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首页> 外文期刊>Mechanics of time-dependent materials >Modeling of the Mechanical Behavior of a Nickel Alloy by Using a Time-Dependent Thermodynamic Approach to Relaxations of Continuous Media
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Modeling of the Mechanical Behavior of a Nickel Alloy by Using a Time-Dependent Thermodynamic Approach to Relaxations of Continuous Media

机译:时变热力学方法对连续介质松弛的镍合金力学行为建模

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摘要

In this paper, we show the capabilities of a thermodynamic approach to the relaxation of continuous media to describe the behavior of the Nickel-based alloy IN738LC submitted to various mechanical loadings at high temperature (850 deg C). A preliminary simple modeling (with one spectrum of relaxation times) does not provide satisfactory results. Microscopic observations of the alloy (Sievert et al., 1997) show the existence of several viscosity domains and we take one of them into account in our modeling of two spectra of relaxation times. The results are much better. Finally, we compare our simulations to those obtained with the classical elastoviscoplastic modeling of Chaboche and we link these two approaches at the conceptual level.
机译:在本文中,我们展示了一种热力学方法来缓和连续介质的功能,以描述镍基合金IN738LC在高温(850℃)下承受各种机械载荷的行为。初步的简单建模(具有一个弛豫时间频谱)无法提供令人满意的结果。合金的微观观察(Sievert等,1997)表明存在多个粘度域,我们在对两个弛豫时间光谱进行建模时考虑到其中一个。结果要好得多。最后,我们将我们的仿真与通过Chaboche的经典弹性粘塑性建模获得的仿真进行比较,并在概念层面将这两种方法联系起来。

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