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Development of a Thermal Fatigue Test Bench for Cylinder Head Materials

机译:气缸盖材料热疲劳试验台的研制

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An innovative specimen design and test system for thermal fatigue (TF) analysis is developed to compare the fatigue behavior of different cylinder head materials under realistic cyclic thermal loadings. Finite element analyses were performed to optimize the specimen geometry and thermal cycles. The reduced section of the TF specimen is heated locally by a high frequency induction heater and cooled by compressed air. The mechanical strain is then induced internally by the non-uniform thermal gradient generated within the specimen to closely simulate what valve bridges in cylinder heads experience in real operation. The resulting fatigue life is a function not only of the inherent fatigue resistance of the alloys, but also of other relevant properties such as thermal conductivity, modulus of elasticity, and coefficient of thermal expansion. This test is an essential tool for comparing different alloys for thermal fatigue applications. In this paper, four aluminum alloys were tested to investigate the effect of the compositional change and heat treatment on the thermomechanical performance. The test method and results will be presented in detail.
机译:开发了一种创新的标本设计和用于热疲劳(TF)分析的测试系统,以比较现实循环热载体下不同气缸盖材料的疲劳行为。进行有限元分析以优化样品几何和热循环。 TF样本的减小的部分由高频感应加热器本地加热并通过压缩空气冷却。然后通过样本内产生的非均匀热梯度在内部诱导机械应变,以密切地模拟真实操作中的气缸头部经验中的阀桥。由此产生的疲劳寿命是不仅具有合金的固有疲劳性的功能,而且还具有其他相关性能,例如导热性,弹性模量和热膨胀系数。该测试是用于比较不同合金的热疲劳应用的必要工具。在本文中,测试了四种铝合金以研究成分变化和热处理对热机械性能的影响。将详细介绍测试方法和结果。

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