BASICS OF AUTOMATION OF PROFILING OF HIGH-EFFICIENT INSERTS OF THE TOOL FOR THREAD MACHINING

Oleh Onysko ,
Oleh Onysko
Contact Oleh Onysko

Ivano-Frankivsk National Technical University of Oil and Gas , Ivano-Frankivsk , Ukraine

Tetiana Lukan ,
Tetiana Lukan
Contact Tetiana Lukan

Ivano-Frankivsk National Technical University of Oil and Gas , Ivano-Frankivsk , Ukraine

Lolita Pituley ,
Lolita Pituley

Ivano-Frankivsk National Technical University of Oil and Gas , Ivano-Frankivsk , Ukraine

Iryna Shuliar ,
Iryna Shuliar

Ivano-Frankivsk National Technical University of Oil and Gas , Ivano-Frankivsk , Ukraine

Yurii Havryliv
Yurii Havryliv

Ivano-Frankivsk National Technical University of Oil and Gas , Ivano-Frankivsk , Ukraine

Received: 06.10.2020.

Accepted: 17.11.2020. >>

Published: 30.11.2020.

Volume 2, Issue 2 (2020)

pp. 22-28;

https://doi.org/10.7251/sted0220022o

Abstract

Many modern threaded joints especially in the oil and gas industry, must satisfy high requirements for steel mechanical properties of which they are made. To ensure efficient threading of such hard-to-machine materials (ultimate strength is more than 1250 MPa), it is necessary to use carbide cutting inserts with the negative rake angle at its corner. However, modern manufacturers of such inserts make them only with a zero value of the rake angle. This is due to the difficulty of profiling of the insert cutting edge. This article proposes the basics of such inserts automatic profiling which is based on the algorithm developed by the authors. It includes two corrective calculations of the insert cutting edge profile, namely: the radial displacement of the corner and the tangential displacement of the area forming the crest of the thread. As a result, the computer application with the input parameter of the rake angle and output parameter of the upgraded profile of the insert cutting edge is received.

Keywords

References

Kopei, V., Onysko, O., & Panchuk, V. (2018). Computerized system based on FreeCAD for geometric simulation of thread turning of oil and gas pipes. *Book of Abstracts, 6-Th International Conference of Applied Science*, 108.
Kopei, V., Onysko, O., & Panchuk, V. (2019). The application of the uncorrected tool with a negative rake angle for tapered thread turning. In *Design, Simulation, Manufacturing: The Innovation Exchange* (pp. 149–158).
Medvid, I., Onysko, O., Pituley, L., Shuliar, I., & Havryliv, Y. (2019). Problems of accuracy of tapered thread for small diameter drill pipe connections. *SimTerm 2019. 19-Th International Conference on Thermal Science and Engineering of Serbia*, 216–221.
Panchuk, V., Onysko, O., & Medvid, I. (2018). Technology of the oil and gas drill pipe connector with low-permeability level of the drilling mud in its screw part. *Acta Technica Corviniensis-Bulletin of Engineering*, 11(4), 47–54.

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