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A method for determining equivalent hardening responses to approximate sheet metal viscoplasticity

机译:一种确定对近似钣金粘塑性的等效硬化响应的方法

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Recently developed elevated temperature metal forming technologies improve material formability and address the springback issues of cold forming. However, the behaviour of alloys at elevated temperatures is viscoplastic and therefore considerably more complex than under cold forming conditions. This complex behaviour creates a barrier for industrial designers when designing for elevated temperature processes, and therefore leads to these processes often being overlooked. To overcome this barrier, a new method is proposed here to determine simpler strain hardening responses that are equivalent to the viscoplastic responses of alloys at elevated temperatures. The equivalent hardening responses are expressed by single material hardening curves and their hardening exponents are taken as parameters to approximate sheet metal viscoplasticity. This method therefore makes it possible to develop early-stage design guidelines that consider different materials and stamping processes. The method was successfully applied to two viscoplastic alloys under hot stamping conditions to determine equivalent hardening responses. The feasibility of the method has been assessed through comparing finite element simulations using the determined equivalent material models with ones using viscoplastic models. The result showed that the thinning distributions obtained were consistent in both cases, providing evidence that the method can be applied to a range of component designs.?The proposed equivalent material models are simpler than existing viscoplastic material models and can be derived directly from experimental stress-strain data.?Creating design guidelines from equivalent hardening exponents enables a straightforward way to compare between cold and hot stamping capabilities. This comparison makes it possible to make manufacturing process and material selection decisions quickly and effectively at the onset of a design process.?Design guidelines enabled by the proposed method are critical resources to encourage the uptake of new elevated temperature metal forming technologies that facilitate lightweighting and improved environmental efficiency.
机译:最近开发出高温金属成型技术,提高了材料的成形性,并解决了冷成型的回弹问题。然而,升高温度下的合金的行为是粘性塑料,因此比冷成形条件下的更复杂。这种复杂的行为在设计高温过程时为工业设计者创造了一个障碍,因此导致这些过程经常被忽视。为了克服这一屏障,这里提出了一种新方法以确定更简单的应变硬化响应,其等同于升高温度下合金的粘板响应。等效的硬化响应由单材料硬化曲线表示,并且它们的硬化指数被作为接近金属板粘合性的参数。因此,该方法使得可以开发考虑不同材料和冲压过程的早期设计指导。该方法在热冲压条件下成功应用于两种粘胶塑料合金以确定等效的硬化反应。通过使用使用粘胶模型的确定的等效材料模型进行了比较有限元模拟来评估该方法的可行性。结果表明,所获得的稀释分布在两种情况下都是一致的,提供了该方法可以应用于一系列组件设计。该方法的拟议等效材料模型比现有的粘胶材料模型更简单,并且可以直接从实验压力衍生-Strain数据。来自等效硬化指数的设计指南能够直接地比较冷和热冲压能力。这种比较使得可以在设计过程的开始时进行快速有效地制造制造过程和材料选择决策。通过所提出的方法实现的指导指南是促进新的高温金属成形技术的关键资源,便于轻质和改善环境效率。

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