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A reliability analysis method in thermomechanical fatigue design

机译:热机械疲劳设计中的可靠性分析方法

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摘要

The design of structures against thermomechanical fatigue (TMF) is a relatively new concern and research has generally concentrated on deterministic methods to ensure the resistance of structures undergoing thermal-mechanical loadings. Many studies have thus been conducted to better represent the nonlinear behaviour of materials or to develop thermomechanical fatigue criteria. However, fatigue is a phenomenon which is random in nature: manufacturing processes, geometric tolerances and usage conditions can affect the lifetime of a structure. Typically, the use of a car by a customer is unique (type of roads, weather conditions, drivers behaviour, etc.) and thus thermomechanical loads for instance on a cylinder head become probabilistic. Similarly, the intrinsic strength of a structure is variable (casting and machining process, specific microstructures, etc.). It is therefore necessary to be able to guarantee the TMF resistance of a particular structure itself undergoing a particular load, whatever the structure is. The work presented here consists of the development of a complete protocol analysis of the risk of failure of a structure subjected to thermomechanical fatigue when either exact loading conditions or strength for a given structure are uncertain. The proposed method relies on the stress-strength interference analysis and also on numerical techniques based on finite element calculation and engine load analysis which enable us to compute a local damage from a global loading. The method is successfully applied to a cylinder head.
机译:抵抗热机械疲劳(TMF)的结构设计是一个相对较新的问题,研究通常集中在确定性方法上,以确保结构承受热机械载荷的阻力。因此,进行了许多研究,以更好地表示材料的非线性行为或制定热机械疲劳标准。但是,疲劳是一种自然现象,它是随机的:制造过程,几何公差和使用条件会影响结构的寿命。通常,客户对汽车的使用是唯一的(道路类型,天气条件,驾驶员行为等),因此,例如汽缸盖上的热机械负载变得很可能。类似地,结构的固有强度是可变的(铸造和机加工过程,特定的微结构等)。因此,无论结构如何,都必须能够保证承受特定载荷的特定结构本身的TMF电阻。当给定结构的确切载荷条件或强度不确定时,本文提出的工作包括对受热机械疲劳的结构失效的风险进行完整的协议分析。所提出的方法依赖于应力-强度干涉分析以及基于有限元计算和发动机载荷分析的数值技术,这些技术使我们能够从整体载荷中计算出局部损伤。该方法成功地应用于汽缸盖。

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