首页> 外文会议>International Symposium on Superalloy 718 and Derivatives >AN INTEGRATED APPROACH TO RELATE HOT FORGING PROCESS CONTROLLED MICROSTRUCTURE OF IN718 AEROSPACE COMPONENTS TO FATIGUE LIFE
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AN INTEGRATED APPROACH TO RELATE HOT FORGING PROCESS CONTROLLED MICROSTRUCTURE OF IN718 AEROSPACE COMPONENTS TO FATIGUE LIFE

机译:一种综合的方法,以涉及IN718航空航天组分IN718航空航天组分疲劳寿命的微观锻造

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The evolution of microstructure of hot-forged superalloy 718 can be tailored to specific customer demands by local adjustment of the overall metallic forming process. Further on, increased economic sustainability will continuously comply with the light-weight demands. Therefore it is necessary to incorporate the local fatigue behavior right during the design stage. The main output of hot-forging process simulation is defined by microstructural parameters like grain size, amount of δ-phase as well as γ'('')- precipitation contents, etc. The presented work shows the use of an alternative microstructural approach leading to two ancillary microstructural parameters called 'microstructural energy parameter e' and 'factor of heterogeneity b'. This newly developed microstructural evaluation model, which is based on interpretation of the cumulated shape of individual grains, supports an alternative characterization method of microstructure, encompassing morphological information in a combined manner. Based on the thoroughly used microstructural based energy approach it is possible to close the complex simulation chain between forging process simulation and fatigue. The developed method to assess a closed simulation loop at design stage is based on extensive fatigue tests and corresponding metallographic work. This leads to a parametric interface between the individual project tasks. The basic approach presented here establishes a common link between hot forging simulation codes and calculation of the component life time for superalloy 718.
机译:通过局部调整整体金属成形过程,可以根据具体的客户需求对热锻超合金718的微观结构的演变进行。此外,增加的经济可持续性将不断符合重量轻的要求。因此,必须在设计阶段结合当地疲劳行为。热锻过程模拟的主要输出由晶粒尺寸,δ相的量以及γ'('') - 降水内容等的微观结构参数定义。所呈现的工作表明,使用替代的微观结构方法两个称为“微结构能量参数E”的两个辅助微观结构参数和异质性B'。该新开发的微观结构评估模型,其基于单个晶粒的累积形状的解释,支持微观结构的替代表征方法,包括以组合方式包围的形态学信息。基于彻底使用的微观结构基于的能量方法,可以在锻造过程模拟和疲劳之间关闭复杂的模拟链。在设计阶段评估闭合仿真环路的开发方法基于广泛的疲劳测试和相应的金相工作。这导致各个项目任务之间的参数接口。这里提出的基本方法在Huleralloy 718的热锻造仿真码和元件寿命的计算之间建立了一个共同的链接。

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