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首页> 外文期刊>Journal of Humanitarian Engineering >Viability of Distributed Manufacturing of Bicycle Components with 3-D Printing: CEN Standardized Polylactic Acid Pedal Testing
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Viability of Distributed Manufacturing of Bicycle Components with 3-D Printing: CEN Standardized Polylactic Acid Pedal Testing

机译:具有3D打印的自行车零件分布式制造的可行性:CEN标准化聚乳酸踏板测试

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摘要

Recent advancements in open-source self-replicating rapid prototypers (RepRap) have radically reduced costs of 3-D printing. The cost of additive manufacturing enables distributed manufacturing of open source appropriate technologies (OSAT) to assist in sustainable development. In order to investigate the potential this study makes a careful investigation of the use of RepRap 3-D printers to fabricate widely used Black Mamba bicycle components in the developing world. Specifically, this study tests pedals. A CAD model of the pedal was created using parametric open source software (FreeCAD) to enable future customization. Then poly-lactic acid, a biodegradable and recyclable bioplastic was selected among the various commercial 3-D printable materials based on strength and cost. The pedal was 3-D printed on a commercial RepRap and tested following the CEN (European Committee for Standardization) standards for racing bicycles for 1) static strength, 2) impact, and 3) dynamic durability. The results show the pedals meet the CEN standards and can be used on bicycles. The 3-D printed pedals are significantly lighter than the stock pedals used on the Black Mamba, which provides a performance enhancement while reducing the cost if raw PLA or recycled materials are used, which assists in reducing bicycle costs even for those living in extreme poverty. Other bicycle parts could also be manufactured using 3-D printers for a return on investment on the 3-D printer indicating that this model of distributed manufacturing of OSAT may be technically and economically appropriate through much of the Global South.
机译:开源自复制快速原型开发器(RepRap)的最新发展已从根本上降低了3D打印的成本。增材制造的成本使分布式开源适当技术(OSAT)的制造成为可能,从而有助于可持续发展。为了调查其潜力,本研究对在发展中国家使用RepRap 3-D打印机制造广泛使用的Black Mamba自行车组件进行了仔细的调查。具体来说,本研究测试踏板。使用参数开源软件(FreeCAD)创建了踏板的CAD模型,以便将来进行定制。然后,根据强度和成本从各种商业3D可打印材料中选择一种可生物降解和可回收的生物塑料聚乳酸。踏板在商用RepRap上进行了3D打印,并按照赛车自行车的CEN(欧洲标准化委员会)标准进行了测试:1)静态强度,2)冲击力和3)动态耐久性。结果表明踏板符合CEN标准,可以在自行车上使用。 3-D打印踏板比Black Mamba上使用的普通踏板轻得多,在使用原始PLA或再生材料的情况下,其性能得到增强,同时降低了成本,即使在极端贫困者中也有助于降低自行车成本。其他自行车零件也可以使用3-D打印机制造,以在3-D打印机上获得投资回报,这表明OSAT的分布式制造模式在全球大部分地区可能在技术上和经济上都是合适的。

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