Development of technology for automated production of taps
DOI:
https://doi.org/10.37142/2076-2151/2019-2(49)195Keywords:
tap; plastic forming; automated production complex; radial stamping press machine.Abstract
Matiukhin A., Dolia S. Development of technology for automated production of taps // Material working by pressure. – 2019. – № 2 (49). - P. 195-201.
The paper considers the possibility of applying the technology of automated production of taps, based on the use of plastic molding of chip grooves on a radial stamping press machine. The automated production complex, in addition to the radial stamping press machine, will also include a straightening and unwinding machine, press shears for fine wire cutting, a thread grinding machine and ancillary equipment for transporting, orienting and fixing blanks in space.
The expected results of the scientific work done on the development of technology and equipment for the automated manufacture of taps should be used in the engineering industry to create advanced technologies for the mass production of taps. The manufacturing technology of taps in the application of automated production lines has a number of significant advantages compared to traditional ones, in particular: increased labor productivity and metal utilization, reduced metal and machine intensity; increased energy and resource efficiency. These advantages, ultimately, reduce the cost of manufacturing the tap, without reducing its mechanical and technological properties, which will allow the national manufacturer to compete adequately in both the domestic and foreign markets.
References
Piska M., Sliwkova P. Surface parameters, tribological tests and cutting performance of coated HSS taps. Energy Procedia. 2015,100 (C), pp. 125–134.
Zhu X.–H., Wang Y., Tong H. The parameter sensibility analysis for fishing box tap based on the overall process of elastoplasticity in oil and gas wells. Mathematical and Computer Modelling. 2013, 58 (7–8), pp. 1540–1547.
Lee S.W., Nestler A. Simulation–aided design of thread milling cutter. 2012, Procedia CIRP, 1(1),
pp. 120–125.
Shalamov P.V., Kulygina I.A., Yaroslavova E.N. ANSYS Software–based study of thermal drilling process. 2016, Procedia Engineering, 150, pp. 746–752.
Gil Del Val A., Fernández J., Arizmendi M., Veiga F., et al. On line diagnosis strategy of thread quality in tapping. 2013, Procedia Engineering, 63, pp. 208–217.
Rodin P.R. Fundamentals of designing cutting tools: a textbook for university students. Kyiv: High School. 1990, 424 p. (in Russian).
Chumakov B.N., Soloviev A.A., Laiko V.Ya. Radial stamping press machine. Рatent USSR 710741. 1980. (in Russian).
Matyukhin A.Yu., Ben A.M., Lenok A.A., Dolja S.P. A method of obtaining a tap blank. Proceedings of the International Conference “Engineering through the eyes of young”. Okt. 31 2018. Kramatorsk: DSEA. 2018, pp. 127–129. (in Ukrainian).
Ogryzkov P.M. Stamp for cutting rolled products to measured lengths. Рatent USSR 988472. 1983. (in Russian).
Maznichenko S.A., Kononenko V.G., Yatsenko S.V. Pulse cutting machine. Рatent USSR 662283. 1979. (in Russian).
Ivanov Yu.A., Ryzhukhin O.A., Karasev M.N. Knife for cutting long products. Рatent USSR 1819737. 1993. (in Russian).