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A new fatigue model including thermal ageing for low copper aluminum-silicon alloys

机译:一种新的疲劳模型,包括低铜铝 - 硅合金的热老化

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Numerical simulation is more and more used in automotive industry to reduce design time and cost. Moreover, for high performance engines, the development of cylinder heads requires well known and adapted materials to ensure their reliability. The estimation of adapted fatigue criteria based on few experiments is thus an important challenge: to obtain more predictive model on more complex mechanical phenomena. This paper describes the methodology adopted by Renault to estimate fatigue life of a new aluminum-silicon alloy. A low copper aluminum-silicon alloy has been developed for a new generation of cylinder heads. Those kinds of alloys provide a good compromise between the two main failure modes encountered for cylinder heads: high cycle fatigue of water jacket and low cycle fatigue of fire deck. However, those materials are subjected to thermal ageing that can affect mechanical behavior, such as yield stress and hardening, but also fatigue mechanisms at higher temperatures. This article presents first the selected constitutive equations that introduce thermal ageing effect in a cyclic elasto-viscoplastic model. The low cycle fatigue criterion is then calibrated on the relevant database, which includes isothermal and non-isothermal tests. The fatigue criterion is a specific version of a classical model previously developed at Onera. The critical variables for the fatigue part are the stress amplitude and the mean stress, both of them being normalized by an ultimate stress which depends on temperature and ageing state. Finally, the constitutive and damage models have been applied on 3D cylinder head numerical analysis. The paper proposes a brief comparison of those results with more classical simulations made on cylinder heads and highlights the perspectives offered by this new aluminum-silicon alloy.
机译:数值模拟越来越多地用于汽车行业,以减少设计时间和成本。此外,对于高性能发动机,汽缸盖的发展需要众所周知的和适应性的材料来确保其可靠性。因此,基于少数实验的适应疲劳标准的估计是一个重要的挑战:以更复杂的机械现象获得更高的预测模型。本文介绍了雷诺采用的方法,以估计新型铝 - 硅合金的疲劳寿命。已经开发出低铜铝 - 硅合金,用于新一代气缸盖。这些合金在气缸磁头遇到的两个主要故障模式之间提供了良好的折衷:水夹克的高循环疲劳和消防牌的低循环疲劳。然而,这些材料经受热老化,可以影响机械行为,例如屈服应力和硬化,而是在较高温度下疲劳机制。本文首先呈现出在环形弹性粘性模型中引入热老化效果的选定的本组成方程。然后在相关数据库上校准低循环疲劳标准,包括等温和非等温测试。疲劳标准是先前在Onera开发的经典模型的特定版本。疲劳部分的临界变量是应力幅度和平均应力,两者都是通过依赖于温度和老化状态的最终应力来标准化。最后,本构和损坏模型已应用于3D气缸磁头数值分析。本文提出了这些结果的简要比较,这些结果在气缸盖上制作的更加古典模拟,并突出了这款新型铝 - 硅合金所提供的观点。

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