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Some Recent Advances on Thermal–mechanical Fatigue Design and Upcoming Challenges for the Automotive Industry

机译:热机械疲劳设计的一些最新进展以及汽车行业面临的挑战

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Automotive industry faces numerous evolutions regarding environment regulations and parts reliability. Through the specific case of a cylinder head, actual and forthcoming challenges for low-cycle and thermal–mechanical fatigue design in an industrial context are presented. With a description of current design approaches and highlighting limitations, this work focuses on variable loadings, constitutive models and their interaction with the environment, fatigue criteria, and structure validations, the four major steps to meet a reliable design. The need to carry out extended experimental databases for different complexity levels is emphasized to provide a better understanding of loadings and their impact on the strength of materials and structures, as well as the production of more physically-based models that are easier to identify and lead to higher levels of reliability in the thermal–mechanical design process.
机译:汽车行业在环境法规和零件可靠性方面面临着众多发展。通过汽缸盖的特殊情况,提出了在工业环境下低循环和热机械疲劳设计的实际和即将出现的挑战。通过描述当前的设计方法并强调其局限性,本工作着重于变量载荷,本构模型及其与环境的相互作用,疲劳准则和结构验证,这是实现可靠设计的四个主要步骤。强调需要针对不同的复杂性水平进行扩展的实验数据库,以更好地了解载荷及其对材料和结构强度的影响,以及提供更易于识别和引导的基于物理的模型在热机械设计过程中具有更高的可靠性。

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