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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >A Phenomenological Model for the Hysteresis Behavior of Metal Sheets Subjected to Unloading/Reloading Cycles
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A Phenomenological Model for the Hysteresis Behavior of Metal Sheets Subjected to Unloading/Reloading Cycles

机译:装卸循环对金属板滞后行为的现象学模型

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The springback phenomenon is defined as elastic recovery of the stresses produced during the forming of a material. An accurate prediction of the springback puts high demands on the material modeling during the forming simulation, as well as during the unloading simulation. In classic plasticity theory, the unloading of a material after plastic deformation is assumed to be linearly elastic with the stiffness equal to Young's modulus. However, several experimental investigations have revealed that this is an incorrect assumption. The unloading and reloading stress-strain curves are in fact not even linear, but slightly curved, and the secant modulus of this nonlinear curve deviates from the initial Young's modulus. More precisely, the secant modulus is degraded with increased plastic straining of the material. The main purpose of the present work has been to formulate a constitutive model that can accurately predict the unloading of a material. The new model is based on the classic elastic-plastic framework, and works together with any yield criterion and hardening evolution law. To determine the parameters of the new model, two different tests have been performed: unloading!reloading tests of uniaxially stretched specimens, and vibrometric tests of prestrained sheet strips. The peiformance of the model has been evaluated in simulations of the springback of simple U-bends and a drawbead example. Four different steel grades have been studied in the present investigation.
机译:回弹现象定义为在材料形成过程中产生的应力的弹性恢复。回弹的准确预测对成型模拟以及卸载模拟中的材料建模提出了很高的要求。在经典可塑性理论中,塑性变形后材料的卸载被假定为线性弹性,其刚度等于杨氏模量。但是,一些实验研究表明这是一个错误的假设。实际上,卸载和再加载应力-应变曲线甚至不是线性的,而是略微弯曲的,并且该非线性曲线的正割模量与初始杨氏模量不同。更精确地,正割模量随着材料的塑性应变增加而降低。本工作的主要目的是建立本构模型,该模型可以准确地预测物料的卸料。新模型基于经典的弹塑性框架,可与任何屈服准则和硬化演化规律一起使用。为了确定新模型的参数,已执行了两个不同的测试:单轴拉伸样本的卸载,再加载测试,以及预应力板条的振动测试。该模型的性能已通过模拟简单U形弯头的回弹和拉筋示例得到了评估。在本研究中已研究了四种不同的钢种。

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