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Optimization of the Spark Gap Parameters for High Power Ultrasound Applications

机译:大功率超声应用中火花隙参数的优化

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There is considerable interest in the industrial and commercial applications of high power ultrasound (HPU) generated using pulsed power techniques. These applications include metal peening, the treatment of ores and minerals before extraction, drilling technologies and the comminution and recovery of waste materials. In all of these applications, it is important to optimise the parameters of the discharge causing the shock wave in the working medium to maximise the efficiency of the treatment. In a research project at the University of Strathclyde, some applications of HPU to the treatment of waste to assist in recycling have been investigated. Two systems have been considered, slag from the manufacture of stainless steel and bottle glass. With the slag material, it is intended to separate stainless steel from the silicate matrix to permit its recovery. With the bottle glass, the intention is comminution of the material to allow it to be recycled in a more valuable form. Measurements of the efficiency of these processes have been made in terms of the mass of material processed versus the energy input as the parameters of the discharge gap have been varied. In parallel with this work, measurements have been made using pinducer sensors to determine the energy in HPU pulses generated by discharges under identical conditions. Correlations are made between the efficiency of material treatment and the intensity of the HPU pulse measured in the far field. It is hoped that this approach will allow the optimal gap parameters to be determined using pinducer measurements rather than time consuming trials based around materials processing
机译:使用脉冲功率技术产生的高功率超声(HPU)在工业和商业应用中引起了极大的兴趣。这些应用包括金属喷丸,提取前的矿石和矿物处理,钻井技术以及废料的粉碎和回收。在所有这些应用中,重要的是优化在工作介质中引起冲击波的放电参数,以最大程度地提高治疗效率。在斯特拉斯克莱德大学的一项研究项目中,对HPU在废物处理中的一些应用进行了研究,以帮助回收。已经考虑了两种系统,即不锈钢和玻璃瓶生产的炉渣。对于炉渣材料,其旨在将不锈钢与硅酸盐基体分离以允许其回收。使用玻璃瓶的目的是粉碎材料,以使其更有价值地循环利用。这些工艺效率的测量是根据所加工材料的质量与能量输入的关系进行的,因为放电间隙的参数已发生变化。与这项工作同时进行的是,使用pinducer传感器进行了测量,以确定在相同条件下由放电产生的HPU脉冲中的能量。在材料处理的效率与远场中测得的HPU脉冲强度之间建立了相关性。希望这种方法将允许使用pinducer测量来确定最佳间隙参数,而不是基于材料加工的耗时试验

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