Výsledky vyhľadávania - "высокие температуры"

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    Relation: Химия и химическая технология в XXI веке : материалы XXII Международной научно-практической конференции студентов и молодых ученых имени выдающихся химиков Л. П. Кулёва и Н. М. Кижнера, посвященной 125-летию со дня основания Томского политехнического университета, Томск, 17-20 мая 2021 г. Т. 1. — Томск, 2021; http://earchive.tpu.ru/handle/11683/66220

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    Zdroj: Eastern-European Journal of Enterprise Technologies; Том 2, № 12 (98) (2019): Materials Science; 35-43
    Восточно-Европейский журнал передовых технологий; Том 2, № 12 (98) (2019): Материаловедение; 35-43
    Східно-Європейський журнал передових технологій; Том 2, № 12 (98) (2019): Матеріалознавство; 35-43

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    Zdroj: Eastern-European Journal of Enterprise Technologies; Том 1, № 12 (97) (2019): Materials Science; 14-20
    Восточно-Европейский журнал передовых технологий; Том 1, № 12 (97) (2019): Материаловедение; 14-20
    Східно-Європейський журнал передових технологій; Том 1, № 12 (97) (2019): Матеріалознавство; 14-20

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    Popis súboru: application/pdf

    Relation: Химия и химическая технология в XXI веке : материалы XXI Международной научно-практической конференции студентов и молодых ученых имени выдающихся химиков Л. П. Кулёва и Н. М. Кижнера, посвященной 110-летию со дня рождения профессора А. Г. Стромберга, 21–24 сентября 2020 г., г. Томск; http://earchive.tpu.ru/handle/11683/63477

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    Zdroj: Culture. Science. Education: modern trends; 114-125 ; Культура. Наука. Образование: современные тренды; 114-125

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    Relation: info:eu-repo/semantics/altIdentifier/isbn/978-5-907313-15-6; https://phsreda.com/e-articles/137/Action137-74629.pdf; Уотерхауз Р.Б. Фреттинг-коррозия. – М.: Машиностроение. 1976. – 272 с.; Голего Н.Л. Фреттинг-коррозия металлов / Н.Л. Голего, А.Я. Алябьев, В.В. Шевеля. – К.: Техника. 1974. – 271 с.; Xianglong Guo. Effects of sliding amplitude and normal load on the fretting wear behavior of alloy 690 tube exposed to high temperature water / Xianglong Guo, Ping Lai, Lichen Tang [et al.] // Tribology International. – 2017. – Vol. 116. – P. 155–163.; Hunicks P.L. Тhe effect of temperature on the fretting wear of mild steel / P.L. Hunicks, K.S. Ashfordt // Proc. Inst. Mech. Eng. – 1969. – Vol. 184. – №3. Р. 165–175.; Kirk А.М. The effect of frequency on both the debris and the development of the tribologically transformed structure during fretting wear of a high strength steel / А.М. Kirk, Р.Н. Shipway, W. Sun // Wear. – 2019. – Vol. 426–427. – P. 694–703.; Zhu M.H. On the mechanisms of various fretting wear modes / M.H. Zhu, Z.R. Zhou // Tribology International. – 2011. – Vol. 44. – №11. – P. 1378–1388.; Ahmadi А. In-situ friction and fretting wear measurements of Inconel 617 at elevated temperatures / А. Ahmadi, F. Sadeghi, S. Shaffer // Wear. – 2018. – Vol. 410–411. – P. 110–118.; Pearson S.R. The effect of temperature on wear and friction of a highstrength steel in fretting / S.R. Pearson, P.H. Shipway, J.O. Abere [et al.] // Wear. – 2013. – Vol. 303. – P. 622–631.; Hagerjr C.H. Effect of high temperature on the characterization of fretting wear regimes at Ti6Al4V interfaces / C.H. Hagerjr, J.H. Sanders, S. Sharma // Wear. – 2006. – Vol. 260. Issues 4–5. – P. 493–508.; Xin L. Wear damage of Alloy 690TT in partial and gross slip fretting regimes at high temperature / L. Xin, B.B. Yang, J. Li [et al.] // Wear. – 2017. – Vol. 390–391. – P. 71–79.; Чжэн Чжан. Fretting friction and wear behavior of spiral wound gasket (SWG) of the sealing surface / Чжэн Чжан, Дэгуо Ван, Яньбао Го // Tribology International. – 2019. – Vol. 133. – Р. 236–245.; Mi Х. Investigation on fretting wear behavior of 690 alloy in water under various temperatures / Х. Mi, Z.B. Cai, X.M. Xiong [et al.] // Tribology International. — 2016. – Vol. 100. – P. 400–409.; Kesavan D. High temperature fretting wear prediction of exhaust valve material / D. Kesavan, Vamshidhar Done, M.R. Sridhar [et al.] // Tribology International. – 2016. – Vol. 100. – P. 280–286.; Zabala A. On the use of the theory of critical distances with mesh control for fretting fatigue lifetime assessment / A. Zabala, D. Infante-Garcí, E. Giner [et al.] // Tribology International. – 2020. – Vol. 142. Article 105985.; Jin X. The role of frictional power dissipation (as a function of frequency) and test temperature on contact temperature and the subsequent wear behaviour in a stainless steel contact in fretting / X. Jin, P.H. Shipway, W. Sun // Wear. – 2015. – Vol. 330–331. – P. 103–111.; O'Halloran S.M. A global-local fretting analysis methodology and design study for the pressure armour layer of dynamic flexible marine risers / S.M. O'Halloran, A.D. Connaire, A.M. Harte // Tribology International. – 2020. – Vol. 142. Article 105967.; Shouyi Sun Fretting fatigue failure behavior of Nickel-based single crystal superalloy dovetail specimen in contact with powder metallurgy pads at high temperature / Sun Shouyi, Li Lei, Yue Zhufeng [et al.] // Tribology International. – 2020. – Vol. 142. – Article 105986.; Zabala А. Critical Analysis of Coefficient of Friction Derivation Methods for Fretting under Gross Slip Regime / А. Zabala, А. Aginagalde, W. Tato [et al.] // Tribology International. – 2020. – Vol. 142. Article 105988.; Kosec G. Weak and strong from meshless methods for linear elastic problem under fretting contact conditions / G. Kosec, J. Slak, М. Depolli [et al.] // Tribology International. – 2019. – Vol. 138. – P. 392–402.; Lorenzo-Martin С. Effect of Al2O3 coating on fretting wear performance of Zr alloy / С. Lorenzo-Martin, O. Ajayi, O. Hartman [et al.] // Wear. – 2019. – Vol. 426–427. – P. 219–227.; Ping Lai. Effect of micro-arc oxidation on fretting wear behavior of zirconium alloy exposed to high temperature water / Ping Lai, Hao Zhang, Lefu Zhang [et al.] // Wear. – 2019. – Vol. 424–425. – P. 53–61.; Blau P.J. A microstructure-based wear model for grid-to-rod fretting of clad nuclear fuel rods // Wear. – 2019. – Vol. 426–427. – P. 750–759.; Hongliang Ming. Effect of normal force on fretting-wear resistance of Inconel 690 TT against 304 stainless steel in simulated secondary pressurized reactor water / Hongliang Ming, Xingchen Liu, Zhiming Zhang [et al.] // Tribology International. – 2018. – Vol. 126. – P. 133–143.; Wade А. Novel numerical method for parameterising fretting contacts / А. Wade, R. Copley, А.А. Omar [et al.] // Tribology International. – 2020. – Vol. 142. Article 105826.; Lavella М. Fretting wear of alloy steels at the blade tip of steam turbines / М. Lavella, D. Botto // Wear. – 2019. – Vol. 426–427. – P. 735–740.; Attia M.H. Effect of mode of motion and process parameters on the prediction of temperaturer in fretting wear / M.H. Attia, N.S. D’Silva // Wear. – 1985. – Vol. 106. – P. 203–224.; Wen J. Transient temperature involving oscillatory heat source with application in fretting contact / J. Wen, M.M. Khonsari // J. Tribol. – 2007. – Vol. 129. – P. 517.; Mengjiao Wang. Interrelated effects of temperature and load on fretting behavior of SAF 2507 super duplex stainless steel / Mengjiao Wang, Yunxia Wang, Hao Liu [et al.] // Tribology International. – 2019. – Vol. 136. – P. 140–147.; Yue Su. Effects of secondary orientation and temperature on the fretting fatigue behaviors of Ni-based single crystal superalloys / Yue Su, Qi-Nan Han, Cheng-Cheng Zhang [et al.] // Tribology International. – 2019. – Vol. 130. – P. 9–18.; Kesavan D. High temperature fretting wear prediction of exhaust valve material / D. Kesavan, V. Done, M.R. Sridhar [et al.] // Tribology International. – 2016. – Vol. 100. – P. 280–286.; Kowalski S. Assessment of the possibility of the application of a CrN+OX multi-layer coating to mitigate the development of fretting wear in a press-fit joint // Wear. – 2018. – Vol. 398–399. – P. 13–21.; Ding H.H. Low-friction study between diamond-like carbon coating and Ti6Al4V under fretting conditions / H.H. Ding, V. Fridrici, J. Geringer // Tribology International. – 2019. – Vol. 135. – P. 368–388.; Barman K. The role of a thermally sprayed CuNiIn underlayer in the durability of a dry-film lubricant system in fretting – A phenomenological model. / K. Barman, P.H. Shipway, K.T. Voisey // Tribology International. – 2018. – Vol. 123. – P. 307–315.; Qiufeng Wang. The influences of several carbon additions on the fretting wear behaviors of UHMWPE composites / Qiufeng Wang, Hongling Wang, Yunxia Wang [et al.] // Tribology International. – 2016. – Vol. 93. – P. 390–398.; Wan-bin Ren. Effects of temperature on fretting corrosion behaviors of gold-plated copper alloy electrical contacts / Wan-bin Ren, Peng Wang, Yinghua Fu // Tribology International. – 2015. – Vol. 83. Article 101976.; Liskiewicz Т. Nano-indentation mapping of fretting-induced surface layers / Т. Liskiewicz, К. Kubiak, Т. Comyn // Tribology International. – 2017. – Vol. 108. – P. 186–193.; Freimanis A.J. The influence of temperature on the wear mode and deterioration of coatings used for titanium aircarft engine components / A.J. Freimanis, A.E. Segall, J.C. Conway // Tribology Transactions. – 2002. – Vol. 45. Issue 2. – P. 193–198.; https://phsreda.com/files/Books/5e96fed30a687.jpeg?req=74629; https://phsreda.com/article/74629/discussion_platform

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    Autori: Sikora, Pawel

    Zdroj: Eastern-European Journal of Enterprise Technologies; Том 5 № 6 (113) (2021): Технології органічних та неорганічних речовин; 62-72
    Eastern-European Journal of Enterprise Technologies; Том 5 № 6 (113) (2021): Технологии органических и неорганических веществ; 62-72
    Eastern-European Journal of Enterprise Technologies; Vol. 5 No. 6 (113) (2021): Technology organic and inorganic substances; 62-72

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    Zdroj: Vestnik of Brest State Technical University; No. 2(125) (2021): Vestnik of Brest State Technical University; 20-23
    Вестник Брестского государственного технического университета; № 2(125) (2021): Вестник Брестского государственного технического университета; 20-23

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    Relation: Проблемы геологии и освоения недр : труды XXIII Международного симпозиума имени академика М. А. Усова студентов и молодых ученых, посвященного 120-летию со дня рождения академика К. И. Сатпаева, 120-летию со дня рождения профессора К. В. Радугина, Томск, 8-12 апреля 2019 г. Т. 2. — Томск, 2019.; http://earchive.tpu.ru/handle/11683/56496

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