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The identification method of blade material parameters and dynamic response analysis of impact

机译:叶片材料参数的识别方法和影响的动态响应分析

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摘要

Caused by the foreign object damage (FOD), failure usually occurs within a very short time so there are many uncertainties about it and it is difficult for experimental instruments to monitor their dynamic response. Therefore, the dynamic response of the impact must be analysed by means of numerical simulation. But, there is a severe lack of the dynamic mechanical performance parameters of the structural materials involved. In this research, the first-class fan titanium alloy blade of a turbofan engine was used as a specimen to carry out the FOD test The test results show that the crack damage has obvious morphological characteristics and narrow parameter range. Based on the results of the FOD test, the reverse identification of Johnson-Cook model parameters is used and the finite element model of the foreign object impacting blade is constructed. Finally, the dynamic response of the impact is analysed from the perspective of different strengths applied and contact forces, which further proves the scientific and engineering value of the model.
机译:由异物损坏(FOD)引起的,故障通常发生在很短的时间内,因此有许多不确定性,实验仪器难以监测其动态响应。因此,必须通过数值模拟分析冲击的动态响应。但是,涉及结构材料的动态机械性能参数严重缺乏。在这项研究中,涡轮机发动机的一流风扇钛合金叶片用作试样进行FOD试验,测试结果表明,裂纹损伤具有明显的形态特征和窄参数范围。基于FOD试验的结果,使用了Johnson-Cook模型参数的反向识别,构建了异物冲击刀片的有限元模型。最后,从应用和接触力的不同强度的角度分析了冲击的动态响应,这进一步证明了模型的科学和工程价值。

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