用于离网社区分布式制造的移动开源太阳能3d打印机

Pub Date : 2014-10-01 DOI:10.12924/CIS2014.02010018
Debbie L. King, Adegboyega Babasola, J. Rozario, Joshua M. Pearce
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引用次数: 57

摘要

在缺乏电力的发展中国家,制造业严重限制了所生产产品的技术复杂性。超过10亿用不上电的人仍然可以使用一些进口的高技术;然而,这些服务往往缺乏定制性,往往不适合他们的社区。适当的开源techÂ-nology (OSAT)可以overÂ-come应对这一挑战,但是OSAT更快发展和distriÂ-bution的主要障碍之一是缺乏超出特定技术复杂性的生产手段。本研究设计并展示了两个开源移动数字制造设备的技术可行性,该设备由太阳能光伏发电供电,能够在任何comÂ-munity获得阳光的情况下打印可定制的OSAT。第一个是专为comÂ-munity使用而设计的,比如在学校或makerÂ-spaces使用,它是半移动的,可以使用RepRap技术进行几乎连续的3d打印,同时也可以为多台计算机供电。第二种设计,可以完全装进一个标准手提箱,允许专家从一个社区到另一个社区旅行,提供根据需要在任何地方定制制造OSAT的能力。这些设计不仅为缺乏电网的偏远农村社区带来了复杂制造和替换零件制造的可能性,而且还提供了跨越整个传统制造供应链的机会,同时从根本上降低了产品的成本和对发展中社区的环境影响。
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Mobile Open-Source Solar-Powered 3-D Printers for Distributed Manufacturing in Off-Grid Communities
Manufacturing in areas of the developing world that lack electricity severely restricts the technical sophistication of what is produced. More than a billion people with no access to electricity still have access to some imported higher-technologies; however, these often lack customization and often appropriateness for their community. Open source appropriate tech­nology (OSAT) can over­come this challenge, but one of the key impediments to the more rapid development and distri­bution of OSAT is the lack of means of production beyond a specific technical complexity. This study designs and demonstrates the technical viability of two open-source mobile digital manufacturing facilities powered with solar photovoltaics, and capable of printing customizable OSAT in any com­munity with access to sunlight. The first, designed for com­munity use, such as in schools or maker­spaces, is semi-mobile and capable of nearly continuous 3-D printing using RepRap technology, while also powering multiple computers. The second design, which can be completely packed into a standard suitcase, allows for specialist travel from community to community to provide the ability to custom manufacture OSAT as needed, anywhere. These designs not only bring the possibility of complex manufacturing and replacement part fabrication to isolated rural communities lacking access to the electric grid, but they also offer the opportunity to leap-frog the entire conventional manufacturing supply chain, while radically reducing both the cost and the environmental impact of products for developing communities.
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