A Sorting System for Aluminum Alloy Scrap Based on Laser-Induced Breakdown Spectroscopy

Mikio Kuzuya
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引用次数: 3

Abstract

A sorting system for aluminum scrap using laser-induced breakdown spectroscopy (LIBS) has been developed, which employs the sequential sample cells that are moved by the electric actuator in order to carry scrap pieces. A combination of a Q-switched Nd: YAG laser (30mJ, 10ns) with an objective lens having a long focal length of 600 mm were used to generate plasmas, and the emitted light was analyzed spectroscopically by a compact fiber-optic spectrometer having a CCD array detector. A pulse generator was constructed in order to synchronize the laser pulse, the CCD spectrometer and the electric actuator. The elemental composition of aluminum alloy scrap was determined by the calibration curves obtained by analyzing the standard aluminum alloy samples. The sorting algorithm based on the difference of the concentration of main additional elements of aluminum alloy was proposed. The developed LIBS sorting system was applied for the analysis of aluminum alloy samples and complete classification and separation of cast and wrought aluminum alloys into specific alloy groups was achieved.
基于激光诱导击穿光谱的铝合金废料分选系统
研制了一种利用激光诱导击穿光谱(LIBS)对铝废料进行分选的系统,该系统采用由电动执行器移动的顺序样品池来携带废料。采用调q Nd: YAG激光器(30mJ, 10ns)和长焦距600 mm的物镜组合产生等离子体,用带CCD阵列探测器的紧凑型光纤光谱仪对发射光进行光谱分析。为了实现激光脉冲、CCD光谱仪和电动执行器的同步,设计了脉冲发生器。通过对铝合金标准试样进行分析得到的校正曲线,确定了废铝合金的元素组成。提出了基于铝合金主要附加元素浓度差异的分选算法。将开发的LIBS分选系统应用于铝合金样品的分析,实现了铸造铝合金和变形铝合金的完全分类和分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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