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Disassembly properties and material characterisation of household small waste electric and electronic equipment

机译:家用小型废弃电气电子设备的拆卸性能和材料表征

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摘要

This paper is focused on characterising small waste electric and electronic equipment, specifically small household appliances, from two different points of views: disassembly properties and material identification. The sample for this characterisation was obtained from a selective collection campaign organised in Castellon de la Plana (Spain). A total amount of 833.7 kg (749 units) of small waste electric and electronic equipment was collected, of which 23.3% by weight and 22.4% by units belonged to the subcate-gory household equipment. This subcategory, composed of appliances such as vacuum cleaners, toasters, sandwich makers, hand blenders, juicers, coffee makers, hairdryers, scales, irons and heaters, was first disassembled in order to analyse different aspects of the disassembly process for each equipment type: type of joints, ease of identification of materials, ease of access to joints for extracting components, ease of separation of components from the whole, uniformity of tools needed for the disassembly process and possibility of reassembly after disassembly. Results show that the most common joints used in these equipment types are snap-fits and screws, although some permanent joints have also been identified. Next, the material composition of each component of each appliance belonging to each equipment type was identified visually and with additional mechanical trials and testing. It can be observed that plastic and electric/electronic components are present in all the equipment types analysed and are also the material fractions that appear with higher percentages in the material composition: 41.1 wt% and 39.1 wt% for the plastic fraction and electric/electronic components, respectively. The most common plastics are: polypropylene (PP), acrylonitrile butadiene styrene (ABS) and polycarbonate (PC), while the most common electric/electronic components are: cable, plug and printed circuit boards. Results also show that disassembly properties and material characterisation vary widely from one equipment type to another.
机译:本文着重从两个不同的角度来描述小型废弃电气电子设备,特别是小型家用电器的特性:拆卸特性和材料识别。用于表征的样本是从在Castellon de la Plana(西班牙)组织的选择性收集活动中获得的。总共收集了833.7千克(749单位)的小型电气电子设备废品,其中23.3%(重量)和22.4%(单位)属于次类家用设备。此子类别由诸如吸尘器,烤面包机,三明治机,手动搅拌机,榨汁机,咖啡机,吹风机,秤,熨斗和加热器之类的设备组成,为了分析每种设备类型的拆卸过程的不同方面,首先对其进行了拆卸:接头类型,易于识别材料,易于接近接头以抽出零件,容易将零件从整体上分离,拆卸过程所需工具的均匀性以及拆卸后重新组装的可能性。结果表明,尽管已经确定了一些永久性接头,但这些设备类型中最常用的接头是卡扣配合和螺钉。接下来,通过附加的机械试验和测试,通过视觉识别属于每种设备类型的每种设备的每个组件的材料成分。可以观察到,在所有分析的设备类型中都存在塑料和电气/电子组件,并且材料成分也以较高的百分比出现在材料成分中:塑料成分和电气/电子成分分别为41.1 wt%和39.1 wt%组件。最常见的塑料是:聚丙烯(PP),丙烯腈丁二烯苯乙烯(ABS)和聚碳酸酯(PC),而最常见的电气/电子组件是:电缆,插头和印刷电路板。结果还表明,从一种设备类型到另一种设备类型,拆卸特性和材料特性差异很大。

著录项

  • 来源
    《Waste Management》 |2016年第7期|225-236|共12页
  • 作者单位

    Departamento de Ingenieria Mecanica y Construccion, Universitat Jaume 1, Av Sos Baynat s, 12071 Castellon, Spain;

    Departamento de Ingenieria Mecanica y Construccion, Universitat Jaume 1, Av Sos Baynat s, 12071 Castellon, Spain;

    Departamento de Ingenieria Mecanica y Construccion, Universitat Jaume 1, Av Sos Baynat s, 12071 Castellon, Spain;

    Departamento de Ingenieria Mecanica y Construccion, Universitat Jaume 1, Av Sos Baynat s, 12071 Castellon, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Characterisation; sWEEE; Disassembly; Material characterisation;

    机译:表征;斯威拆卸;材料表征;

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