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Improvement of the effectiveness of the greywacke crushing process by applying an impact crusher in a quarry for the production of railway ballast

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The production of aggregates in rock mining requires an optimal system of crushers, separators and conveyors. Proper machine selection allows aggregates with appropriate technical parameters to be obtained and increases the output of the required fractions with a given unit cost. The usage of rock raw materials for the production of railway ballasts used in a railway track superstructure is connected with the necessity of meeting strictly defined quality requirements. This paper presents an example of the use of an impact crusher in a selected quarry for the purpose of obtaining the correct parameters of railway ballast and a suitable grain curve. The evaluation was carried out based on the results of technological tests which were compared with the technologies used to date, thus ensuring the effectiveness of the solution in the practice of quarries.
Rocznik
Strony
195--200
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
  • WSB University (Akademia WSB) Str. Cieplaka 1c, 41-300 Dąbrowa Górnicza, Poland
  • Central Mining Institute (Główny Instytut Górnictwa), Department of Water Protection, Plac Gwarków 1, 40-166 Katowice, Poland
Bibliografia
  • [1] Radwanek-Bąk B. Krajowa baza zasobowa kruszyw łamanych dla kolejnictwa. Surowce i Maszyny Budowlane 2019;1: 50-3.
  • [2] Warunki Techniczne Wykonania I Odbioru Podsypki Tłuczniowej Naturalnej I Recyklingu Stosowanej W Nawierzchni Kolejowej. Załącznik Do Uchwały Nr 1237/2016. Warszawa: Zarządu PKP PLK SA; 2016.
  • [3] Standard EN 13450. Aggregates for Railway Ballast. 2013.
  • [4] Bengtsson M, Evertsson C. Measuring characteristics of aggregate material from vertical shaft impact crushers. Min Eng December 2006;19(15):1479-86. https://doi.org/10.1016/j.mineng.2006.08.003.
  • [5] Kozioł W. Kruszywa Dla Kolei. Nowoczesne budownictwo inżynieryjne; 2019. p. 82-6.
  • [6] Basics in Minerals Processing. Helsinki: Metso Corporation; 2018.
  • [7] Serina N, Engelsen J. Waste and Supplementary Cementitious Materials in Concrete. Woodhead Publishing Series in Civil and Structural Engineering; 2018. p. 229-55. https://doi.org/10.1016/B978-0-08-102156-9.00008-0.
  • [8] Foitova P, Białecka B, Kurus K, Volgyi V. Comparison of method about use mining waste in Czech Republic and Poland1. International Multidisciplinary Scientific Geo- Conference: SGEM: Surveying Geology & Mining Ecology Management; 2013. p. 317-24.
  • [9] Gawenda T. Comparative analysis of mobile and stationary technological sets for screening and Grinding Rocznik Ochrona Środowiska 2013. Rocznik Tom 2013;15(cz. 2): 1318-35.
  • [10] Gawenda T. The influence of rock raw materials comminution in various crushers and crushing stages on the quality of mineral aggregates. Gospodarka Surowcami Mineralnymi- Min Resour Manag 2013;29(1):53-65.
  • [11] Kozioł W, Baic I. Rock mining in Poland - current Status and conditions for development. J Polish Min Eng Soc 2018: 65-71. https://doi.org/10.29227/IM-2018-02-08.
  • [12] Portafill. Mobile Impactor Portafill 7000IC-R - Technical Brochure. 2020.
  • [13] Sigma Plantfinder. Retrieved from: https://www. sigmaplantfinder.com/blog/how-does-a-cone-crusher-work. [Accessed 1 August 2020].
  • [14] Závacký M, Majda T, Rozsypalová I, Štefaňák J. Moravian greywacke - evaluation of fracture, strength and deformability properties. In: AG 2019 - 5th International Conference on Applied Geophysics. E3S Web of Conferences; 2019. p. 1-8. https://doi.org/10.1051/e3sconf/201913302003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-54159a29-196e-4977-8320-512d1d9b40dd
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