Huadong Engineering Corporation Limited, Hangzhou, 311122, Zhejiang, China.
Sci Rep. 2023 Jul 6;13(1):10951. doi: 10.1038/s41598-023-38050-8.
In this work, we investigate the yield criterion of nanoporous materials by using homogenization approach and Steigmann-Ogden surface model. The representative volume element is proposed as an infinite matrix containing a tiny nanovoid. The matrix is incompressible, rigid-perfectly plastic, von Mises materials and nanovoids are dilute and equal in size. First, the constitutive of microscopic stress and microscopic strain rate is established based on the flow criterion. Secondly, according to the Hill's lemma, the relationship between the macroscopic equivalent modulus and the microscopic equivalent modulus is established by homogenization approach. Thirdly, the macroscopic equivalent modulus containing the Steigmann-Ogden surface model including surface parameters, porosity and nanovoid radius is derived from the trial microscopic velocity field. Finally, an implicit macroscopic yield criterion for nanoporous materials is developed. For surface modulus, nanovoids radius and porosity studies are developed through extensive numerical experiments. The research results in this paper have reference significance for the design and manufacture of nanoporous materials.
在这项工作中,我们使用均匀化方法和 Steigmann-Ogden 表面模型研究了纳米多孔材料的屈服准则。提出了代表性体积元作为包含微小纳米孔的无限矩阵。基体不可压缩,刚性-完全塑性,von Mises 材料和纳米孔是稀有的且尺寸相等。首先,基于流动准则建立了微观应力和微观应变速率的本构关系。其次,根据 Hill 引理,通过均匀化方法建立了宏观等效模量与微观等效模量之间的关系。第三,通过试验微观速度场推导出包含 Steigmann-Ogden 表面模型的宏观等效模量,其中包括表面参数、孔隙率和纳米孔半径。最后,提出了纳米多孔材料的隐式宏观屈服准则。通过广泛的数值实验研究了表面模量、纳米孔半径和孔隙率。本文的研究结果对纳米多孔材料的设计和制造具有参考意义。