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Integrated model for tracking defects through the full manufacturing route of aerospace discs

机译:集成模型,用于在整个航空航天光盘制造过程中跟踪缺陷

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Process models simulating the various stages of gas turbine disc manufacture have been integrated to simulate defect tracking throughout the entire manufacturing route: vacuum induction melting, vacuum arc remelting (VAR), homogenisation heat treatment, cogging, forging, final heat treatment and machining. An integrated complete manufacturing route model allows intrinsic or extrinsic defects entrained within the material during the initial VAR stage to be tracked through the subsequent processes. This enables determination of the motion of these defects during hot deformation stages as well as calculation of whether they might be removed during machining. If they remain in the final component, they may potentially serve as initiation sites for in service failure. The model was applied to a generic disc geometry and it was found that intrinsic defects formed (such as freckles and discrete white spots) during VAR at mid-radius spots are undesirable as they have a high probability of remaining in the final disc. Inclusions in the central region or near edge, such as solidification or dendritic white spot and extrinsic particles, are frequently removed during final machining. Further, it was demonstrated that the technique can also be used for diagnosing the origins of defects found in the final machined disc by tracking their motion in reverse to obtain their initial location in the upstream processes, thus providing a tool to help optimise quality control through process design.
机译:集成了模拟燃气轮机盘制造各个阶段的过程模型,以模拟整个制造过程中的缺陷跟踪:真空感应熔化,真空电弧重熔(VAR),均质化热处理,嵌齿,锻造,最终热处理和机加工。集成的完整制造路线模型允许在初始VAR阶段夹带在材料内的固有或外部缺陷可以通过后续过程进行跟踪。这样就可以确定这些缺陷在热变形阶段的运动,并可以计算出是否在加工过程中将其清除。如果它们保留在最终组件中,则它们可能会充当服务故障的启动站点。该模型应用于一般的圆盘几何形状,发现在VAR过程中,中半径点处形成的固有缺陷(例如雀斑和离散的白点)是不希望的,因为它们很可能保留在最终圆盘中。在最终加工过程中,通常会去除中心区域或边缘附近的夹杂物,例如凝固或树枝状白斑和外在颗粒。此外,证明了该技术还可以用于通过逆向跟踪其运动以获得上游过程中的初始位置来诊断最终加工的光盘中发现的缺陷的来源,从而提供了一种工具来帮助优化质量控制流程设计。

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