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Manufacturing of Nanostructured Blades for a Francis Turbine by Isothermal Forging of AA6063

机译:通过等温锻造AA6063制造混流式水轮机纳米结构叶片

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摘要

This research work deals with the manufacturing of blades for a Francis turbine with a submicrometric structure through the isothermal forging of a heat-treatable aluminum alloy that has been previously processed by angular channel extrusion. In addition, mechanical properties and microstructure of these same blades are analyzed. A comparative study is also carried out between the properties obtained in the forged blades from the alloy previously deformed through angular channel extrusion and those obtained by employing two other isothermal forging processes of this alloy which mean utilizing different process stages. Moreover, a modeling by finite element about the isothermal forging process of the blades is performed using flow rules obtained from compression tests on these alloys at different temperatures. In this way, a much higher degree of accuracy is achieved in the results compared with that obtained through traditional approaches. With this present study, it is intended to make some progress in the development of nano-structured mechanical components with the aim of demonstrating the feasibility of their manufacturing and achieving an improvement in their mechanical properties.
机译:这项研究工作涉及通过等温锻造铝合金的等温锻造,制造具有亚微米结构的弗朗西斯涡轮机叶片,该铝合金先前已通过角钢通道挤压加工而成。另外,分析了这些相同叶片的机械性能和微观结构。还进行了比较研究,在锻造叶片中由先前通过角通道挤压变形后的合金获得的性能与通过采用该合金的其他两种等温锻造工艺获得的性能之间的对比,这意味着使用不同的工艺阶段。此外,利用从这些合金在不同温度下的压缩试验获得的流动规则,对叶片的等温锻造过程进行了有限元建模。这样,与通过传统方法获得的结果相比,结果获得了更高的准确性。通过本研究,旨在证明纳米结构机械部件的开发方面取得一些进展,以证明其制造的可行性并实现其机械性能的提高。

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