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Microstructures, Forming Limit and Failure Analyses of Inconel 718 Sheets for Fabrication of Aerospace Components

机译:用于制造航空航天组分的Inconel 718纸张的微结构,形成限量分析

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Recently, aerospace industries have shown increasing interest in forming limits of Inconel 718 sheet metals, which can be utilised in designing tools and selection of process parameters for successful fabrication of components. In the present work, stress-strain response with failure strains was evaluated by uniaxial tensile tests in different orientations, and two-stage work-hardening behavior was observed. In spite of highly preferred texture, tensile properties showed minor variations in different orientations due to the random distribution of nanoprecipitates. The forming limit strains were evaluated by deforming specimens in seven different strain paths using limiting dome height (LDH) test facility. Mostly, the specimens failed without prior indication of localized necking. Thus, fracture forming limit diagram (FFLD) was evaluated, and bending correction was imposed due to the use of sub-size hemispherical punch. The failure strains of FFLD were converted into major-minor stress space (sigma-FFLD) and effective plastic strain-stress triaxiality space (eta EPS-FFLD) as failure criteria to avoid the strain path dependence. Moreover, FE model was developed, and the LDH, strain distribution and failure location were predicted successfully using above-mentioned failure criteria with two stages of work hardening. Fractographs were correlated with the fracture behavior and formability of sheet metal.
机译:最近,航空航天行业表明,在形成了718张纸张金属的限制的情况下,可以在设计工具和选择用于成功制造组件的工具参数的工具和选择方面的兴趣增加。在本作本作中,通过不同取向的单轴拉伸试验评估失效菌株的应力 - 应变响应,并且观察到两阶段的工作硬化行为。尽管具有高度优选的质地,因此由于纳米尺寸的随机分布,拉伸性能显示出不同取向的次要变化。使用限制圆顶高度(LDH)测试设施通过七种不同应变路径中的样品来评估形成限位菌株。大多数情况下,试样失败而无需现有局部颈缩。因此,评估骨折形成限位图(FFLD),并且由于使用子尺寸半球形冲头,施加弯曲校正。 FFLD的失效菌株被转换为主要 - 次要应力空间(Sigma-FFLD)和有效的塑性应力三轴性空间(ETA EPS-FFLD)作为故障标准,以避免应变路径依赖性。此外,开发了Fe模型,并使用上述故障标准预测LDH,应变分布和故障位置,其中有两个工作阶段的硬化。特征与金属板的断裂行为和成形性相关。

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