开源3d打印在小农场的应用

Q3 Agricultural and Biological Sciences
Joshua M. Pearce
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引用次数: 55

摘要

越来越多的证据表明,低成本的开源3d打印机可以通过分布式制造来替代专业设备和传统的批量生产产品,从而降低成本。开放许可下的3d打印设计呈指数级增长,已经有数百种设计适用于小规模有机农业。还有一种假设认为,这种技术可以帮助依赖小规模有机农业的农村社区实现可持续发展。为了衡量目前开源3d打印机在发达国家和发展中国家有机农场环境中的效用,本文回顾了目前可用的开源设计,并评估了低成本3d打印机在降低农业经济成本方面的有效能力。本研究将开源3d打印机的评估局限于目前最先进的生物塑料聚乳酸(PLA)熔丝制造。PLA是一种强大的可生物降解和可回收的热塑性塑料,适用于一系列代表性产品,这些产品分为五类印刷品:手工工具,食品加工,动物管理,水管理和水培。评估了将3d打印应用于每种技术的优点和缺点。结果表明,采用开源3d打印技术的任何一种技术都具有普遍的技术可行性和经济效益,尽管个别经济影响高度依赖于特定农场的需求和使用频率。一台3d打印机的资本成本可以从农场一天打印一台先进的分析仪器或在一年内替换数百种廉价产品中节省下来。为了充分发挥开源3d打印的潜力,帮助有机农场实现经济弹性和自给自足,未来的工作将在五个核心领域进行概述:3d打印对象的设计、3d打印材料、3d打印机、软件和3d打印库。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of Open Source 3-D Printing on Small Farms
There is growing evidence that low-cost open-source 3-D printers can reduce costs by enabling distributed manufacturing of substitutes for both specialty equipment and conventional mass-manufactured products. The rate of 3-D printable designs under open licenses is growing exponentially and there arealready hundreds of designs applicable to small-scale organic farming. It has also been hypothesized that this technology could assist sustainable development in rural communities that rely on small-scale organic agriculture. To gauge the present utility of open-source 3-D printers in this organic farm context both in the developed and developing world, this paper reviews the current open-source designs available and evaluates the ability of low-cost 3-D printers to be effective at reducing the economic costs of farming.This study limits the evaluation of open-source 3-D printers to only the most-developed fused filament fabrication of the bioplastic polylactic acid (PLA). PLA is a strong biodegradable and recyclable thermoplastic appropriate for a range of representative products, which are grouped into five categories of prints: handtools, food processing, animal management, water management and hydroponics. The advantages and shortcomings of applying 3-D printing to each technology are evaluated. The results show a general izabletechnical viability and economic benefit to adopting open-source 3-D printing for any of the technologies, although the individual economic impact is highly dependent on needs and frequency of use on a specific farm. Capital costs of a 3-D printer may be saved from on-farm printing of a single advanced analytical instrument in a day or replacing hundreds of inexpensive products over a year. In order for the full potential of open-source 3-D printing to be realized to assist organic farm economic resiliency and self-sufficiency, future work is outlined in five core areas: designs of 3-D printable objects, 3-D printing materials, 3-Dprinters, software and 3-D printable repositories.
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来源期刊
Organic Farming
Organic Farming Agricultural and Biological Sciences-Food Science
CiteScore
1.50
自引率
0.00%
发文量
1
审稿时长
4 weeks
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