的刚性粘合剂/模具工具组的范围内,将一块扁平的金属凸出。实时记录进入模腔的加压水的水压和体积流量。在假定薄壁压力容器行为的情况下运行,实时数据用于计算所考虑材料类型的流变应力曲线。所提出的技术的新颖方面是使用水量测量来确定膨胀圆顶的曲率半径。 1.0毫米厚DDQ冷轧薄钢板的流动应力曲线示例与通过标准单轴拉伸试验获得的流动应力曲线高度吻合。该建议方法的一个主要优点是,无需使用与单轴拉伸测试方法相关的繁琐技术,分析人员就可以确定流应力曲线的扩散颈缩部分。所提出的方法的两个缺点是与必须假定屈服面有关的不确定性以及与必须假定工件中的膜行为有关的误差。这种新方法的引入将使研究人员更容易获得获得钣金流动应力曲线的实用方法。

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