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The Evaluation of Fatigue Caused by Plane-Bending Stress on Stainless Steel Using the Stacked-coil Type Magnetic Sensor

机译:堆放式线圈型磁传感器对不锈钢平面弯曲应力引起的疲劳的评价

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To prevent injury from metal degradation of structural metallic material such as stainless steel, we have previously proposed fatigue evaluation methods such as the remnant magnetization method and the inductance method. These fatigue evaluation methods showed a positive correlation between the magnetic sensor output signal and the amount of the plane-bending fatigue damage in stainless steel. In this study, a stacked-coil type magnetic sensor was used to evaluate the accuracy of the plane-bending fatigue damage of austenite stainless steel such as SUS304 (ANSI304). The principle of the stacked-coil type magnetic sensor is based on an eddy-current test method. This magnetic sensor was composed of a pick-up coil, an excitation coil, and a Mn-Zn ferrite core. The pick-up coil was composed of two bobbin type coils that were connected differentially. Moreover, the amplitude and the phase angle of the output voltage of the pickup coil were used to evaluate the amount of the plane-bending fatigue damage of SUS304. Results demonstrated a close correlation between the amplitude and the phase angle of the stacked-coil type magnetic sensor output voltage and the plane-bending fatigue damage of SUS304.
机译:为了防止结构金属材料如不锈钢的金属劣化,我们先前提出了疲劳评估方法,例如残余磁化方法和电感方法。这些疲劳评估方法显示磁传感器输出信号与不锈钢中平面弯曲疲劳损坏之间的正相关性。在该研究中,堆叠式线圈型磁传感器用于评估奥氏体不锈钢的平面弯曲疲劳损坏,例如SUS304(ANSI304)。堆放线圈型磁传感器的原理基于涡流测试方法。该磁传感器由拾取线圈,激励线圈和Mn-Zn铁氧体芯组成。拾取线圈由两个横向连接的筒管型线圈组成。此外,拾取线圈的输出电压的幅度和相位角度用于评估SUS304的平面弯曲疲劳损坏的量。结果表明堆放线圈型磁传感器输出电压的幅度和相位角与SUS304的平面弯曲疲劳损坏之间的紧密相关性。

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