Развитие аналитической модели резьбового соединения трубчатых деталей хромированных металлоконструкций

О. Я. Дубей, Т. Ф. Тутко, Л. Я. Ропяк, М. В. Шовкопляс

Ивано-Франковский национальный технический университет нефти и газа, ул. Карпатская, 15, 76019 Ивано-Франковск, Украина

Получена: 29.12.2021. Скачать: PDF

Проведен анализ материалов и покрытий, которые используются для изготовления буровых труб, буровых замков, обсадных труб, насосно-компрессорных труб и муфт, условий их эксплуатации и способов повышения ресурса работы в агрессивных средах с содержанием абразивных частиц горной породы и под нагрузкой. Для улучшения эксплуатационных характеристик трубчастых деталей и их соединений предложен системный подход, включающий рациональный выбор материалов (сталей, алюминиевых и титановых сплавов), усовершенствованную методику расчёта оболочечных металлоконструкций и их упрочнение электрохимическим хромированием в проточном электролите для повышения износостойкости и коррозионной стойкости. Для развития методики решения контактных задач для оболочечных резьбовых соединений в статье аналитически определены радиальные перемещения и углы поворота нормали в цилиндрической оболочке конечной длины, вызванные сосредоточенными кольцевой силой и кольцевым моментом, приложенными в произвольном сечении оболочки. Установлена существенная зависимость коэффициентов функций влияния от жёсткости покрытой оболочки, исследовано распределение перемещений и углов поворота по осевой координате.

Ключевые слова: металлическая оболочка, резьбовое соединение, хромовое покрытие, перемещение, угол поворота, сосредоточенная нагрузка.

URL: https://mfint.imp.kiev.ua/ru/abstract/v44/i02/0251.html

PACS: 46.15.-x, 46.55.+d, 46.70.De, 62.20.Qp, 68.35.bd, 81.05.Bx


ЦИТИРОВАННАЯ ЛИТЕРАТУРА
  1. R. Nan, X. Sun, B. Shu, H. Wang, S. Yang, C. Lu, and L. Han, Mater. Sci. Forum, 993: 1155 (2020). Crossref
  2. E. M. Afandiyev and M. N. Nuriyev, EUREKA: Physics and Engineering, 5: 80 (2021). Crossref
  3. L. Dai, D. Wang, T. Wang, Q. Feng, and X. Yang, J. Petroleum Eng., 2017: ID 3174636 (2017). Crossref
  4. O. Bazaluk, O. Slabyi, V. Vekeryk, A. Velychkovych, L. Ropyak, and V. Lozynskyi, Energies, 14, No. 12: 3514 (2021). Crossref
  5. C. Teodoriu and O. Bello, Energies, 14, No. 15: 4499 (2021). Crossref
  6. L. Ya. Ropyak, T. O. Pryhorovska, and K. H. Levchuk, Prog. Phys. Metals, 21, No. 2: 274 (2020). Crossref
  7. Y. Liang, Q. Feng, D. Li, and S. Cai, Sensors (Basel), 18, No. 11: 3699 (2018). Crossref
  8. O. Mandryk, B. Mishchuk, A. Zelmanovych, V. Tyrlych, O. Tuts, and L. Poberezhna, Ecological Eng. Environmental Technol., 22, No. 4: 53 (2021). Crossref
  9. O. Mandryk, O. Vytyaz, L. Poberezhny, and Y. Mykhailiuk, Archives Mater. Sci. Engineering, 106, No. 1: 17. (2020). Crossref
  10. M. Pashechko, J. Józwik, K. Dziedzic, K. Karolus, and I. Usydus, Mater. Sci., 52: 834 (2017). Crossref
  11. M. Paschechko, K. Dziedzic, E. Mendyk, and J. Jozwik, J. Tribol., 140, No. 2: 021302 (2017). Crossref
  12. M. Pashechko, J. Montusiewicz, K. Dziedzic, and J. Jozwik, Powder Metall Met. Ceram., 56: 316 (2017). Crossref
  13. R. M. Tatsiy, O. Y. Pazen, S. Y. Vovk, L. Y. Ropyak, and T. O. Pryhorovska, J. Serbian Soc. Computational Mechanics, 13, No. 2: 36 (2019). Crossref
  14. N. Volchenko, A. Volchenko, D. Volchenko, P. Poliakov, V. Malyk, D. Zhuravliov, V. Vytvytskyi, and P. Krasin, Eastern-European J. Enterprise Technologies, 1, No. 5 (97): 47 (2019). Crossref
  15. R. M. Tatsii and O. Y. Pazen, J. Eng. Phys. Thermophys., 91, No. 6: 1373 (2018). Crossref
  16. I. P. Shats’kyi, M. V. Makoviichuk, and A. B. Shcherbii, J. Mathematical Sci., 238, No. 2: 165 (2019). Crossref
  17. I. P. Shatskyi, M. V. Makoviichuk, and A. B. Shcherbii, Proc. 11th Int. Conf. Shell Structures: Theory and Applications, SSTA 2017, 4: 165 (2018). Crossref
  18. V. B. Tarelnyk, O. P. Gaponova, I. V. Konoplianchenko, V. A. Herasymenko, and N. S. Evtushenko, Metallofiz. Noveishie Tekhnol., 40, No. 2: 235 (2018). Crossref
  19. M. Barszcz, M. Pashechko, K. Dziedzic, and J. Jozwik, Materials, 13, No.13: 3025 (2020). Crossref
  20. Z. Duriagina, M. Romanyshyn, V. Kulyk, T. Kovbasyuk, A. Trostianchyn, and I. Lemishka, J. Achievements Mater. Manufacturing Eng., 2: 49 (2020). Crossref
  21. L. Ya. Ropyak, M. V. Makoviichuk, I. P. Shatskyi, I. M. Pritula, L. O. Gryn, and V. O. Belyakovskyi, Func. Mater., 27, No. 3: 638 (2020). Crossref
  22. O. Bulbuk, A. Velychkovych, V. Mazurenko, L. Ropyak, and T. Pryhorovska, Engineering Solid Mechanics, 7, No. 3: 193 2019. Crossref
  23. A. A. Bedzir, I. P. Shatskii, and V. M. Shopa, Int. Appl. Mech., 31, No. 5: 351 (1995). Crossref
  24. O. Ivanov, P. Prysyazhnyuk, D. Lutsak, O. Matviienkiv, and V. Aulin, Man-agement Systems in Production Engineering, 28, No. 3: 178 (2020). Crossref
  25. P. Prysyazhnyuk, D. Lutsak, L. Shlapak, V. Aulin, L. Lutsak, L. Borushchak, and T. Shihab, Eastern-European J. Enterprise Technologies, 6, No. 12: 43 (2018). Crossref
  26. L. Ya. Ropyak, I. P. Shatskyi, and M. V. Makoviichuk, Metallofiz. Noveishie Tekhnol., 39, No. 4: 517 (2017) (in Ukrainian). Crossref
  27. T. A. Pryhorovska, and S. S. Chaplinskiy, Neftyanoye Khozyaystvo—Oil In-dustry, No. 1: 38 (2018). Crossref
  28. L. S. Saakiyan, A. P. Efremov, L. Ya. Ropyak, and A.V. Gorbatskii, Soviet Mater. Sci., 23, No. 3: 267 (1987) (in Russian). Crossref
  29. M. I. Pashechko, V. V. Shyrokov, Z. A. Duryahina, and Kh. B. Vasyliv, Mater. Sci. 39: 108 (2003). Crossref
  30. L. S. Saakiyan, A. P. Efremov, and L. Ya. Ropyak, Protection of Metals (English Translation of Zaschita Metallov), 25, No. 2: 185 (1989) (in Russian). Crossref
  31. I. Shatskyi, L. Ropyak, and A. Velychkovych, Eng. Solid Mech., 8, No. 4: 301 (2020). Crossref
  32. O. Onysko, V. Panchuk, V. Kopei, Y. Havryliv, and I. Schuliar, J. Phys.: Con-ference Series, 1781, No. 1: art. No. 012028 (2021). Crossref
  33. Tetiana Pryhorovska and Liubomyr Ropyak, 2019 IEEE 8th Int. Conf. Ad-vanced Optoelectronics and Lasers (CAOL) (Sept. 6–8, 2019) (Sozopol, Bulgar-ia: 2019), No. 19431197: 493 (2019). Crossref
  34. I. Medvid, O. Onysko, V. Panchuk, L. Pituley, and I. Schuliar, Advanced Man-ufacturing Processes II. InterPartner 2020. Lecture Notes in Mechanical Engi-neering (Ed. V. Tonkonogei) (Springer, Cham.: 2021). Crossref
  35. L. Ropyak, V. Vytvytskyi, A. Velychkovych, T. Pryhorovska, and M. Shovkoplias, IOP Conf. Ser.: Mater. Sci. Eng., 1018: 012014 (2021). Crossref
  36. V. Kopei, O. Onysko, V. Panchuk, L. Pituley, and I. Schuliar, Advanced Manu-facturing Processes III. InterPartner 2021. Lecture Notes in Mechanical Engi-neering (Ed. V. Tonkonogei) (Springer, Cham.: 2022). Crossref
  37. V. A. Pasichnyk and O. O. Khmurenko, Eastern-European J. Enterprise Tech-nol., 4, No. 7: 15 (2015). Crossref
  38. O. Bazaluk, A. Velychkovych, L. Ropyak, M. Pashechko, T. Pryhorovska, and V. Lozynskyi, Energies, 14, No. 14: 4198 (2021). Crossref
  39. Z. A. Duryahina, S. A. Bespalov, V. Ya. Pidkova, and D. Yu. Polockyj, Metallofiz. Noveishie Tekhnol., 33 (Special Issue): 393 (2011).
  40. Z. A. Duriagina, T. M. Kovbasyuk, and S. A. Bespalov, Usp. Fiz. Met., 17, No. 1: 29 (2016) (in Ukrainian). Crossref
  41. M. O. Vasyliev, B. M. Mordyuk, S. I. Sidorenko, S. M. Voloshko, A. P. Burmak, and M. V. Kindrachuk, Metallofiz. Noveishie Tekhnol., 38, No. 4: 545 (2016) (in Ukrainian). Crossref
  42. L. Y. Ropyak, A. S. Velychkovych, V. S. Vytvytskyi, and M. V. Shovkoplias, J. Phys.: Conference Series, 1741, No. 1: art. No. 012039 (2021). Crossref
  43. I. P. Shatskyi, M. V. Makoviichuk, and A. B. Shcherbii, Mater. Sci., 55: 484 (2020). Crossref
  44. V. B. Tarel’nik, E. V. Konoplyanchenko, P. V. Kosenko, and V. S. Martsinkovskii, Chem. Petrol. Eng., 53: 540 (2017). Crossref
  45. S. I. Kryshtopa, D. Yu. Petryna, I. M. Bogatchuk, I. B. Prun’ko, and V. M. Mel’nyk, Mater. Sci., 53, No. 3: 351 (2017). Crossref
  46. V. B. Tarelnyk, O. P. Gaponova, Ye. V. Konoplianchenko, V. S. Martsynkovskyy, N. V. Tarelnyk, and O. O. Vasylenko, Metallofiz. Noveishie Tekhnol., 41, No. 1: 47 (2019) (in Russian). Crossref
  47. B. N. Mordyuk, V. V. Silberschmidt, G. I. Prokopenko, Y. V. Nesterenko, and M. O. Iefimov, Mater. Characterization, 61 No. 11: 1126 (2010). Crossref
  48. A. Marek, Metalurgija, 61, No. 2: 389 (2022). Crossref
  49. M. Ahmadi, B. Salgın, B. J. Kooi, and Y. Pei, Scr. Mater., 210, art. No. 114453 (2022). Crossref
  50. P. Hasanpour, P. Salehikahrizsangi, K. Raeissi, M. Santamaria, L. Calabrese, and E. Proverbio, Surf. Coat. Technol., 368: 147 (2019). Crossref
  51. K. Abdalla and H. Zuhailawati, Anti-Corrosion Methods and Materials, 68, No. 6: 555 (2021). Crossref
  52. B. Kagajwala, T. D. Hall, M. Inman, E .J. Taylor, B. Griffin, G. Cushnie, R. Taylor, M. Jaworowski, and J. Bonivel, Products Finishing, 1, No. 2 (2013).
  53. L. Ropyak and V. Ostapovych, Eastern-European J. Enterprise Technologies, 2, No. 5: 50 (2016). Crossref
  54. O. Bazaluk, O. Dubei, L. Ropyak, M. Shovkoplias, T. Pryhorovska, and V. Lozynskyi, Energies, 15, No. 1: 83 (2022). Crossref
  55. S. Y. Zhachkin, N. A. Penkov, R. V. Belyaev, and M. V. Kirgintsev, Materials Today: Proceedings, 38: 1760 (2021). Crossref
  56. K. H. Levchuk, T. M. Radchenko, and V. A. Tatarenko, Metallofiz. Noveishie Tekhnol., 43, No. 1: 1 (2021) (in Ukrainian). Crossref
  57. V. A. Tatarenko, T. M. Radchenko, and V. M. Nadutov, Metallofiz. Noveishie Tekhnol., 25, No. 10: 1303 (2003) (in Ukrainian).
  58. T. M. Radchenko, V. A. Tatarenko, H. Zapolsky, and D. Blavette, J. Alloys Compd., 452, No. 1: 122 (2008). Crossref
  59. O. B. Melnick, V. K. Soolshenko, and K. H. Levchuk, Metallofiz. Noveishie Tekhnol., 42, No. 10: 1387 (2020) (in Ukrainian). Crossref
  60. V. Moisyshyn, I. Voyevidko, and V. Tokaruk, Mining of Mineral Deposits, 14, No. 3: 128 (2020). Crossref
  61. K. G. Levchuk, SOCAR Proceedings, No. 2: 23 (2017). Crossref
  62. K. G. Levchuk, Metallofiz. Noveishie Tekhnol., 40, No. 5: 701 (2018) (in Ukrainian). Crossref
  63. O. V. Panevnyk and O. Ya. Dubei, Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu [Scientific Bulletin of the National Girnich University], No. 4: 98 (2015) (in Ukrainian).
  64. D. A. Panevnik and A. S. Velichkovich, Neftyanoe Khozyaystvo—Oil Industry, 2017, No. 1: 70 (2017).
  65. G. Pivnyak, V. Bondarenko, and I. Kovalevs’ka, New Developments in Mining Engineering, Taylor & Francis Group (London: CRC Press: 2015), p. 591. Crossref
  66. A. S. Velichkovich and S. V. Velichkovich, Chemical and Petroleum Engineer-ing, 37, Nos. 3–4: 213 (2001). Crossref
  67. A. Velichkovich, Chem. Petrol. Eng., 41: 544 (2005). Crossref
  68. A. S. Velichkovich, I. I. Popadyuk, and V. M. Shopa, Chem. Petroleum Engi-neering, 46, Nos. 9–10: 518 (2011). Crossref
  69. A. S. Velichkovich and T. M. Dalyak, Chem. Petroleum Engineering, 51: 188 (2015). Crossref
  70. I. P. Shats’kyi, V. M. Shopa, and A. S. Velychkovych, Strength Mater., 53: 277 (2021). Crossref
  71. A. Velychkovych, O. Bedzir, and V. Shopa, Engineering Solid Mechanics, 9, No. 4: 425 (2021). Crossref
  72. V. Moisyshyn and K. Levchuk, Oil Gas Sci. Technol., 72, No. 5: art. No. 27 (2017). Crossref
  73. T. O. Pryhorovska, S. S. Chaplinskiy, and I. O. Kudriavtsev, Petroleum Explo-ration and Development, 42, Iss. 6: 888 (2015). Crossref
  74. I. P. Shatskii, Mater. Sci., 25, No. 2: 160 (1989). Crossref
  75. I. P. Shatskii, J. Appl. Mech. Tech. Phys., 30, No. 5: 828 (1989). Crossref
  76. M. J. Young and C. T. Sun, Int. J. Fract., 55, No 1: 81 (1992). Crossref
  77. I. P. Shatskii, J. Math. Sci., 103, No. 3: 357 (2001). Crossref
  78. I. P. Shats’kyi, Mater. Sci., 41, No. 2: 186 (2005). Crossref
  79. R. Liu, T. Zhang, X. J. Wu, and C. H. Wang, Int. J. Fract., 125, Nos. 3–4: 227 (2004). Crossref
  80. I. P. Shats’kyi and M. V. Makoviichuk, Mater. Sci., 41, No. 4: 486 (2005). Crossref
  81. I. P. Shats’kyi and M. V. Makoviichuk, Strength Mater., 41, No. 5: 560 (2009). Crossref
  82. I. P. Shatskii and N. V. Makoviichuk, J. Appl. Mech. Tech. Phys., 52, No. 3: 464 (2011). Crossref
  83. K. G. Levchuk, V. M. Moisyshyn, and I. V. Tsidylo, Metallofiz. Noveishie Tekhnol., 38, No. 12: 1655 (2016) (in Ukrainian). Crossref
  84. V. Moisyshyn and K. Levchuk, Mining of Mineral Deposits, 10, No. 3: 65 (2016). Crossref
  85. I. P. Shatskii and V. V. Perepichka, J. Appl. Mech. Tech. Phys., 54, No. 6: 1016 (2013). Crossref
  86. E. I. Kryzhanivs’kyi, V. P. Rudko, and I. P. Shats’kyi, Mater. Sci., 40, No. 4: 547 (2004). Crossref
  87. I. P. Shats’kyi and A. B. Struk, Strength Mater., 41, No. 5: 548 (2009). Crossref
  88. A. S. Velychkovych, A. V. Andrusyak, T. O. Pryhorovska, and L. Y. Ropyak, Oil Gas Sci. Technol., 74, art. No. 2019039 (2019). Crossref
  89. I. Shatskyi, I. Vytvytskyi, M. Seniushkovych, and A. Velychkovych, IOP Conf. Series: Materials Science and Engineering, 564, 012073 (2019). Crossref
  90. I. I. Vytvytskyi, M. V. Seniushkovych, and I. P. Shatskyi, Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu [Scientific Bulletin of the National Girnich University], No. 5: 29 (2017) (in Ukrainian).
  91. I. Shatskyi, A. Velychkovych, I. Vytvytskyi, and M. Seniushkovych, Eng. Solid Mech., 7: 355 (2019). Crossref
  92. Y. Wang, C. Qian, L. Kong, Q. Zhou, and J. Gong, Appl. Sci., 10, No. 8: 2669 (2020). Crossref
  93. H. Xu, T. Shi, Z. Zhang, and B. Shi, Mathematical Problems in Engineering, 2014: ID 287076 (2014). Crossref
  94. L. Dong, J. Wang, and X. Zhu, Adv. Mech. Eng., 11, No. 1: 1 (2019). Crossref
  95. T. Tutko, O. Dubei, L. Ropyak, and V. Vytvytskyi, Advances in Design, Simula-tion and Manufacturing IV. DSMIE 2021. Lecture Notes in Mechanical Engi-neering (Ed. V. Ivanov) (Springer, Cham.: 2021), p. 153. Crossref
  96. I. A. Birger and G. B. Iosilevich, Rez’bovye i Flantsevye Soedineniya [Threaded and Flanged Connections] (Moscow: Mechanical Engineering: 1990) (in Russian).
  97. S. P. Timoshenko and S. Voinovsky-Krieger, Plastinki i Obolochki [Plates and Shells] (Moscow: Nauka: 1966) (in Russian).
  98. F. Beer, E. Jonston, J. Dewolf, and D. Mazurek, Mechanics of Materials. 6th Ed. (New York: McGraw-Hill Edication: 2015).
  99. G. Korn and T. Korn, Spravochnik po Matematike dlya Nauchnykh Rabotnikov i Inzhenerov [A Handbook of Mathematics for Scientists and Engineers] (Mos-cow: Nauka: 1970) (in Russian).