Tytov O.O., Babii K.V., Sukhariev V.V. Technique for calculation of parameters of the wave profiled roll crusher for obtaining the cubic shaped products

Geoteh. meh. 2022, 163, 183-192

https://doi.org/10.15407/geotm2022.163.183

 

TECHNIQUE FOR CALCULATION OF PARAMETERS OF THE WAVE PROFILED ROLL CRUSHER FOR OBTAINING THE CUBIC SHAPED PRODUCTS

1TytovO.O., 2Babii K.V., 2Sukhariev V.V.

1Dnipro University of Technology, 2Institute of Geotechnical Mechanics named by N. Poljakov of National Academy of Sciences ofUkraine

UDC 621.926: 622.7         

Language: English

Abstract. The purpose of this work is to develop a technique for calculating the crusher with wave profiled rolls based on analytical and experimental data on hard rocks processing in crushers of this type. Information on the expediency of using cubic-shaped products as fillers for concrete is given. Attention is focused on the advantages of this approach. The main types of equipment capable of producing the stone products with minimum content of lamellar pieces are analyzed. The choice of crushers with wave profile of rolls for processing of narrow-sized crushed stone fractions as combination of high efficiency with acceptable wear of working surfaces and low dynamics of working modes is justified. The algorithm of calculating the crusher parameters is given based on theoretical conclusions and experimental data on the fine crushing of hard rocks from open pits of Ukraine on the real sample of crusher with wave profiled rolls. Granulometric characteristics of narrow-sized fractions, based on the results of material screening using slits with round and slot openings, the yield of lamellar pieces in the feed material, the coefficient of material friction on the roll working surface, the circumferential speed of roll ledges are taken as initial data. Such parameters of the crusher, as the size of the gap between ledges of the opposite rolls, the nominal diameter of the rolls, the pitch of the roll ledges in the axial direction, the radii of rounding of the ledges and the hollows file of the roll profile, the angle of sharpening of the rolls, the angle of inclination of the taper sections, the height of the profile, the length of the roll working part, the rotational speed of the rolls, the theoretical output of the crusher are determined on the basis of the authors’ previous studies. Also, the model example of calculation of crusher parameters for processing of granite fraction of size less than 70 and more than 40mm, having 30% yield of lamellar pieces, is given.
The following conclusions were made. Firstly, the technique for calculating the parameters of crusher with wave profiled rolls for processing the narrow-sized crushed stone fractions in order to reduce the content of lamellar pieces makes it possible to determine the expediency of complete or partial shape improvement of the pieces of narrow-sized crushed stone fractions. Secondly, it sets the main characteristics of the crusher working member and its drive. Thirdly, it is recommended for calculating the parameters of operational part of the crushers with wave profiled rolls, designed to improve the shape of pieces of narrow-sized fractions of construction crushed stone from hard rocks, which are used as filler in responsible concrete and asphalt-concrete products.
Keywords: roll crusher, wave profile, calculation technique, lamellar piece, narrow-sized fraction, slot sieve.

REFERENCES

1. Biletskii, V.S., Oliinyk, T.A., Smyrnov, V.O., and Skliar, L.V. (2019), Tekhnika ta tekhnologiia zbahachennia korysnykh kopalyn. Chastyna I. Pidhotovchi protsesy [Equipment and technology of mineral dressing. Part I. Preparatory processes], FOP Cherniavskiy D.O., Kryvyi Rig, Ukraine.

2. Bozhyk, D.P., Sokur, M.I., Hnieushev, V.O., and Biletskii, V.S. (2018), “Teoretuchni I praktychni aspekty vyrobnytstva vysokoiakisnoho kubovydnoho shchebeniu” [Theoretical and practical aspects of production of high quality cubical crushed stone], Visnyk Rivnenskoho Natsionalnoho Universytetu Vodnoho Hospodarstva, Technichni Nauky, Rivne, vol. 3(79), pp. 87–95.

3. Bozhyk, D.P., Sokur, M.I, Biletskii, V.S., Yehurnov, O.I., Vorobyov, O.M., and Smyrnov, V.O. (2017), Pidhotovka korysnykh kopalyn do zbahachennia: Monohrafiia [Preparation of minerals for dressing: Monograph], PP Shcherbatykh O.V., Kremenchuk, Ukraine.

4. Bozhyk, D., Sokur, M., Biletskyy, V., and Sokur, L. (2016), “Investigation of the process of crushing solid materials in the centrifugal disintegrators”, Easten European journal of Enterprise Technologies, vol. 3/7 (81), pp 34–41. https://doi.org/10.15587/1729-4061.2016.71983

5. Nadutiy, V.P. and Tytov, O.O, National Technical University «Dnipro Polytechnic» (2019), Valkovadrobarka [Roll crusher], State Register of Patents of Ukraine, Kiev, UA, Pat. no. 122015.

6. Nadutyi, V.P., Tytov, O.O., Kolosov, D.L. and Sukhariev, V.V. (2020), “Influence of particles geometry on the efficiency of operation of quasistatic and inertial disintegrators”, Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu, no. 6, pp. 021–027. https://doi.org/10.33271/nvngu/2020-6/021

7. Tytov, O.O. (2019). “Analysis of Mining Rocks Disintegration Conditions in Crushers Having the Wave Profile of Rolls”, Modernization and Engineering Development of Resource-Saving Technologies in Mineral Mining and Processing, Multi-authored monograph, UNIVERSITAS Publishing, Petrosani, Romania, pp. 366–380.

8. Tytov., O.O., Sukhariev, V.V., and Usatyi, T.S.(2021), “Determination of technological parameters of the crusher with wave profile of rolls”, IV International Scientific and Technical Conference “Innovative Development of Resource-Saving Technologies and Sustainable Use of Natural Resourses”. Book of Abstracts, UNIVERSITAS Publishing, Petrosani, Romania, pp. 190–192.

9. State Committee on Construction, Architecture and Housing Policy of Ukraine (1999), DSTUBV.2.7-74-98: Krupni zapovniuvachi pryrodni, z vidkhodiv promyslovosti, shtuchni dlia budivelnykh materialiv, vyrobiv, konstruktsii i robit. Klasyfikatsiia[DSTU B V.2.7-74-98: Large natural fillers, from industrial waste, artificial for construction materials, products, structures and works. Classification], DP “UkrNDNTs”, Кyiv, Ukraine.

About authors:

Tytov Oleksandr Oleksandrovych, Candidate of Technical Sciences (Ph. D), Associate Professor, Associate Professor in Department of Engineering and Design in Machinery Industry, Dnipro University of Technology, Dnipro, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Babii Kateryna Vasylivna, Doctor of Technical Sciences, (D.Sc), Senior Researcher, Deputy Director of the Institute, Institute of Geotechnical Mechanics named by N. Poljakov of National Academy of Sciences of Ukraine (IGTM NAS of Ukraine), Dnipro, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Sukharіev Vitaliі Vitaliіovych, Candidate of Technical Sciences (Ph.D.), Senior Researcher in Department of Mechanics of Mineral Processing Machines and Processes, Institute of Geotechnical Mechanics named by N. Poljakov of National Academy of Sciences of Ukraine (IGTM NAS of Ukraine), Dnipro, Ukraine,  This email address is being protected from spambots. You need JavaScript enabled to view it.