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玄武岩集料破碎技术对其几何性能的影响——初步研究

Influence of Basalt Aggregate Crushing Technology on Its Geometrical Properties-Preliminary Studies.

作者信息

Duchnowska Magdalena, Strzałkowski Paweł, Bakalarz Alicja, Kaźmierczak Urszula, Köken Ekin, Karwowski Piotr, Wolny Michał, Stępień Tomasz

机构信息

Department of Mining, Faculty of Geoengineering, Mining and Geology, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

Nanotechnology Engineering Department, Engineering Faculty, Abdullah Gul University, Kayseri 38100, Turkey.

出版信息

Materials (Basel). 2023 Jan 8;16(2):602. doi: 10.3390/ma16020602.

Abstract

The use of mineral aggregates is related to the increasing demand in construction, railway and road infrastructures. However, mineral aggregates can appear to be of variable quality, directly affecting their suitability for respective earthwork applications. Since the production of mineral aggregates should ensure the standardized, high-quality requirements of the final product, rock-crushing mechanisms should be investigated in a detailed manner. In this context, the aim of the present study is to evaluate and analyze the geometric parameters of basalt aggregates as a result of several rock comminution processes. Basalt aggregates from two deposits in Poland were used in the study. The samples are differentiated regarding both lithological variances, mineral composition as well as the host rock's tuff content. The rock comminution processes were conducted using two types of crushers, namely the laboratory-scale jaw and cone crushers. The feed for crushing was designed based on the original geometric grain composition and the separated feed in the form of flaky and non-flaky particles. The crushability test results demonstrated that the interparticle compression in the jaw crusher resulted in finer products compared to the one in the cone crusher. It was also observed that the flakiness and shape indexes decreased after crushing, both in the feed with the original geometric composition of the grains and those with flaky and non-flaky particles. Nevertheless, a higher flakiness index was obtained after the crushing of non-flaky particles and a lower one after the crushing of flaky particles. The flakiness index for grains below 16 mm after the crushing process was less than 10%, which indicates a more favorable result compared to the original feed. In addition, it was shown that flaky and non-cubical particles were accumulated in the finest (below 8 mm) and coarsest (above 20 mm) fractions in jaw and cone crushing processes, receiving flakiness and shape indexes ranging up to 80-100%. Finally, it was also observed that the lithological variances of the feed material have a significant impact on the particle size distribution of the product. More profoundly, basalt aggregates with a higher tuff content and weathering degree have a higher degree of crushing. The present study, in this context, provides accurate and satisfying information on understanding the crushing mechanisms of two important crushing equipment as well as their rock-crusher interactions.

摘要

矿物集料的使用与建筑、铁路和道路基础设施日益增长的需求相关。然而,矿物集料的质量可能参差不齐,这直接影响到它们在各自土方工程应用中的适用性。由于矿物集料的生产应确保最终产品符合标准化的高质量要求,因此应对岩石破碎机制进行详细研究。在此背景下,本研究的目的是评估和分析经过几种岩石粉碎过程后玄武岩集料的几何参数。本研究使用了来自波兰两个矿床的玄武岩集料。这些样品在岩性差异、矿物成分以及母岩的凝灰岩含量方面都有所不同。岩石粉碎过程使用了两种类型的破碎机,即实验室规模的颚式破碎机和圆锥破碎机。破碎的进料是根据原始几何粒度组成以及片状和非片状颗粒形式的分离进料设计的。可破碎性测试结果表明,与圆锥破碎机相比,颚式破碎机中的颗粒间压缩产生的产品更细。还观察到,在具有原始颗粒几何组成的进料以及含有片状和非片状颗粒的进料中,破碎后片状指数和形状指数均下降。然而,非片状颗粒破碎后的片状指数较高,片状颗粒破碎后的片状指数较低。破碎过程后粒径小于16mm的颗粒的片状指数小于10%,这表明与原始进料相比结果更理想。此外,研究表明,在颚式和圆锥破碎过程中,片状和非立方体颗粒聚集在最细(小于8mm)和最粗(大于20mm)的粒级中,其片状指数和形状指数高达80 - 100%。最后,还观察到进料材料的岩性差异对产品的粒度分布有重大影响。更深刻的是,凝灰岩含量和风化程度较高的玄武岩集料具有更高的破碎程度。在此背景下,本研究为理解两种重要破碎设备的破碎机制及其与岩石破碎机的相互作用提供了准确且令人满意的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c82c/9866930/8d6050b3207b/materials-16-00602-g0A1.jpg

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