The Design Effect upon Compression Test of Bio-Polymer Scaffold
摘要
Tissue engineering requires an optimal bone scaffold that has both a high porosity to facilitate cell attachment and an extended surface area to promote cell growth. Additionally, the scaffold should possess favourable bio-mechanical properties. The investigation of mechanical properties of scaffolds requires extensive experimental work to identify and understand their negative qualities. Thus, this paper presents a simulation approach to determine compressive strength, load-extension, deformation mechanism was detected. Soybean polymer or Glycine max (L) is the scientific name for the soybean plant, which is fabricated by 3D-printer machine in order to produce bio-scaffolds. Plant polymers have used in both experimental research and simulation systems. Both materials have the same four different designs and pore shape and size in simulation and fabrication process. A good numerical and experimental results were obtained, where four categories of scaffolds have achieved the required compressive strength for trabecula and biomedical purposes. Designs C0, C1, and C2 have made notable strides in this area.