Influence of computer chassis design on metal fabrication waste streams

P. Sheng, B. Willis, A. Shiovitz
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引用次数: 3

Abstract

There is growing interest in studying the influence of design decisions within a product life cycle, especially in designing for ease of disassembly and recycling. However, a significant life-cycle component of the wastes associated with the product occur at the primary manufacturing stages. This paper examines the environmental impact of chassis design features on process flow for metal fabrication. Critical processes include blanking, punch, metal deformation , finishing and welding. The availability of data at several levels of aggregation is supplemented by the development of analytical models of process physics to derive a process-level inventory of energy utilization, primary scrap and secondary catalysts (tool, fluid and vapor waste streams). The mass flows of waste streams can be weighted by impact on factors such as toxicity, carcinogenesis, reactivity, flammability, and irritation using material safety data and survey of site-specific factors. A case study of a chassis assembly for a network server is presented with several design alternatives to illustrate the impact of feature changes and component consolidation on waste streams. The trade-offs between environmental, manufacturing and product performance factors are discussed.
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计算机机箱设计对金属加工废弃物流的影响
人们对研究设计决策在产品生命周期内的影响越来越感兴趣,特别是在便于拆卸和回收的设计方面。然而,与产品相关的废物的重要生命周期组成部分发生在初级制造阶段。本文考察了底盘设计特征对金属制造工艺流程的环境影响。关键工序包括下料、冲孔、金属变形、精加工和焊接。除了在若干聚集级别上获得数据外,还建立了过程物理分析模型,以得出能源利用、初级废料和次级催化剂(工具、流体和蒸气废物流)的过程一级清单。废物流的质量流可以通过对诸如毒性、致癌性、反应性、可燃性和刺激性等因素的影响来加权,这些因素使用材料安全数据和现场特定因素的调查。本文以网络服务器的机箱组件为例,介绍了几种设计方案,以说明功能更改和组件合并对废物流的影响。讨论了环境、制造和产品性能因素之间的权衡。
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