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Thermo-Viscoplastic Behavior of Ni-Based Superalloy Haynes 282 and Its Application to Machining Simulation

机译:镍基高温合金Haynes 282的热粘塑性行为及其在加工模拟中的应用

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Ni-based superalloys are extensively used in high-responsibility applications in components of aerospace engines and gas turbines with high temperature service lives. The wrought, ???3 ?¢????-strengthened superalloy Haynes 282 has been recently developed for applications similar to other common superalloys, such as Waspaloy or Inconel 718, with improved creep behavior, thermal stability, and fabrication ability. Despite the potential of Haynes 282, there are still important gaps in the knowledge of the mechanical behavior of this alloy. In fact, it was not possible to find information concerning the mechanical behavior of the alloy under impulsive loading. This paper focuses on the mechanical characterization of the Haynes 282 at strain rates ranging from 0.1 to 2800 s ?¢????1 and high temperatures ranging from 293 to 523 K using Hopkinson bar compression tests. The experimental results from the thermo-mechanical characterization allowed for calibration of the Johnson?¢????Cook model widely used in modeling metallic alloy?¢????s responses under dynamic loading. Moreover, the behavior of Haynes 282 was compared to that reported for Inconel 718, and the results were used to successfully model the orthogonal cutting of Haynes 282, being a typical case of dynamic loading requiring previous characterization of the alloy.
机译:镍基高温合金广泛用于具有高使用寿命的航空发动机和燃气轮机组件中的高响应性应用中。最近,已开发出可锻造的3相强化的高温合金Haynes 282,其应用与其他常见的高温合金(如Waspaloy或Inconel 718)相似,具有改善的蠕变性能,热稳定性和制造能力。尽管有Haynes 282的潜力,但在了解这种合金的机械性能方面仍存在重要差距。实际上,不可能找到有关在脉冲载荷下合金的机械性能的信息。本文重点研究了使用霍普金森杆压缩试验在0.1到2800 s -1的应变速率和293到523 K的高温范围内的Haynes 282的机械特性。热力学表征的实验结果可用于校正广泛用于建模金属合金在动态载荷下的响应的Johnson?Cook模型。此外,将Haynes 282的行为与Inconel 718报告的行为进行了比较,并将结果成功地用于模拟Haynes 282的正交切削,这是动态载荷的典型情况,需要事先表征合金。

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