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首页> 外文期刊>International Journal of Mineral Processing >A simulation model of the comminution-liberation of recycling streams: Relationships between product design and the liberation of materials during recycling
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A simulation model of the comminution-liberation of recycling streams: Relationships between product design and the liberation of materials during recycling

机译:粉碎流回收的模拟模型:产品设计与回收过程中物料释放之间的关系

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摘要

End-of-Life (EOL) products can be considered to be industrial ores, since the minerals (materials can be considered as minerals) contained are recovered, processed and reintroduced in the material production systems as industrial ores. Therefore, the principles used in classical minerals processing can be applied to describe the comminution and liberation of EOL products during recycling. Similarly as for natural ores, particle size reduction and liberation have an important role in the quality of the recycling streams and on the possibilities for their further processing and reintroduction in the resource cycles. A simulation model is presented that describes the relationships between product design and the liberation level attained by shredding. The model simulates the comminution and liberation phenomena as a function of the product design variables. From the analysis of experimental samples, sensitivity analysis and simulations, relationships are illustrated and discussed. The breakage behaviour of End-of-Life (EOL) products differs largely from these natural minerals. Therefore, although many definitions can be adapted from classical minerals processing, a different approach is required in the modelling of the comminution-liberation of EOL products. This is the first step in the development of these type of models, and much experimental work is required for further development. The simulation results using a passenger vehicle as example show that during product design, the materials and joints among them can be chosen to obtain the best possible liberation and the lowest possible contamination. Therefore, industrial ores can be 'designed' for recycling, to reduce recycling losses and optimise resource efficiency. The aim is to implement this knowledge in the product design stage of defining materials and connections.
机译:使用寿命终止(EOL)产品可以被视为工业矿石,因为其中所含的矿物(材料可以被视为矿物)是作为工业矿石在材料生产系统中进行回收,加工和再引入的。因此,经典矿物加工中使用的原理可用于描述回收过程中EOL产品的粉碎和释放。与天然矿石类似,减小和释放粒度对回收流的质量以及在资源循环中对其进行进一步处理和重新引入的可能性也具有重要作用。提出了一个仿真模型,该模型描述了产品设计和切碎所获得的解放程度之间的关系。该模型根据产品设计变量模拟粉碎和释放现象。通过对实验样品的分析,灵敏度分析和模拟,可以说明和讨论关系。停产(EOL)产品的破坏行为与这些天然矿物质有很大不同。因此,尽管可以从经典的矿物加工中获得许多定义,但在EOL产品的粉碎-释放模型化中仍需要一种不同的方法。这是开发此类模型的第一步,进一步开发需要大量实验工作。以乘用车为例的仿真结果表明,在产品设计过程中,可以选择其中的材料和接头以获得最佳的解放效果和最低的污染。因此,可以“设计”工业矿石进行回收,以减少回收损失并优化资源效率。目的是在定义材料和连接的产品设计阶段中应用此知识。

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