轮胎热解动力性能的实验模拟

G. A. Morozov, N. Vorobiev, A.M. Salikhov, Y.A. Korpatchev
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引用次数: 1

摘要

微波技术用于轮胎处理具有许多优点:减少处理时间,降低温度条件,高动态温度控制。微波效应相对于高频加热(波长1 - 100米)更有效,微波处理具有较高的热作用过程速度。由于利用的是电磁场能量,它比高频加热要高得多。研究结果表明,轮胎热解动力装置应提供不小于30-50 W/cm/sup 2/的能量密度。为了保持最大的效率,有必要去除橡胶表面的杂质。
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Experimental simulation of power performances of tyre pyrolysis
Microwave techniques for tyre treatment possesses a number of advantages: reduced treatment time, reduced temperature conditions, high dynamics of temperature control. The microwave effect is more efficient, as against HF-heating (wavelengths 1 - 100 m). The microwave treatment has a high thermal action process speed. It is much higher than HF heating due to the use of electromagnetic field energy. Results of the research show that a power installation for tyre pyrolysis should provide an energy density not less than 30-50 W/cm/sup 2/. In order to keep the efficiency maximal, it is necessary to remove dross from the rubber surface.
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