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Research on Fatigue Damage in High-Strength Steel (FV520B) Using Nonlinear Ultrasonic Testing

机译:非线性超声检测高强度钢(FV520B)疲劳损坏研究

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In view of the early fatigue damage of high-strength steel FV520B, a nonlinear ultrasonic detection was performed on two types of fatigue samples using nonlinear Lamb waves. The experimental results indicated that the ultrasonic nonlinear parameter is highly sensitive to early fatigue damage in high-strength FV520B. For plate specimens, the ultrasonic nonlinear parameter increased with the number of fatigue cycles. Scanning electron microscopy (SEM) observations of the fatigue specimens revealed that as the number of fatigue cycles increased, the microstructure of the material gradually deteriorated, and the ultrasonic nonlinear parameter increased. For notched specimens, the ultrasonic nonlinear parameter increased as the size of the main crack increased. SEM observations of the fracture indicated that the ultrasonic nonlinear parameters were more consistent with the equivalent microcrack length (defined as the sum of microcrack lengths in the statistical area), as compared with the length of the main crack. It was determined that the nonlinear effect of the Lamb wave is related to the equivalent microcrack length inside the material and that the ultrasonic nonlinear parameter can effectively characterize the fatigue damage state of high-strength FV520B.
机译:鉴于高强度钢FV520B的早期疲劳损伤,使用非线性兰姆波两种类型的疲劳样品进行了非线性超声检测。实验结果表明,在超声波的非线性参数是在高强度FV520B早期疲劳损伤高度敏感。对于板状试样,超声波非线性参数增加疲劳周期数。疲劳试样的扫描电子显微镜(SEM)观察表明,作为疲劳周期数增加时,材料的微观结构逐渐劣化,并且超声波的非线性参数增加。缺口件,超声波非线性参数增加为主要裂纹的尺寸增加。断裂的SEM观察表明作为与主裂纹的长度进行比较超声波非线性参数均与等效微裂纹长度(定义为微裂纹长度的在统计区域总和)更一致。经测定,Lamb波的非线性效应是关系到材料内部的等效微裂纹长度和超声波非线性参数可以有效地表征高强度FV520B的耐疲劳损伤状态。

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