Design and Compressive Behavior of Controllable Irregular Porous Scaffolds: Based on Voronoi-Tessellation and for Additive Manufacturing
Проектирование и поведение при сжатии управляемых нерегулярных пористых каркасов на основе тесселяции Вороного для аддитивного производства
2018-01-16
SCID: 54.1/kh77es26
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Voronoi-Tessellationcontrollable irregular porous scaffoldsfunctionally graded porosityquasi-static compressive testsselective laser melting (SLM)
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Abstract (AI)
Adjustment of the mechanical properties (apparent elastic modulus and compressive strength) in porous scaffolds is important for artificial implants and bone tissue engineering. In this study, a top-down design method based on Voronoi-Tessellation was proposed. This method was successful in obtaining the porous structures with specified and functionally graded porosity. The porous specimens were prepared by selective laser melting technology. Quasi-static compressive tests were conducted as well. The experiment results revealed that the mechanical properties were affected by both porosity and irregularity. The irregularity coefficient proposed in this study can achieve good accommodation and balance of "irregularity" and "controllability". The method proposed in this study provides an efficient approach for the bionic design and topological optimization of scaffolds.
Key Findings
1
A top-down design method based on Voronoi-Tessellation was proposed to create porous scaffolds with specified and functionally graded porosity.
2
An irregularity coefficient was introduced that balances irregularity and controllability of scaffold geometry.
3
Porous scaffold specimens were successfully fabricated using selective laser melting additive manufacturing.
4
Quasi-static compressive tests showed that both porosity and structural irregularity significantly affect apparent elastic modulus and compressive strength.
5
The proposed method offers an efficient approach for bionic design and topological optimization of scaffolds for implants and bone tissue engineering.
Research Object
Controllable irregular porous scaffolds designed via Voronoi-tessellation and manufactured by selective laser melting
Research Subject
Adjustment and compressive mechanical behavior (apparent elastic modulus and compressive strength) as functions of porosity and irregularity, including use of an irregularity coefficient for balancing irregularity and controllability
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2018-01-16
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