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Fatigue of automotive engine cylinder heads – A new model based on crack propagation

机译:汽车发动机气缸盖的疲劳性-基于裂纹扩展的新模型

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The main reliability issue encountered during cylinder head development is the appearance of fatigue cracks during severe endurance tests. Some of these cracks can initiate in the coolant water jacket and lead to the complete part failure. They are mainly associated with the combination of combustion pressure alternate stresses and high cycle fatigue load in infinite life domain. However, Haigh or Dang Van analysis issued from 3D Finite Element Analysis reveals several issues: crack initiations are not correctly located and scatter of crack sizes are not predicted. To overcome these difficulties, a new fatigue model dedicated to cylinder heads in Aluminum - Silicon alloy has been developed in Renault powertrain division. The model is based on fatigue crack growth modelling in order to take into account various and combined load ratio in one hand, and typical characteristics of the microstructure of casting alloy in the other hand. This paper presents the theoretical basis of this model and the associated identification methodology for two different aluminum alloys.
机译:汽缸盖开发过程中遇到的主要可靠性问题是在严格的耐力测试过程中出现了疲劳裂纹。这些裂纹中的一些可能会在冷却水套中引发,并导致零件完全失效。它们主要与无限寿命范围内的燃烧压力交变应力和高周疲劳载荷的组合有关。但是,由3D有限元分析公司发布的Haigh或Dang Van分析揭示了几个问题:裂纹萌生位置不正确,并且裂纹尺寸的散布也无法预测。为了克服这些困难,雷诺动力总成部门开发了一种专门针对铝硅合金气缸盖的新型疲劳模型。该模型基于疲劳裂纹扩展模型,以便一方面考虑各种和组合的载荷比,另一方面考虑铸合金的微观组织的典型特征。本文介绍了该模型的理论基础以及两种不同铝合金的相关识别方法。

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