Title of article
Structural strength prediction for porous titanium based on micro-stress concentration by micro-CT image-based multiscale simulation
Author/Authors
Takano، نويسنده , , Naoki and Fukasawa، نويسنده , , Ken and Nishiyabu، نويسنده , , Kazuaki، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2010
Pages
7
From page
229
To page
235
Abstract
For the design of porous titanium component, differently from its use as functional materials, structural strength prediction algorithm is proposed based on the micro-stress concentration analyzed by the multiscale simulation. The modeling of real microstructure is carried out by the image-based technique with X-ray micro-CT. The multiscale computational method consists of asymptotic homogenization and finite element mesh superposition (FEMS) techniques. A criterion is proposed to predict the nonlinearity initiation point in the load and displacement curve by means of micro-stress distribution expressed by histogram. Only the constituentʹs yield strength is referred regardless of the microscopic morphology. The originality of this paper lies in the validation of the homogenization process, the modeling guideline of micro-mesh superposition onto macro-mesh in FEMS, and the strength prediction algorithm. L-shaped components with different pore diameter were discussed in both experiment and simulation.
Keywords
Multiscale simulation , Finite element mesh superposition method , Strength , Porous titanium component , microstructure
Journal title
International Journal of Mechanical Sciences
Serial Year
2010
Journal title
International Journal of Mechanical Sciences
Record number
1419236
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