Department of Industrial and Manufacturing Systems Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong.
Biofabrication. 2009 Dec;1(4):045001. doi: 10.1088/1758-5082/1/4/045001. Epub 2009 Oct 30.
This paper describes a multi-material virtual prototyping (MMVP) system for modelling and digital fabrication of discrete and functionally graded multi-material objects for biomedical applications. The MMVP system consists of a DMMVP module, an FGMVP module and a virtual reality (VR) simulation module. The DMMVP module is used to model discrete multi-material (DMM) objects, while the FGMVP module is for functionally graded multi-material (FGM) objects. The VR simulation module integrates these two modules to perform digital fabrication of multi-material objects, which can be subsequently visualized and analysed in a virtual environment to optimize MMLM processes for fabrication of product prototypes. Using the MMVP system, two biomedical objects, including a DMM human spine and an FGM intervertebral disc spacer are modelled and digitally fabricated for visualization and analysis in a VR environment. These studies show that the MMVP system is a practical tool for modelling, visualization, and subsequent fabrication of biomedical objects of discrete and functionally graded multi-materials for biomedical applications. The system may be adapted to control MMLM machines with appropriate hardware for physical fabrication of biomedical objects.
本文描述了一种用于医学应用的离散和功能梯度多材料物体建模和数字化制造的多材料虚拟原型(MMVP)系统。MMVP 系统由 DMMVP 模块、FGMVP 模块和虚拟现实(VR)模拟模块组成。DMMVP 模块用于对离散多材料(DMM)物体进行建模,而 FGMVP 模块则用于功能梯度多材料(FGM)物体。VR 模拟模块集成了这两个模块,以执行多材料物体的数字化制造,随后可以在虚拟环境中对其进行可视化和分析,以优化用于制造产品原型的 MMLM 工艺。使用 MMVP 系统,对两个医学对象进行了建模和数字化制造,包括一个 DMM 人体脊柱和一个 FGM 椎间间隔垫,以便在 VR 环境中进行可视化和分析。这些研究表明,MMVP 系统是一种实用的工具,可用于建模、可视化和随后制造用于医学应用的离散和功能梯度多材料的医学对象。该系统可以适应具有适当硬件的 MMLM 机器,以进行医学对象的物理制造。