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FEM-CT integrated design for multiscale damage analysis of hydroformed magnesium-based alloy tubular product

机译:FEM-CT集成设计,用于液压成型镁基合金管状产品的多尺度损伤分析

摘要

Damage analysis of the material, such as magnesium-based alloy, is important to investigate the micro-defects and to account for material instability. These micro-defects can be investigated from a sliced test specimen by the mechanical slicing method. This destructive method of measurement is not only laborious but also costly. The surface or interior microstructure of the test specimens may be destroyed. In this study, a finite element method (FEM) and computed tomography (CT) integrated design of multiscale damage analysis was used to measure the micro-defect distributions from the magnesium-based alloy tubular component (AZ31B) formed by the hydroforming process. A critical linkage between the microscopic and macroscopic scales was established. Damage variables, such as the spatial distribution, or void size, were recorded by the digital image processing tool. The representative volume element (RVE) models were reconstructed by the CAD tool from the CT image. FEM simulation tool (e.g. ABAQUS) was employed to obtain the results of mechanical properties from the RVEs at different void fractions. The experimental and FEM simulation results were compared to study the material behaviours. Different void fractions of micro-voids were simulated to study the deformation and Von Mises stress of the RVE. The proposed method can contribute to various industrial applications for rapid damage assessment.
机译:材料(例如镁基合金)的损伤分析对于研究微观缺陷和解决材料的不稳定性非常重要。这些微缺陷可通过机械切片方法从切片的试样中进行调查。这种破坏性的测量方法不仅费力,而且成本很高。试样的表面或内部微观结构可能会被破坏。在这项研究中,采用有限元方法(FEM)和计算机层析成像(CT)的多尺度损伤分析集成设计来测量液压成形过程中形成的镁基合金管状部件(AZ31B)的微缺陷分布。建立了微观和宏观尺度之间的关键联系。损坏变量,例如空间分布或空隙大小,由数字图像处理工具记录。通过CAD工具从CT图像重建了代表性体积元素(RVE)模型。使用有限元模拟工具(例如ABAQUS)从不同空隙率的RVE获得力学性能的结果。比较了实验结果和有限元模拟结果,以研究材料的性能。模拟微孔隙的不同孔隙率,以研究RVE的变形和冯·米塞斯应力。所提出的方法可以有助于各种工业应用中的快速损伤评估。

著录项

  • 作者

    Chan LC; Au KM; Yu KM;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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