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Processing map for hot working of spray formed and hot isostatically pressed Al-Li alloy (UL40)

机译:喷射成形和热等静压Al-Li合金(UL40)的热加工工艺图

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The hot deformation behavior of spray formed + HIPed Al-Li (UL40) alloy was studied using processing map technique. The map has been interpreted in terms of the microstructural processes occurring in situ with deformation, based on the values of a dimensionless parameter η which is an efficiency index of energy dissipation through microstructural processes. An instability criterion has also been applied to demarcate the flow instability regions in the processing map using another parameter (ξ). Both the parameters (η and ξ) were computed from the experimental data generated by compression tests conducted at various temperature and strain rate combinations over the hot working range (375-575℃ and 3 × 10~(-4) to 1 s~(-1)) of the present material. The processing map exhibits three distinct η domains without any unstable flow conditions under the investigated temperature and strain rate conditions. The dominant microstructural mechanisms corresponding to these domains were identified to be extended dynamic recovery, grain boundary cavitation and flow localization. The stress-strain, microstructure and hot ductility recorded under the deformation conditions of these domains were correlated to the microstructural processes. The 'safe window' for hot working of HIPed UL40 material has been identified based on these results. Further, the significance of HIPing on the hot workability has been enunciated by comparing the results of the present material with the as-spray formed material.
机译:利用加工图技术研究了喷射成形+ HIPed Al-Li(UL40)合金的热变形行为。根据无因次参数η的值,该图是根据变形发生的微结构过程解释的,该无量纲参数η是通过微结构过程进行能量消散的效率指标。还应用了不稳定性准则来使用另一个参数(ξ)在处理图中划分流不稳定性区域。这两个参数(η和ξ)都是根据在高温工作范围(375-575℃和3×10〜(-4)至1 s〜( -1))。在研究的温度和应变速率条件下,加工图显示了三个不同的η域,没有任何不稳定的流动条件。与这些区域相对应的主要微观结构机制被确定为扩展的动态恢复,晶界空化和流动局部化。在这些区域的变形条件下记录的应力应变,显微组织和热延性与显微组织过程相关。基于这些结果,已确定了HIPed UL40材料热加工的“安全窗口”。此外,通过将本发明材料的结果与喷雾形成的材料进行比较,已经阐明了HIPing对热加工性的重要性。

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