STUDY OF THE FOAMING PROCESS OF BITUMEN IN THE MIXER

A. Savichev, R. Sharapov, A. Agarkov
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Abstract

The article discusses the main ways to save material, labor and financial resources in the production of asphalt concrete mixtures. It has been shown that a promising way to save energy and reduce harmful effects on the environment is to reduce the temperature of the bitumen. A foam generator design has been proposed that allows efficient mixing of bitumen with the generated steam. To describe rheology, the article uses the Ostwald-de Waele power-law fluid model. An expression for the current function is obtained, which allows to find the characteristics of the flow of the carrier phase in the mixer, taking into account the geometric parameters of the mixer, such as the diameter and length of the pipe, the radius of the screw, and the flow parameters at the inlet to the mixer. It is shown that under the same flow conditions, in order to obtain the same flow rate in the case of a pseudoplastic fluid, it is necessary to apply a greater pressure gradient compared to a Newtonian fluid. Experimental studies are carried out on the developed laboratory installation, which make it possible to determine the rational design and technical parameters of the foamed bitumen installation, the parameters of which are changed during the experiment. A regression equation is obtained in coded form, expressing the dependence of the quality of adhesion of foamed bitumen to inert material depending on the design and technological parameters of the developed bitumen foaming device
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研究沥青在搅拌机中的发泡过程
文章讨论了在生产沥青混凝土混合物过程中节约材料、劳动力和财政资源的主要方法。研究表明,降低沥青温度是节约能源和减少对环境有害影响的一个可行方法。已经提出了一种泡沫发生器的设计方案,可以将沥青与产生的蒸汽有效混合。为了描述流变学,文章使用了 Ostwald-de Waele 动力定律流体模型。考虑到混合器的几何参数,如管道的直径和长度、螺杆的半径以及混合器入口处的流动参数,可以得到电流函数的表达式,从而找到载流相在混合器中的流动特性。结果表明,在相同的流动条件下,与牛顿流体相比,为了获得相同的假塑性流体流速,必须施加更大的压力梯度。在已开发的实验室装置上进行了实验研究,从而确定了发泡沥青装置的合理设计和技术参数,这些参数在实验过程中会发生变化。以编码形式得到了一个回归方程,表达了发泡沥青与惰性材料的粘附质量取决于所开发的沥青发泡装置的设计和技术参数
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