Design and Mechanical Properties Verification of Gradient Voronoi Scaffold for Bone Tissue Engineering
Проектирование и верификация механических свойств градиентного каркаса Вороного для тканевой инженерии костной ткани
2021-06-05
SCID: 54.1/vhgdypk7
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additive manufacturingapparent elastic modulusbone tissue engineeringfinite element analysisgradient Voronoi scaffold
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Abstract (AI)
In order to obtain scaffold that can meet the therapeutic effect, researchers have carried out research on irregular porous structures. However, there are deficiencies in the design method of accurately controlling the apparent elastic modulus of the structure at present. Natural bone has a gradient porous structure. However, there are few studies on the mechanical property advantages of gradient bionic bone scaffold. In this paper, an improved method based on Voronoi-tessellation is proposed. The method can get controllable gradient scaffolds to fit the modulus of natural bone, and accurately control the apparent elastic modulus of porous structure, which is conducive to improving the stress shielding. To verify the designed structure can be fabricated by additive manufacturing, several designed models are obtained by SLM and EBM. Through finite element analysis (FEA), it is verified that the irregular porous structure based on Voronoi-tessellation is more stable than the traditional regular porous structure of the same structure volume, the same pore number and the same material. Furthermore, it is verified that the gradient irregular structure has a better stability than the non-gradient structure. An experiment is conducted successfully to verify the stability performance got by FEA. In addition, a dynamic impact FEA is also performed to simulate impact resistance. The result shows that the impact resistance of the regular porous structure, the irregular porous structure and the gradient irregular porous structure becomes better in turn. The mechanical property verification provides a theoretical basis for the structural design of gradient irregular porous bone tissue engineering scaffolds.
Key Findings
1
An improved Voronoi-tessellation method generates gradient porous scaffolds with controllable apparent elastic modulus matched to natural bone.
2
Gradient irregular scaffolds demonstrate greater stability than corresponding non-gradient irregular structures in finite element analyses and experiments.
3
Impact resistance increases progressively from regular porous, to irregular porous, to gradient irregular porous structures.
4
Selective laser melting and electron beam melting successfully fabricated the designed scaffold models, supporting additive-manufacturing feasibility.
5
Voronoi-based irregular porous structures are more mechanically stable than equivalent regular structures with the same volume, pore number, and material.
Research Object
gradient irregular porous bone tissue engineering scaffolds based on Voronoi tessellation
Research Subject
controllable apparent elastic modulus, structural stability, and impact resistance compared with regular and non-gradient porous structures
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2021-06-05
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