4.4 Article

Modelling of anisotropic elastic properties in alloy 718 built by electron beam melting

期刊

MATERIALS SCIENCE AND TECHNOLOGY
卷 34, 期 5, 页码 529-537

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/02670836.2018.1426258

关键词

EBM; alloy 718; young's modulus; anisotropy; modelling; EBSD; elastic constants

资金

  1. European Regional Development Fund, project grant 3Dprint
  2. KK Foundation (Stiftelsen for Kunskaps- och Kompetensutveckling), project grant SUMAN-Next

向作者/读者索取更多资源

Owing to the inherent nature of the process, typically material produced via electron beam melting (EBM) has a columnar microstructure. As a result of that, the material will have anisotropic mechanical properties. In this work, anisotropic elastic properties of EBM built Alloy 718 samples at room temperature were investigated by using experiments and modelling work. Electron backscatter diffraction data from the sample microstructure was used to predict the Young's modulus. The results showed that the model developed in the finite element software OOF2 was able to capture the anisotropy in the Young's modulus. The samples showed transversely isotropic elastic properties having lowest Young's modulus along build direction. In addition to that, complete transversely isotropic stiffness tensor of the sample was also calculated.

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