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    • 1. 发明授权
    • Method and system for probabilistic fatigue crack life estimation
    • 概率疲劳裂纹寿命估算方法与系统
    • US09280620B2
    • 2016-03-08
    • US13652671
    • 2012-10-16
    • Christian AmannPhillip W. GravettKai Kadau
    • Christian AmannPhillip W. GravettKai Kadau
    • G01F17/00G01B5/00G06F17/50G01B5/30G01B5/04H01L21/66H01L21/67
    • G06F17/5018G01B5/00G01B5/04G01B5/30H01L21/67H01L21/67276H01L21/67288H01L22/12
    • A probabilistic estimation of fatigue crack life of a component is provided. A plurality of representations of the component is defined from material property scatter data and flaw-size scatter data, wherein each representation is defined by one possible material condition and flaw-size condition associated with the component. For each representation, a component location is selected and a determination is made whether said individual representation fails after a given number of cycles N, based on the calculation of a crack growth in the selected location. The crack growth is calculated on the basis of the material condition and the flaw-size condition in the selected location. Failure of the individual representation is determined if the crack growth is determined to be unstable. The sum total of the number of the representations that failed after N cycles is determined. A probability of failure of the component after N cycles is then determined.
    • 提供了组件的疲劳裂纹寿命的概率估计。 组件的多个表示由材料属性散布数据和缺陷尺寸散布数据定义,其中每个表示由与该组件相关联的一个可能的材料条件和缺陷尺寸条件限定。 对于每个表示,选择分量位置,并且基于所选择的位置中的裂纹增长的计算,确定在给定数量的周期N之后所述单个表示是否失效。 基于材料条件和选定位置的缺陷尺寸条件计算裂纹扩展。 如果确定裂纹增长不稳定,则确定个体表示的失败。 确定N个周期后失败的表示数的总和。 然后确定在N个周期之后的分量的故障概率。
    • 2. 发明申请
    • METHOD AND SYSTEM FOR PROBABILISTIC FATIGUE CRACK LIFE ESTIMATION
    • 用于概率疲劳裂纹生命估计的方法和系统
    • US20140107948A1
    • 2014-04-17
    • US13652671
    • 2012-10-16
    • Christian AmannPhillip W. GravettKai Kadau
    • Christian AmannPhillip W. GravettKai Kadau
    • G01B5/30G06F19/00
    • G06F17/5018G01B5/00G01B5/04G01B5/30H01L21/67H01L21/67276H01L21/67288H01L22/12
    • A probabilistic estimation of fatigue crack life of a component is provided. A plurality of representations of the component is defined from material property scatter data and flaw-size scatter data, wherein each representation is defined by one possible material condition and flaw-size condition associated with the component. For each representation, a component location is selected and a determination is made whether said individual representation fails after a given number of cycles N, based on the calculation of a crack growth in the selected location. The crack growth is calculated on the basis of the material condition and the flaw-size condition in the selected location. Failure of the individual representation is determined if the crack growth is determined to be unstable. The sum total of the number of the representations that failed after N cycles is determined. A probability of failure of the component after N cycles is then determined.
    • 提供了组件的疲劳裂纹寿命的概率估计。 组件的多个表示由材料属性散布数据和缺陷尺寸散布数据定义,其中每个表示由与该组件相关联的一个可能的材料条件和缺陷尺寸条件限定。 对于每个表示,选择分量位置,并且基于所选择的位置中的裂纹增长的计算,确定在给定数量的周期N之后所述单个表示是否失效。 基于材料条件和选定位置的缺陷尺寸条件计算裂纹扩展。 如果确定裂纹增长不稳定,则确定个体表示的失败。 确定N个周期后失败的表示数的总和。 然后确定在N个周期之后的分量的故障概率。