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Contribution of Kinematical and Thermal Full-field Measurements for Identification of High Cycle Fatigue Properties of Steels

机译:电谱和热全场测量鉴定钢材鉴定的贡献

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Using kinematical and thermal full-field measurements for identification of mechanical parameters has become a very promising area of experimental mechanics. The purpose of this work is to extend the use of non-conventional tests and full field measurements (kinematical and thermal) to the identification of the fatigue properties of a dual-phase steel. A particular attention is paid to the influence of plastic pre-strain on the fatigue limit. Indeed, an analytical approach is proposed to define the geometry of the specimen permitting to obtain a constant gradient of plastic strain within the zone of interest after a monotonic pre-strain. Then, a self-heating test under cyclic loading is carried out on the pre-strained specimen. During this cyclic test, the thermal field is measured using an infrared camera. Finally, a suitable numerical strategy is proposed to identify a given thermal source model taking into account the influence of a plastic pre-strain. The results show that, with the non-conventional test and the procedure developed in this work, the influence of a range of plastic pre-strain on fatigue properties can be identified by using only one specimen. It is worth noting that a great number of specimens is required to determine this effect by using classical fatigue campaign.
机译:使用用于识别机械参数的运动和热全场测量已成为实验机制的非常有希望的区域。本作作品的目的是扩展使用非常规测试和全场测量(动力学和热)以识别双相钢的疲劳性能。特别注意塑料预株对疲劳极限的影响。实际上,提出了一种分析方法来定义样本的几何形状,允许在单调预余量之后在感兴趣区域内获得塑性应变的恒定梯度。然后,在预束性样本上进行循环载荷下的自加热试验。在此循环测试期间,使用红外相机测量热场。最后,提出了一种合适的数值策略来鉴定给定的热源模型,以考虑塑料预株的影响。结果表明,通过非常规试验和在该工作中开发的程序,可以通过仅使用一个样品来鉴定一系列塑料预致株系列对疲劳性能的影响。值得注意的是,通过使用经典疲劳运动来确定大量标本来确定这种效果。

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