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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Using total specific cost indices to compare the cost performance of additive manufacturing for the medical devices domain
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Using total specific cost indices to compare the cost performance of additive manufacturing for the medical devices domain

机译:使用总特定成本指标来比较医疗器械域的添加剂制造的成本性能

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The label additive manufacturing, also known as three-dimensional printing, serves as an umbrella term for a number of technologies designed to deposit product geometries directly from build materials and digital design information. However, as a relatively recent addition to the spectrum of manufacturing processes, the relationship between process type, system characteristics and cost performance is still broadly unclear for several technology types. To address this gap, the current research develops comprehensive and robust additive manufacturing cost models for two less-studied polymeric additive manufacturing technology variants, material jetting and mask projection stereolithography. Despite sharing the fundamental principle of photopolymerization, the operating processes of both systems are markedly different. This is reflected in the constructed cost models, which incorporate process maps to capture ancillary process elements, ensure efficient capacity utilisation through optimised build volume packing and approximate the expected cost impact of build failure. On this basis, this article estimates a set of specific cost indices reflecting the overall total cost performance of the investigated systems in an example application from the medical devices domain. Specific cost results range from £2.01 to £1.19/cm~(3)deposited on the Objet Connex 260 system and from £1.59 to £1.00/cm~(3)of material deposited on the Perfactory system. These results are discussed in the context of similar cost indices extracted from the empirical engineering literature. This article shows that next to increases in build speed, improvements in overall process automation and process stability are needed to enhance the commercial proposition of the investigated technology variants.
机译:标签添加剂制造,也称为三维印刷,用作许多技术的伞术语,该技术被设计用于直接从构建材料和数字设计信息存放产品几何形状。然而,作为制造过程的频谱的相对较近的补充,对于几种技术类型,过程类型,系统特性和成本性能之间的关系仍然仍然不明确。为了解决这一差距,目前的研究为两个较低学习的聚合物添加剂制造技术变体,材料喷射和遮罩投影立体刻度开发了全面且坚固的添加剂制造成本模型。尽管分享了光聚合的基本原理,但两种系统的操作过程明显不同。这反映在构造的成本模型中,该模型包含过程图以捕获辅助过程元素,通过优化的构建体积包装确保有效的能力利用,并近似构建失败的预期成本影响。在此基础上,本文估计了一套特定成本指标,反映了研究系统域的示例应用中调查系统的总体成本绩效。特定成本结果范围为2.01英镑至1.19英镑的1.19 / cm〜(3),沉积在Objet Connex 260系统上,1.59英镑至1.5英镑至1.00英镑〜100 / cm〜(3)型材料沉积在经过动力系统上。这些结果在从经验工程文献中提取的类似成本指标的背景下讨论。本文表明,在构建速度增加下,需要改进整体过程自动化和过程稳定性,以增强调查技术变体的商业主张。

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