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Dual material rapid prototyping techniques for the development of biomedical devices. Part 1: space creation

机译:用于生物医学设备开发的双材料快速原型技术。第1部分:空间创建

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Polymeric drug delivery devices play an important role in drug administration. However, the current polymeric drug delivery device fabrication methods lack precision. This impairs the quality of the devices, resulting in a decrease in the efficiency and effectiveness of drug delivery. The concept of building parts layer by layer out of powdered raw materials makes selective laser sintering (SLS) a suitable process for fabricating polymeric matrix drug delivery devices. The current SLS process is not capable of processing two or more materials separately. This work explores the possibilities of SLS performing a dual material operation by developing two process models. These two processes can then be integrated to form a dual or expanded multimaterial fabrication technique and act as a foundation for future work in multimaterial applications such as polymeric drug delivery device fabrication. Accordingly, two papers are presented. In this paper, Part 1, the focus is on the first process, which is a "space" creation technique in which a "space" is created by varying the density of a first representative material using heat during sintering. Three methods - one based on a vacuum and a place method, and the other two based on two variations of a laser compacting method - were tested. Results have shown that by varying the laser power during sintering, it is possible to create channels in which a second material can be deposited.
机译:聚合物药物递送装置在药物施用中起重要作用。然而,当前的聚合物药物输送装置的制造方法缺乏精度。这损害了装置的质量,导致药物输送的效率和有效性降低。由粉末状原料逐层构建零件的概念使选择性激光烧结(SLS)成为制造聚合物基质药物输送装置的合适方法。当前的SLS工艺无法单独处理两种或多种材料。这项工作通过开发两个过程模型,探索了SLS执行双重物料操作的可能性。然后可以将这两个过程集成在一起,以形成双重或扩展的多材料制造技术,并为将来在多材料应用(例如聚合物药物输送设备制造)中的工作奠定基础。因此,提出了两篇论文。在本文的第1部分中,重点是第一过程,这是一种“空间”创建技术,其中通过在烧结过程中通过加热改变第一代表性材料的密度来创建“空间”。测试了三种方法-一种基于真空和放置方法,另一种基于激光压实方法的两种变型。结果表明,通过在烧结过程中改变激光功率,可以创建可在其中沉积第二种材料的通道。

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