The Use of Thermography to Determine the Compaction of a Saddle-Shaped Briquette Produced in an Innovative Roller Press Compaction Unit

IF 1 Q4 ENGINEERING, MECHANICAL
M. Bembenek, A. Uhryński
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引用次数: 1

Abstract

Abstract The unit compacting pressure in the fine-grained material consolidation process in the roller press can reach >100 MPa and is a parameter that results, among other things, from the properties of the consolidated material and the compaction unit geometry. Achieving the right pressure during briquetting is one of the factors that guarantee the proper consolidation and quality of briquettes. The distribution of the temperature on the surface of the briquettes correlates with locally exerted pressure. The present work aimed to analyse the briquetting process of four fine-grained materials in a roller press equipped with saddle-shaped briquette-forming rollers based on images obtained from the thermography conducted immediately after their consolidation. The tests were carried out in a roller press that was equipped with forming rollers of 450-mm diameter and having a cavity with a volume of 4 cm3, as described by patent PL 222229 B1. Two mixtures of hydrated lime with 9.1 wt% and 13.0 wt% water, a mixture of scale and a mixture of electric arc furnace (EAF) dust were used for the tests. In most mixtures, the highest temperatures were achieved in the middle-upper part of the briquettes. The briquettes from the EAF dust mixture heated locally the most on the surface up to 37.7 °C. The difference between the maximum briquette temperature and the ambient temperature was 20.2 °C.
用热成像法测定在新型辊压压实装置中生产的鞍形型煤的压实度
摘要:细粒材料在辊压机中固结过程中的单元压实压力可达100 MPa,是由固结材料的性质和压实单元的几何形状等因素共同决定的参数。在成型过程中获得合适的压力是保证成型成型质量和固结的因素之一。压块表面的温度分布与局部施加的压力有关。目前的工作旨在分析四种细粒材料在配备鞍形压型辊的辊压机中的压型过程,该压型辊是基于热成像获得的图像,这些图像是在它们固化后立即进行的。试验是在一个辊压机上进行的,该辊压机配备了直径为450毫米的成型辊,其腔体体积为4 cm3,专利为PL 222229 B1。试验中使用了两种水合石灰的混合物,水重量分别为9.1 wt%和13.0 wt%,水垢混合物和电弧炉(EAF)粉尘混合物。在大多数混合物中,最高温度是在煤块的中上部分达到的。电炉粉尘混合物的成型块表面局部受热最多,最高可达37.7℃。最高成型温度与环境温度之差为20.2℃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Mechanica et Automatica
Acta Mechanica et Automatica ENGINEERING, MECHANICAL-
CiteScore
1.40
自引率
0.00%
发文量
45
审稿时长
30 weeks
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