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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Rapid determination for fatigue parameters of AZ31B magnesium alloy based on evolution of temperature under high cyclic fatigue
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Rapid determination for fatigue parameters of AZ31B magnesium alloy based on evolution of temperature under high cyclic fatigue

机译:基于高循环疲劳的温度演化的AZ31B镁合金疲劳参数的快速测定

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摘要

Based on the infrared thermography method, experiments are carried out to investigate the evolution of temperature field of the extruded AZ31B magnesium alloy specimens under high cyclic fatigue load. The experimental results show that the superficial temperature of specimen under cyclic fatigue load changes with the number of cycles. According to the characteristics of surface temperature change, we propose a formula to calculate the residual fatigue life using energy approach. The proposed formula to assess the fatigue parameters (fatigue limit, residual fatigue life, fatigue life and S-N curve) achieves good results for AZ31B magnesium alloy. Furthermore, the fatigue limits (Δσ_(eSN)=90.3 MPa) derived from the traditional method through 10~7 cycles were compared with the values predicted by the infrared thermographic method (Δσ_(eSM)=87.3 MPa) and the energy approach (Δσ_(eΦ)=86.2 MPa), and the comparison results of percentage differences are 3.3 and 4.5% respectively.
机译:基于红外热成像法,进行了实验,以研究挤出AZ31B镁合金标本温度场在高循环疲劳载荷下的演变。 实验结果表明,循环疲劳负荷下标本的浅表温度随循环次数而变化。 根据表面温度变化的特点,我们提出了一种使用能量方法来计算残留疲劳寿命的公式。 评估疲劳参数(疲劳极限,残余疲劳寿命,疲劳寿命和S-N曲线)的拟议公式实现了AZ31B镁合金的良好效果。 此外,将从传统方法通过10〜7个循环导出的疲劳限制(ΔΣ_(esn)= 90.3MPa)与由红外热成像方法预测的值(ΔΣ_(ESM)= 87.3MPa)和能量方法(ΔΣ_ (eφ)= 86.2MPa),百分比差异的比较结果分别为3.3和4.5%。

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