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EQUIPMENT AND MATERIALS
Название Integrated analysis of drilling tool wear
DOI 10.17580/gzh.2020.12.13
Автор Pelipenko N. A., Baklanov R. R., Protsuk I. S.
Информация об авторе

Insitute of Earth Sciences, Belgorod State University, Belgorod:

N. A. Pelipenko, Professor, Doctor of Engineering Sciences, pelipenkona@mail.ru
R. R. Baklanov, Post-Graduate Student
I. S. Protsuk, Post-Graduate Student

Реферат

The integrated analysis of wear of drilling tools is performed. The wear pattern is analyzed versus the build of the acting faces of drilling tools. It is found that a cooling lubricant containing a surface active substance (SAS) has influence on the axial load of the tool and on the drilling capacity. The correlation between wear and current roughness of acting faces of tools is revealed. The additive technology developed and validated for feeding cooling lubricants enables higher competitive capability of allmetal tool owing special grooves made in the drill body by 3D printing to ensure SAS inlet to the rock–drilling tool contact. The comparative study of wear of tools under vibro-percussive loading with regard to the loading condition is carried out. We studied three tools made of steel grades 65S2VA, 5KHNM and of hard alloy VK-8. An attempt is made to utilize hidden capacities of spring steel in manufacture of tool capable to operate under superposition of vibrations. For such rocks as sandstone, limestone, shale, iron ore, clay, etc., having strength categories from IV to X on the Protodyakonov scale, it is possible to use tools made of spring or structural steel, which enables considerable reduction in the cost of drilling. Structural steels used to manufacture drilling tools for hard rock drilling under superposition of vibrations sometimes can efficiently replace expensive tools made of hard alloys. Another beneficial factor is high brittle fracture resistance of instrument steels as against hard-alloy tools. The study reveals the dependence of tool durability on the tool geometry. Preliminary observations show that geometry is an essential factor for tools made of structural and instrumental steels. It is suggested that wear of instrumental steel tool insignificantly differs from hard-alloy wear. In some cases, well-hardened instrumental steel successively competes with hard alloy.

Ключевые слова Wear, integrated analysis, additive technology, roughness, drilling tool, sharpening fixture, microexamination, capacity, improvement, mining
Библиографический список

1. Beshenkov P. S., Polushin N. I., Gkhorbani S., Sorokin E. N. Stress distribution analysis of PDC drill bits by computer modelingю. Eurasian Mining. 2017. No. 2. pp. 25–28. DOI: 10.17580/em.2017.02.06

2. Pelipenko N. A., Protsuk I. S., Dobrynin V. E., Grekhovodov I. I. For the question about the physics of the hard rock drilling. Vestnik assotsiatsii burovykh podryadchikov. 2016. No. 3. pp. 14–17.
3. Bolobov V. I., Chupin S. A., Bochkov V. S., Mishin I. I. Service life extension for rock cutters by increasing wear resistance of holders by thermomechanical treatment. Gornyi Zhurnal. 2019. No. 5. pp. 67–71. DOI: 10.17580/gzh.2019.05.13
4. Pelipenko N. A., Ignatenko I. M. Vibropercussion polyindenter drilling assembly. GIAB. 2019. No. 9. pp. 195–203.
5. Tretyak A. A., Grossu A. N., Borisov K. A. Influence of structural features of diamond carbide drill bits on rock drilling efficiency. Gornyi Zhurnal. 2018. No. 2. pp. 85–90. DOI: 10.17580/gzh.2018.02.12
6. Khrutskiy A. A., Bobyr V. G. Analysis of studies on the wear of insert rock cutting tools for drilling holes. GIAB. 2015. No. 4. pp. 220–226.
7. Dreus A., Kozhevnikov A., Sudakov A. Lysenko K. Investigation of heating of the drilling bits and definition of the energy efficient drilling modes. Eastern-European Journal of Enterprise Technologies. 2016. Vol. 3, No. 7(81). pp. 41–46.
8. Östberg G., Buss K., Christensen M., Norgren S., Andrén H.-O. et al. Effect of TaC on plastic deformation of WC–Co and Ti(C, N)–WC–Co. International Journal of Refractory Metals and Hard Materials. 2006. Vol. 24, Iss. 1-2. pp. 145–154.
9. Toller L. R. M., Norgren S. M. Mechanisms of plastic deformation in WC-Co and WC-Ni-Fe turning inserts. Proceedings of the 19th Plansee Seminar. Reutte, 2017. HM 41/1.
10. Markova I. Yu., Zakharova E. S., Maslov A. L., Polushin N. I., Laptev A. I., Ovchinnikova M. S. The study of microstructure of wear-resistant coatings applied for protection from abrasive wear of horizontal and tilt drilling drill bits. Journal of Physics: Conference Series. 2017. Vol. 857, No. 1. 012028. DOI: 10.1088/1742-6596/857/1/012028
11. Mussa A., Krakhmalev P., Bergström J. Sliding wear and fatigue cracking damage mechanisms in reciprocal and unidirectional sliding of high-strength steels in dry contact. Wear. 2019. Vol. 444-445. 203119. DOI: 10.1016/j.wear.2019.203119
12. Lei Zheng, Wendong Wei, Xianglong Dong, Chen Zhang, Yong Zenlg et al. Microscopic wear study of the sintered diamond trepanning drill during machining alumina armor ceramics. Ceramics International. 2019. Vol. 45, Iss. 3. pp. 3986–3994.
13. Moseley S., Momeni S., Peters C., Domani G., Allaart J. The influence of loading spectrum, workpiece material, hardmetal grade and drillbit design on the wear and fracture mechanisms of drillbits during rotary-percussive drilling of reinforced concrete: experimental studies and FEM. World PM2016 Congress Proceedings. Hamburg, 2016.
14. Heinrichs J., Olsson M., Yvell K., Jacobson S. On the deformation mechanisms of cemented carbide in rock drilling – Fundamental studies involving sl iding contact against a rock crystal tip. International Journal of Refractory Metals and Hard Materials. 2018. Vol. 77. pp. 141–151.

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