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Fast and automatic thermographic material identification for the recycling process

机译:用于回收过程的快速自动热成像材料识别

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Within the framework of the future closed loop recycling process the automatic and economical sorting of plastics is a decisive element. The at the present time available identification and sorting systems are not yet suitable for the sorting of technical plastics since essential demands, as the realization of high recognition reliability and identification rates considering the variety of technical plastics, can not be guaranteed. Therefore the Laser Zentrum Hannover e.V. in cooperation with the Hoerotron GmbH and the Preussag Noell GmbH has carried out investigations on a rapid thermographic and laser-supported material- identification-system for automatic material-sorting- systems. The automatic identification of different engineering plastics coming from electronic or automotive waste is possible. Identification rates up to 10 parts per second are allowed by the effort from fast IR line scanners. The procedure is based on the following principle: within a few milliseconds a spot on the relevant sample is heated by a CO$-2$/ laser. The samples different and specific chemical and physical material properties cause different temperature distributions on their surfaces that are measured by a fast IR-linescan system. This 'thermal impulse response' has to be analyzed by means of a computer system. Investigations have shown that it is possible to analyze more than 18 different sorts of plastics at a frequency of 10 Hz. Crucial for the development of such a system is the rapid processing of imaging data, the minimization of interferences caused by oscillating samples geometries, and a wide range of possible additives in plastics in question. One possible application area is sorting of plastics coming from car- and electronic waste recycling.
机译:在未来闭环回收过程的框架内,塑料的自动和经济分类是一种决定性元素。目前的时间可用识别和分拣系统尚不适用于由于基本要求的技术塑料的分类,因为考虑到考虑各种技术塑料的高识别可靠性和识别率,不能保证。因此激光Zentrum Hannover E.v.与Hoerotron GmbH合作,PreussAgnoell GmbH对自动材料分类系统的快速热量和激光支持的材料识别系统进行了调查。可以自动识别来自电子或汽车浪费的不同工程塑料。从红外线扫描仪的努力允许允许每秒达到10份的识别率。该程序基于以下原理:在几毫秒内,相关样品的位置由CO $ -2 $ /激光加热。样品不同和特定的化学物质和物理材料性质导致通过快速IR-LineCAN系统测量的表面上的不同温度分布。必须通过计算机系统分析该“热脉冲响应”。研究表明,可以以10Hz的频率分析超过18种不同的塑料。这种系统的发展至关重要是对成像数据的快速处理,最小化受振荡样品几何形状引起的干扰,以及在塑料中的各种可能的添加剂。一个可能的应用区是来自汽车和电子废物回收的塑料的分类。

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