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Ductile Fracture Limits of the CuZn40Pb2 Brass Alloy Deformed at Elevated Temperature

机译:Cuzn40pb2黄铜合金的韧性断裂局限性在升高的温度下变形

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The effectiveness of predicting the fracture occurrence in forging process chains strongly depends on the correct choice and calibration of damage and fracture laws under specific stress and strain conditions. The objective of the paper is to evaluate the fracture limits of a brass alloy deformed at elevated temperature under a wide range of stress states typical of hot forging process chains. A combined use of experimental and numerical techniques allowed determining the material fracture limits. Tensile and torsion tests at elevated temperature were conducted to investigate the influence that the stress triaxiality and the deviatoric parameter may have on the material formability. Numerical simulations of the above cited tests were carried out to calculate the values of the stress triaxiality factor of the tests and to correlate them with the experimentally determined strain at fracture. The CuZn40Pb2 brass alloy was taken as the reference material, being characterized by a restrict forgeability window in current hot forging processes. The obtained results state that the material deformation at fracture is greatly influenced not only by the forging temperature (allowing the determination of the lower temperature limit of the forgeability window), but also by the stress triaxiality and the deviatoric parameter, meaning that a general fracture law should be dependent on these stress parameters, as well as on the temperature.
机译:预测锻造过程链中骨折发生的有效性强烈取决于特定应力和应变条件下的正确选择和抗损伤法的损伤和校准。本文的目的是评估在典型的热锻造过程链的各种应力状态下在升高的温度下变形的黄铜合金的断裂局限。结合使用实验和数值技术允许确定材料骨折限制。进行升高温度的拉伸和扭转试验以研究应力三轴性和脱极参数可能对材料成形性具有的影响。进行上述试验的数值模拟以计算测试的应力三轴分子的值,并将它们与裂缝处的实验确定的菌株相关联。 Cuzn40pb2黄铜合金作为参考材料,其特征在于当前热锻造过程中的限制折衷窗口。所得的结果表明,裂缝处的材料变形不仅受到锻造温度(允许测定可锻造窗口的较低温度限制),而且易于应力三轴性和脱裂参数,这意味着一般骨折法律应依赖于这些应力参数以及温度。

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