BESH O‘QLI RDB TIZIMIDAGI ISSIQLIK YUKLAMALARI VA DEFORMATSIYALARNI HISOBGA OLGAN HOLDA AYLANUVCHI O‘Q KORPUSINING TERMOMEXANIK TAHLILI

Maqolaning Asosiy Qismi

Ataullayev, A.O.
Jo‘rayev, N.N.
Egamberdiyev, I.P.
Yaxshiyev, S.N.

Annotatsiya

Ushbu maqolada besh koordinatali RDB dastgohining burilish uzeli termomexanik holatining sonli tadqiqoti keltirilgan. Chekli elementlar usulidan foydalangan holda issiqlik maydonlari va korpusning yuzaga keladigan deformatsiyalarining bog‘liq tahlili amalga oshirildi. Maksimal qizish zonalari va ularning fazoviy siljishlar kattaligiga ta’siri aniqlandi. Olingan natijalar aylanish o‘qi pozitsion xatoligining shakllanishida issiqlik omillarining hissasini baholash imkonini beradi.

Yuklab olishlar

Yuklab olish ma’lumotlari hali mavjud emas.

Maqola Tafsilotlari

Bo‘lim

Kon-metallurgiya va ishlab chiqarish sanoati

Muallif biografiyalari

Ataullayev, A.O., Navoiy davlat konchilik va texnologiyalar universiteti

PhD, dotsent, Navoiy davlat konchilik va texnologiyalar universiteti, Navoiy, O‘zbekiston

Jo‘rayev, N.N., Navoiy davlat konchilik va texnologiyalar universiteti

PhD, dotsent, Navoiy davlat konchilik va texnologiyalar universiteti, Navoiy, O‘zbekiston

Egamberdiyev, I.P., Navoiy davlat konchilik va texnologiyalar universiteti

DSc, professor, Navoiy davlat konchilik va texnologiyalar universiteti, Navoiy, O‘zbekiston

Yaxshiyev, S.N., Navoiy davlat konchilik va texnologiyalar universiteti

DSc, professor, Navoiy davlat konchilik va texnologiyalar universiteti, Navoiy, O‘zbekiston

Iqtibos keltirish tartibi

Ataullayev, A. O., Jo‘rayev, N. N., Egamberdiyev, I. P., & Yaxshiyev, S. N. (2026). BESH O‘QLI RDB TIZIMIDAGI ISSIQLIK YUKLAMALARI VA DEFORMATSIYALARNI HISOBGA OLGAN HOLDA AYLANUVCHI O‘Q KORPUSINING TERMOMEXANIK TAHLILI. Sanoatda Raqamli Texnologiyalar, 4(2). https://doi.org/10.70769/3030-3214.SRT.4.2.2026.12

Adabiyotlar ro‘yxati

[1] International Organization for Standardization. (2015). ISO 230-7:2015. Test code for machine tools—Part 7: Geometric accuracy of axes of rotation. ISO.

[2] Mayr, J., Jedrzejewski, J., Uhlmann, E., Donmez, A., Knapp, W., Härtig, F., Wendt, K., Moriwaki, T., Shore, P., Schmitt, R., Brecher, C., Würz, T., & Wegener, K. (2012). Thermal issues in machine tools. CIRP Annals, 61(2), 771–791. https://doi.org/10.1016/j.cirp.2012.05.008 DOI: https://doi.org/10.1016/j.cirp.2012.05.008

[3] Gibson, A., & Stein, J. L. (2020). Reduced-order finite element thermal model of a machine tool spindle. Journal of Manufacturing Science and Engineering, 142(4), 041008. https://doi.org/10.1115/1.4045798 DOI: https://doi.org/10.1115/1.4045798

[4] Mayr, J., & Wegener, K. (2012). Thermal errors in machine tools: A review. International Journal of Machine Tools and Manufacture, 62, 1–15.

[5] Ibaraki, S., & Knapp, W. (2012). Indirect measurement of volumetric accuracy in five-axis machine tools. CIRP Annals, 61(2), 729–748. https://doi.org/10.1016/j.cirp.2012.05.050 DOI: https://doi.org/10.20965/ijat.2012.p0110

[6] Gebhardt, M., Knapp, W., & Wegener, K. (2014). Thermal error compensation in machine tools. CIRP Journal of Manufacturing Science and Technology, 7(4), 241–251.

[7] Zimmermann, N., Mayr, J., & Wegener, K. (2023). Self-learning thermal error compensation for five-axis machine tools. CIRP Journal of Manufacturing Science and Technology, 46, 1–16. https://doi.org/10.1016/j.cirpj.2023.01.001 DOI: https://doi.org/10.1016/j.cirpj.2023.07.005

[8] Li, Y., Zhao, W., & Lu, B. (2019). Thermal-mechanical coupling analysis of high-speed optical grinding spindle. International Journal of Precision Engineering and Manufacturing, 20(8), 1325–1335. https://doi.org/10.1007/s12541-019-00147-4 DOI: https://doi.org/10.1007/s12541-019-00147-4

[9] Bryan, J. B. (1990). International status of thermal error research. CIRP Annals, 39(2), 645–656. https://doi.org/10.1016/S0007-8506(07)63001-7 DOI: https://doi.org/10.1016/S0007-8506(07)63001-7

[10] Ramesh, R., Mannan, M. A., & Poo, A. N. (2000). Error compensation in machine tools—A review. International Journal of Machine Tools and Manufacture, 40(9), 1235–1256. https://doi.org/10.1016/S0890-6955(00)00009-2 DOI: https://doi.org/10.1016/S0890-6955(00)00009-2

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