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Fatigue Failure of Extrusion Dies: Effect of Process Parameters and Design Features on Die Life

机译:挤压模具的疲劳失效:工艺参数和设计特征对模具寿命的影响

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Analysis of die failure plays an important role in the prediction and prevention of die failure, and subsequently in improving economics of any metal-forming process. Industrial experience has shown that fracture is the most common mode of failure in the case of hot aluminum extrusion dies. The purpose of the present work is to implement fatigue damage models in a Finite Element code for identification of critical process parameters and die design features in the case of fatigue being the dominating failure mode. For the maximum number of billets extruded by the die before fatigue crack initiation (fatigue life cycles in extrusion), Morrow's stress- and strain-life damage models are implemented for axisymmetric flat extrusion die. With the help of finite element software ABAQUS, extrusion process is simulated and dynamic stress and strain values were obtained by first identifying the potential fatigue location in the die. The evaluation of applicability of the damage models is done for specific hot extrusion die made of H13 steels with Al-6063 as billet material. By considering temperature and strain rate as process parameters and bearing length and fillet radius of the die as geometric features, different simulation runs are performed to investigate the effect of process and design features on the useful die life. Morrow's stress life model shows a good correspondence between computed and actual failure of dies. By establishing correlations of die life with process and design parameters under different conditions, it was shown that the present investigation is a useful guideline at die design and extrusion process stages.
机译:模具失效分析在预测和预防模具失效以及随后提高任何金属成型工艺的经济性中起着重要作用。工业经验表明,在热铝挤压模具中,断裂是最常见的破坏方式。本工作的目的是在有限元代码中实现疲劳损伤模型,以在疲劳是主要失效模式的情况下识别关键工艺参数和模具设计特征。为了在疲劳裂纹萌生之前(挤压过程中的疲劳寿命周期)使模具挤出的坯料达到最大数量,对轴对称平板挤压模具实施了Morrow的应力和应变寿命损伤模型。借助有限元软件ABAQUS,模拟了挤压过程,并通过首先确定模具中的潜在疲劳位置来获得动态应力和应变值。对于由H13钢制成的特定热挤压模具,以Al-6063作为坯料,对损伤模型的适用性进行了评估。通过将温度和应变率视为工艺参数,并将模具的轴承长度和圆角半径视为几何特征,进行了不同的模拟运行,以研究工艺和设计特征对模具使用寿命的影响。 Morrow的应力寿命模型显示了模具的计算失效与实际失效之间的良好对应关系。通过建立模具寿命与不同条件下的工艺和设计参数的相关性,表明本研究是在模具设计和挤压工艺阶段的有用指导。

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