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A PROBABILISTIC FRAMEWORK FOR GAS TURBINE ENGINE MATERIALS WITH MULTIPLE TYPES OF ANOMALIES

机译:具有多种类型异常的燃气涡轮发动机材料的概率框架

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Some rotor-grade gas turbine engine materials may contain multiple types of anomalies such as voids and inclusions that can be introduced during the manufacturing process. The number and size of anomalies can be very different for the various anomaly types, each of which may lead to premature fracture. The probability of failure of a component with multiple anomaly types can be predicted using established system reliability methods provided that the failure probabilities associated with individual anomaly types are known. Unfortunately, these failure probabilities are often difficult to obtain in practice. In this paper, an approach is presented that provides treatment for engine materials with multiple anomalies of multiple types. It is based on previous work that has extended to address the overlap among anomaly type failure modes using the method of Kaplan-Meier, and is illustrated for risk prediction of a nickel-based superalloy. The results can be used to predict the risk of general materials with multiple types of anomalies.
机译:一些转子级燃气涡轮发动机材料可以含有多种类型的异常,例如在制造过程中可以引入的空隙和夹杂物。异常的数量和大小对于各种异常类型可能非常不同,每个异常类型可能导致过早的骨折。可以使用建立的系统可靠性方法预测具有多种异常类型的组分的概率,条件是已知与各种异常类型相关的故障概率。不幸的是,这些故障概率通常难以在实践中获得。本文提出了一种方法,其为具有多种异常的发动机材料提供处理。它基于以前的工作,该工作已经扩展到使用Kaplan-Meier的方法来解决异常型失效模式的重叠,并且被示出用于镍基超合金的风险预测。结果可用于预测具有多种类型异常的通用材料的风险。

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