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Virtual topological optimisation of scaffolds for rapid prototyping.

机译:脚手架的虚拟拓扑优化,可快速成型。

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摘要

Advanced additive techniques are now being developed to fabricate scaffolds with controlled architecture for tissue engineering. These techniques combine computer-aided design (CAD) with computer-aided manufacturing (CAM) tools to produce three-dimensional structures layer by layer in a multitude of materials. Actual prediction of the effective mechanical properties of scaffolds produced by additive technologies, is very important for tissue engineering applications. A novel computer based technique for scaffold design is topological optimisation. Topological optimisation is a form of "shape" optimisation, usually referred to as "layout" optimisation. The goal of topological optimisation is to find the best use of material for a body that is subjected to either a single load or a multiple load distribution. This paper proposes a topological optimisation scheme in order to obtain the ideal topological architectures of scaffolds, maximising its mechanical behaviour.
机译:现在正在开发先进的添加剂技术,以制造具有受控结构的组织工程支架。这些技术将计算机辅助设计(CAD)与计算机辅助制造(CAM)工具结合在一起,以多种材料逐层生产三维结构。对于组织工程应用而言,通过添加剂技术生产的支架的有效机械性能的实际预测非常重要。一种新颖的基于计算机的支架设计技术是拓扑优化。拓扑优化是“形状”优化的一种形式,通常称为“布局”优化。拓扑优化的目标是为承受单载荷或多载荷分布的物体找到材料的最佳用途。本文提出了一种拓扑优化方案,以获取理想的脚手架拓扑结构,从而最大程度地发挥其机械性能。

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