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On designing an automated tool for capacitors removal from waste printed circuits boards

机译:用于设计用于废物印刷电路板的电容器自动化工具

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The mass electronics sector is one of the most important sources of waste,both in terms of volume and materials content with dangerous effects on the environment.Printed Circuit Boards (PCBs) are the most valuable component embedded into Electrical and Electronic Equipment (EEEs).The current amount of electronic systems is impressive while manual dismantling is a very common and non-efficient solution.On average,waste PCB accounts almost from 3% to 5% of the overall weight of waste electrical and electronic equipment.At this time,in Romania,the implemented solutions for waste PCB reduction are in a research phase,with no existing technological procedures that can be replicated.In the context of the TRADE-IT project we aim to design replicable architectures for waste printed boards reduction.Starting from the largest base plate and continuing to the smallest size,Extended ATX,ATX,Micro ATX,Mini ITX are some of the most used boards in a computer.When choosing a base plate from the ATX and/or microATX range,the shape factor must fit on a universal support bracket.The shape factor identifies the size of the circuit board,the location of the slots,and the location of the display board that comes out on the back of the computer.The shape factor also identifies the location of the holes that are used to mount the base plate in the universal clamp holder.Taking into account-that capacitors represent approximately 8.6% of the PCB mass,we aim at designing an automated driven tool for their removal.The design is based on a robotic arm for motion manoeuvring,a programmable screwdriver and a custom-made end tool.In the current phase the proposed design was evaluated on controlled individual tests.The initial results highlight the feasibility of the proposed design while uncovering potential challenges for real-time implementation.
机译:大众电子部门是最重要的废物来源之一,无论是对环境危险影响的体积和材料含量。印刷电路板(PCB)是嵌入电气和电子设备(EEES)中最有价值的组件。当前的电子系统量令人印象深刻,而手动拆卸是一种非常常见和非高效的解决方案。平均值,废物PCB账户几乎从废电气和电子设备总重量的3%到5%。此时,罗马尼亚,废物PCB减少的实施解决方案处于研究阶段,没有现有的技术程序,可以复制。在贸易IT项目的背景下,我们的目标是为减少废物印刷板设计可复制的架构。从最大的垃圾印刷板设计可复制的架构基板并继续尺寸最小,扩展ATX,ATX,Micro ATX,Mini ITX是计算机中最常用的电路板。从ATX选择底板时D /或MicroAtx范围,形状因子必须适合通用支撑支架。形状因子识别电路板的尺寸,插槽的位置,以及在计算机背面上出现的显示板的位置。形状因子还识别用于将底板安装在通用夹持器中的孔的位置。考虑到的孔中,电容器占PCB质量的约8.6%,我们的目标是为其设计自动驱动工具删除。设计基于用于运动机动的机器人,可编程螺丝刀和定制的端部工具。当前阶段,在受控的单独测试中评估了所提出的设计。初始结果突出了所提出的设计的可行性揭示实时实施的潜在挑战。

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