增材制造工艺中的可持续考虑因素:综述

IF 1.1 Q4 ENGINEERING, MECHANICAL Journal of Mechanical Engineering and Sciences Pub Date : 2024-03-30 DOI:10.15282/jmes.18.1.2024.5.0780
N. Ononiwu, Paul Ako, Chukwuemeka Anyaoha, Chibuzo Ikwuagwu, Ifeanyi Jacobs
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引用次数: 0

摘要

由于废物的产生和处置会对环境和健康造成负面影响,因此越来越需要高效的废物管理方法。电子废物(e-waste)是特别受到关注的一类废物。如果处理不当,这类废物有可能对环境造成严重危害。电子废物的管理对电气/电子行业至关重要,这促使人们创建模式和制度立法,以促进可持续生产流程。在这些流程中,增材制造(又称三维打印)通过重复使用废旧零部件和产品作为原料,在减少废物产生和能源需求方面尤为有效。制造业和生产部门的可持续性可以通过灌输某些做法来促进。在这些做法中,重新利用原本会被丢弃到垃圾填埋场的电子废弃物具有节约环境成本的潜力。本文介绍了将电子废物纳入制造业以促进可持续生产的潜力。文章还探讨了电子废物产生量呈几何级数增长的问题,并提出了重新利用电气和电子行业废物的有效方法。
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Sustainable considerations in additive manufacturing processes: A review
Efficient waste management practices are becoming increasingly necessary due to the negative environmental and health impacts of waste generation and disposal. One type of waste that has received particular attention is electronic waste (e-waste). This category of waste has the potential to cause significant environmental harm if not disposed of properly. The management of e-waste is crucial in the electrical/electronic industry which has led to the creation of models and institutional legislature to promote sustainable production processes. Among these processes, Additive manufacturing otherwise referred to as 3D printing is particularly effective in reducing waste generation and energy requirements by reusing spent parts and products as feedstock. Sustainability in the manufacturing and production sectors can be promoted through the inculcation of certain practices. Of these practices, reusing e-waste that would otherwise be disposed of in landfills has the potential to promote environmental cost savings. This article introduces the potential of e-waste being integrated into the manufacturing sector to promote sustainable production. The article also addresses the problem of geometric e-waste generation and suggests an efficient way of reusing waste from the electrical and electronic industries.
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来源期刊
自引率
0.00%
发文量
42
审稿时长
20 weeks
期刊介绍: The Journal of Mechanical Engineering & Sciences "JMES" (ISSN (Print): 2289-4659; e-ISSN: 2231-8380) is an open access peer-review journal (Indexed by Emerging Source Citation Index (ESCI), WOS; SCOPUS Index (Elsevier); EBSCOhost; Index Copernicus; Ulrichsweb, DOAJ, Google Scholar) which publishes original and review articles that advance the understanding of both the fundamentals of engineering science and its application to the solution of challenges and problems in mechanical engineering systems, machines and components. It is particularly concerned with the demonstration of engineering science solutions to specific industrial problems. Original contributions providing insight into the use of analytical, computational modeling, structural mechanics, metal forming, behavior and application of advanced materials, impact mechanics, strain localization and other effects of nonlinearity, fluid mechanics, robotics, tribology, thermodynamics, and materials processing generally from the core of the journal contents are encouraged. Only original, innovative and novel papers will be considered for publication in the JMES. The authors are required to confirm that their paper has not been submitted to any other journal in English or any other language. The JMES welcome contributions from all who wishes to report on new developments and latest findings in mechanical engineering.
期刊最新文献
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