首页> 外文期刊>Journal of Industrial Ecology >Addressing Hazardous Implications of Additive Manufacturing Complementing Life Cycle Assessment with a Framework for Evaluating Direct Human Health and Environmental Impacts
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Addressing Hazardous Implications of Additive Manufacturing Complementing Life Cycle Assessment with a Framework for Evaluating Direct Human Health and Environmental Impacts

机译:解决添加剂制造的危险影响与评估直接人体健康和环境影响的框架

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摘要

Additive manufacturing (AM) is transforming manufacturing technology and the distribution of production capital. As the use of three-dimensional printers begins to extend into homes, schools, and factories, the industry is not well equipped to address the potential for deleterious environmental and health impacts. Proactive assessment tools are needed so that materials developers and designers, printer operators, and print end users can create and choose the most appropriate and safe materials and AM processes based on their use cases. Current life cycle assessments (LCAs) do not provide sufficient information to support materials decisions based on concerns about hazard exposure. To address this shortcoming, we developed a framework that complements LCA with hazard and green design metrics derived from analyzing human health and environmental impacts in the later stages of the AM life cycle. We then identified suitable existing methodologies for evaluation across these stages and synthesized the methodologies into higher-level metrics for comparative analysis of materials. To illustrate the benefits of this framework, we compared two common AM materials: Autodesk Standard Clear Prototyping Resin (PR48), an open-source formulation used in photopolymerization processing AM, and bio-polylactic acid, a ubiquitous, biosourced polymer used in an extrusion-based AM system called fused filament fabrication.
机译:添加剂制造(AM)正在改变制造技术和生产资本分配。随着三维打印机的使用开始延伸到家庭,学校和工厂中,该行业没有很好地解决有害环境和健康影响的潜力。需要主动评估工具,以便材料开发人员和设计人员,打印机运营商和印刷最终用户可以创建和选择基于其用例的最合适和安全的材料和AM过程。目前的生命周期评估(LCA)不提供足够的信息,以支持基于危害暴露的担忧的材料决策。为了解决这一缺点,我们开发了一个框架,将LCA与危险和绿色设计指标补充,从AM生命周期的后期分析人类健康和环境影响。然后,我们确定了在这些阶段进行评估的合适现有方法,并合成了对材料的更高级别度量的方法,以进行材料的比较分析。为了说明本框架的好处,我们比较了两个常见的AM材料:Autodesk标准清晰原型树脂(PR48),光聚合处理中使用的开源制剂,以及在挤出中使用的生物聚乳酸,一种普遍的生物感聚合物基于AM系统称为熔丝灯丝制造。

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