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Fabrication of Architectured Biomaterials by Multilayer Co‐Extrusion and Additive Manufacturing

Fabrication Architectured Biomaterials Multilayer Co‐Extrusion is a M.Tech project topic for Mechanical Engineering. Explore the IEEE-style abstract,…

Fabrication Architectured Biomaterials Multilayer Co‐Extrusion is a M.Tech project topic for Mechanical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.

Fabrication Architectured Biomaterials Multilayer Co‐Extrusion Project Details

Abstract

This project looks at how to make and test architectured biomaterials using two processes together: multilayer co‑extrusion and fused deposition modeling (FDM). We first create composite filaments that have alternating micro‑layers of poly(lactic acid) (PLA) and thermoplastic polyurethane (TPU). We test filaments with 5, 17, and 129 layers. After printing, we check the filaments for strength, layer alignment, and how well the layers stick together, making sure the layered structure stays intact. We then measure the printed scaffolds’ tensile strength, elasticity, and ability to absorb energy. The 17‑layer PLA/TPU composite shows the best mechanical performance. The study also sets up a way to judge whether these anisotropic, multilayered scaffolds are

suitable for biomedical use. We examine how the tiny surface pattern affects cardiomyocyte alignment, shape, and function. By combining top‑down additive manufacturing with bottom‑up co‑extrusion, we provide practical guidance for designing tissue‑engineering constructs that have specific mechanical and biological properties.

Reference Paper Fabrication of Architectured Biomaterials by Multilayer Co‐Extrusion and Additive Manufacturing
Domain Mechanical Engineering
Sub-Domain Design & Manufacturing / Additive Manufacturing / FDM
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