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FRACTURE MECHANICS BASED LIFE PREDICTION OF HOLLOW EXTRUSION DIES

机译:基于断裂力学的空心挤压模具寿命预测

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Hot metal extrusion dies, especially for hollow profiles, are quite costly. Repair or replacement of dies and affiliated tooling adds to the cost, brings down productivity, and can contribute to product defects. Reasons for the high production and maintenance cost are stringent material requirements (high-strength and high-hardness tool steels), precision manufacturing methods (spark erosion, wire EDM, etc), and a series of specialized heat treatment and surface hardening operations. Consequently, a major goal for die designers and manufacturers is longer service life. An equally important objective is a reasonably accurate prediction of time-to-failure, to help devise an optimum replacement and inventory strategy, and for good performance evaluation. Majority of hot-work extrusion dies fail by fatigue fracture. Treating the die as a flat plate with edge crack, a fracture mechanics based fatigue life prediction model was developed by the authors in an earlier work. To improve the precision of die life prediction, a hollow (tube) extrusion die is modeled in the current work as a pressurized cylinder with internal crack. Based on this new strategy, a model is developed to forecast fracture failure of extrusion dies. Stochastic nature of various fatigue related die parameters is examined. Monte Carlo simulation is used for die life prediction under a given set of operating conditions and mechanical properties. Simulated fracture life values thus obtained are quite realistic in comparison with actual extrusion die life data from the industry.
机译:热金属挤压模,特别是用于空心型材的挤压模,成本很高。模具的维修或更换以及附属的工具增加了成本,降低了生产率,并可能导致产品缺陷。高生产和维护成本的原因是严格的材料要求(高强度和高硬度的工具钢),精密的制造方法(火花腐蚀,电火花线切割等)以及一系列专门的热处理和表面硬化操作。因此,模具设计者和制造商的主要目标是延长使用寿命。同样重要的目标是对故障时间进行合理准确的预测,以帮助设计最佳的更换和库存策略,并进行良好的性能评估。大多数热作挤压模会因疲劳断裂而失效。作者在较早的工作中开发了基于断裂力学的疲劳寿命预测模型,该模型将模具视为带有边缘裂纹的平板。为了提高模具寿命的预测精度,在当前工作中将空心(管)挤压模具建模为带有内部裂纹的加压圆柱体。基于此新策略,开发了一个模型来预测挤压模的断裂故障。检查了各种与疲劳相关的模具参数的随机性质。在给定的一组操作条件和机械性能下,将蒙特卡洛模拟用于模具寿命的预测。这样获得的模拟断裂寿命值与该行业的实际挤出模头寿命数据相比是非常现实的。

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