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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >Stress-life prediction of 25°C polypropylene materials based on calibration of Zhurkov fatigue life model
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Stress-life prediction of 25°C polypropylene materials based on calibration of Zhurkov fatigue life model

机译:基于Zhurkov疲劳寿命模型校准的25°C聚丙烯材料的应力 - 寿命预测

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摘要

In this study, to evaluate the chemical and mechanical properties of polypropylene (PP), activation-energy and tensile tests were performed at room temperature (25°C) on pure PP and PP reinforced with glass fibre (GF). To improve the prediction accuracy of the fatigue life, three models based on the calibration of the Zhurkov model were proposed: a regression model, modified strain-rate model and lethargy coefficient-based model. Based on the experimental data analysis and statistical assessment results, we proposed a modified strain-rate model that satisfies the dependency of the physical parameters and is congruent with the predicted fatigue life data. The experimental data and modified strain-rate model were compared with the direct cyclic analysis results. The tendency of the frequency factor as a correction parameter in the modified strain-rate model corresponded to the experimental activation energy and the increasing GF content.
机译:在该研究中,为了评估聚丙烯(PP)的化学和力学性能,在用玻璃纤维(GF)加强的纯PP和PP上在室温(25℃)上进行活化 - 能量和拉伸试验。为提高疲劳寿命的预测准确性,提出了一种基于Zhurkov模型校准的三种模型:一种回归模型,改性应变率模型和基于嗜睡系数的模型。基于实验数据分析和统计评估结果,我们提出了一种改进的应变率模型,其满足物理参数的依赖性,并与预测的疲劳生活数据一致。将实验数据和改性应变速率模型与直接循环分析结果进行比较。修饰应变率模型中频率因数作为校正参数的趋势对应于实验激活能量和增加的GF含量。

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