Studying the mechanical properties of iron ore concentrate briquettes

L. I. Polyansky, N. Babailov, Y. Loginov
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Abstract

This paper studies the properties of metallurgical briquettes of iron ore concentrate with coke screenings and liquid glass as a binder. The briquettes are produced by one-sided pressing in a closed die mounted on the plates of a vertical press with a force of 100 kN. The studies were carried out in the laboratory of Spidermash LLC. The following properties of briquettes were determined: density, impact strength and compressive strength (for green and dry briquettes). The functional dependences of the mechanical properties on 4 parameters are plotted, namely on charge mixture composition (the content of iron ore concentrate and coke), binder (liquid glass) percentage in the mixture, moisture content in the mixture, and charge mixture compacting pressure. The obtained experimental data are approximated with the use of a multiplicative model, with the application of the least squares method. Various analytical models for describing the behavior of the material to be briquetted are studied. It is concluded that the multiplicative model provides a more adequate description of the mechanical properties. The quality of the multiple regression model is assessed by the adjusted coefficient of determination. The significance of the regression equation is evaluated by the Fisher criterion, and the significance of the regression coefficients is evaluated according to Student. The mechanical properties of briquettes from iron ore concentrate with coke screenings, presented in the form of analytical dependencies, are necessary to assess the strength of the briquettes when designing the briquetting process. For example, it is necessary to take into account the change in yield during briquette transportation after briquetting. These dependences are also necessary for formulating and solving problems of pressing/briquetting of finely dispersed materials, including iron ore concentrate with coke screenings.
对铁精矿型煤的力学性能进行了研究
研究了以焦炭筛分和液态玻璃为粘结剂的铁精矿冶金型煤的性能。压块是在一个封闭的模具中,用100千牛的力在垂直压力机的板上进行单侧压制的。研究是在Spidermash LLC的实验室进行的。压型煤的以下特性被确定:密度、冲击强度和抗压强度(用于绿色和干型煤)。绘制了混合料组成(铁精矿和焦炭的含量)、混合料中粘结剂(液态玻璃)的含量、混合料中水分含量、混合料压实压力4个参数对力学性能的函数依赖性。利用乘法模型和最小二乘法对得到的实验数据进行近似。研究了用于描述待压块材料行为的各种分析模型。结果表明,乘法模型能较好地描述材料的力学性能。用调整后的决定系数来评价多元回归模型的质量。回归方程的显著性采用Fisher准则进行评价,回归系数的显著性采用Student准则进行评价。采用焦炭筛分的铁矿精矿型煤的力学性能以分析依赖关系的形式呈现,这对于设计型煤工艺时评估型煤的强度是必要的。例如,有必要考虑成型后型煤运输过程中产量的变化。这些依赖关系对于制定和解决精细分散物料(包括带焦炭筛分的铁矿精矿)的压制/压块问题也是必要的。
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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