Аннотації

Автор(и):
V.V. Gaidaichuk, L.V. Shevchuk, O.I. Bilobrytska
Автор(и) (англ)
V.V. Gaidaichuk, L.V. Shevchuk, O.I. Bilobrytska
Дата публікації:

27.12.2021

Анотація (укр):

На базі теорії термопружності розглянуто задачу про термонапружений стан двошарового фрагмента мостової конструкції, що складається з металевої основи і асфальтобетонного верхнього шару, в умовах зміни температури навколишнього середовища при різних значеннях коефіцієнтів температурного лінійного розширення шарів. За допомогою методу скінченних елементів побудовані поля температурних напружень, деформацій і переміщень при різних значеннях термомеханічних характеристик шарів. Виконаний аналіз впливу значень термомеханічних параметрів на напружено-деформований стан системи. Показано, що зі збільшенням несумісності цих характеристик інтенсивності напружень і деформацій зростають. Знайдені зони концентрації цих функцій. Рекомендовано при проектуванні мостів для уникнення їх передчасної деструкції використовувати матеріали з близькими значеннями їх термомеханічних параметрів.

Анотація (рус):

Анотація (англ):

The problem of the thermally stressed state of a two-layer fragment of a bridge structure under conditions of a change in the ambient temperature at different values of the coefficients of thermal linear expansion of the layers is considered. Using the finite element method, the fields of thermal stresses, deformations and displacements are constructed for various values of the thermomechanical characteristics of the layers. It is shown that with an increase in the incompatibility of these characteristics, the intensities of stresses and strains increase. The zones of concentration of these functions are found.

Література:

  1. Gulyayev V. I. Termopruzhnyi stan bahatosharovykh dorozhnikh pokryttiv (Thermoelastic state of multilayer road surfaces) / V.I. Gulyayev, V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk // Monohrafiia – K. : NTU, 2018. – 272 с.
  2. Gaydaychuk V.V. Analiz deformuvannia dorozhnoho pokryttia na metalevii plyti pivdennoho mosta (Analysis of the deformation of the road surface on the metal plate of the south bridge) / V.V. Gaydaychuk, V.V. Mozgoviy, O.O. Gustelev, L.V. Shevchuk // Promyslove budivnytstvo ta inzhenerni sporudy. – 2019. – No 1. – P. 31 – 39.
  3. Gaydaychuk V.V. Modeliuvannia napruzheno-deformovanoho stanu konstruktsii dorozhnoho odiahu pid diieiu transportnykh navantazhen (Simulation of stress-strain states of road structures under action of transport loads) / V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk //Opir materialiv i teoriia sporud. – 2017. – V. 99 – P.45 – 57.
  4. Gaydaychuk V.V. Chyselne modeliuvannia termonapruzhenoho stanu sharuvatoho pokryttia avtomobilnoi dorohy (Numerical simulation of the thermal stress state of the layered road surface) / V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk //Opir materialiv i teoriia sporud. – 2017. – V. 98 – P.56 – 73.
  5. Gulyayev V. I. Doslidzhennia termonapruzhenoho stanu konstruktsii dorozhnoho odiahu (Analysis of thermo-stressed state of the road coating structures) / V.I. Gulyayev, V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk // Promyslove budivnytstvo ta inzhenerni sporudy. – 2017. – No 1. – P. 6 – 12.
  6. Gulyayev V. I. Sezonnyi pererozpodil poliv napruzhen v konstruktsiiakh sharuvatykh pokryttiv dorih pid diieiu transportnykh navantazhen (Seasonal redistribution of stress fields in layered road structures under transport load action) / V.I. Gulyayev, L.V. Shevchuk, O. M. Kutsman //Visnyk Natsionalnoho transportnoho universytetu - 2018. - V. 40. − P. 98 − 105.
  7. Dimitrienko Yu.I. Mekhanika kompozitnykh konstruktsii pri vysokikh temperaturakh (Mechanics of composite structures at high temperatures) / Yu.I. Dimitrienko// – Fizmatlit, 2018. – 442p.
  8. Kucher N.K. Prohnozirovanie kharakteristik upruhosti sloistykh odnonapravlennykh uhleplastikov pri povyshennykh temperaturakh (Prediction of the elastic characteristics of unidirectional laminated carbon plastics at elevated temperatures) / N.K. Kucher, R.A. Ryazanov // Visnyk NTUU «KPI», seriia Mashynobuduvannia, 2016. – №3 (78). – P.5-11.
  9. Radovskiy B. Ways to reduce low temperature cracking in Asphalt Pavements. / B. Radovskiy, V. Mozgovoy //In: 4th Eurobitume Symposium, Madrid. – 1989.
  10. Yoder E.J. Principles of pavement design./ E.J. Yoder // – New York. John Wiley & sons, INC. London. Chapman & Hall, Ltd. 1991.
  11. Huliaiev V.I. Thermal Stress State of Layered and Inhomogeneous Pavement / V.I. Huliaiev, V.V. Haidaichuk, O.O. Hustieliev, L.V. Shevchuk // International Applied Mechanics, 2021. – Vol. 57, №1. – P.86-96.
  12. Gaidaichuk V.V. Certain Mechanisms of Thermostress Field Variations in Layered Pavement Structures / V.V. Gaydaychuk, V.V. Mozgoviy, Y. O. Zaets’ // Strength of Materialsthis, 2020. – 52(6). – P. 930–938.
  13. Kovalev Ya. N. Avtomobilnye dorohi (Car roads) / Ya. N. Kovalev //– Minsk: Art Dizain, 2006, 352 с. 
  14. Radovskiy B.S. Problemy mekhaniki dorozhno-stroitelnykh materialov i dorozhnykh odezhd (Problems of mechanics of road building materials and road pavements) / B.S. Radovskiy //– K: Polyhraf Konsaltynh, 2003, 252 p.
  15. Sendecki J. Mekhanyka kompozytnыkh materyalov (Mechanics of composite materials) /J. Sendecki //– T.2.M.: Mir, 1978, 566 p.
  16. Teltaev B.B. Deformatsii y napriazheniia v nezhestkikh konstruktsiiakh dorozhnykh odezhd (Deformations and stresses in non-rigid road pavement structures) /B.B. Teltaev //– Almata: Kazakhskaia akademiia transporta i kommunikatsii im. M.Tynyshbaeva, 1999, 217 p. 
  17. Chang N. Nelineinye sinhuliarno vozmushchennye kraevye zadachi (Nonlinear singularly perturbed boundary value problems) / N. Chang, F. Howes //– M.: Mir, 1988, 247 p.
  18. Bahia H.U. Consideration of strain at failure and strength in prediction of pavement thermal cracking / H.U. Bahia, M. Zeng, K. Nam // J AAPT. – 2000. – 69. – P. 497–535.
  19. Bouldin M.G. Predicting thermal cracking of pavements from binder properties / M.G. Bouldin, R. Dongré, G.M. Rowe, M.J. Sharrock, D.A. Anderson // AAPT. – 2000. – 69. – P. 455–496.
  20. Chen E.Y. Surface loading of a multilayered viscoelastic pavement. / E.Y. Chen, G.E. Pan, T.S. Norfolk, O. Wang //–Road Mat Pav Des 12:849–874 (2011).
  21. Herve Di Benedetto Mechanical tests for bituminous materials. Recent improvements and future prospects / Di Benedetto Herve, Francken Louis // – Proceedings of the Fifth international RILEM Symposium MTBM LYON 97/France/14-16 MAI 1997. – P. 353-355.
  22. Molenaar A.A. Prediction of compressive and tensile strength of asphalt concrete / A.A. Molenaar, N. Li // Int J Pav Res Tech. – 2014. – 7. – P. 324–331.
  23. Mozgoviy V.V. Metodyka proektuvannia asfaltobetonnykh shariv znosu dlia miskykh umov (Методика проектування асфальтобетонних шарів зносу для міських умов) / V.V. Mozgoviy, A.M. Onishchenko, O.S. Riznichenko // Visnyk, 2010. – Chast.1. – P. 46-50.
  24. Mozgoviy V.V. Povyshenie hidroyzoliatsionnoi sposobnosti asfaltobetonnoho pokrytiia (Increasing the waterproofing capacity of asphalt concrete pavement) / V.V. Mozgoviy // Problemy mekhaniki y stroitelstva transportnykh sooruzhenii: Trudy II Mezhdunarodnoi nauchno-prakticheskoi konferentsii.  Almaty– 2015. – 54-60 с.
  25. Kovalenko A. D. Osnovy termoupruhosti (Fundamentals of thermoelasticity) / A.D. Kovalenko //– K: Naukova Dumka, 1970, 239 p.
  26. Novatsky V. Dynamycheskye zadachy termoupruhosty (Dynamic problems of thermoelasticity) / V. Novatsky //– M.: Mir, 1970, 256 p.
  27. Perelmuter A.V. Raschetnye modely sooruzhenyi y vozmozhnost ykh analyza (Calculation models of structures and the possibility of their analysis) / A.V. Perelmuter, V.I. Slivker //– M.: DMK Press, 2007, 600 p.
  

References:

  1. Gulyayev V. I. Termopruzhnyi stan bahatosharovykh dorozhnikh pokryttiv (Thermoelastic state of multilayer road surfaces) / V.I. Gulyayev, V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk // Monohrafiia – K. : NTU, 2018. – 272 с.
  2. Gaydaychuk V.V. Analiz deformuvannia dorozhnoho pokryttia na metalevii plyti pivdennoho mosta (Analysis of the deformation of the road surface on the metal plate of the south bridge) / V.V. Gaydaychuk, V.V. Mozgoviy, O.O. Gustelev, L.V. Shevchuk // Promyslove budivnytstvo ta inzhenerni sporudy. – 2019. – No 1. – P. 31 – 39.
  3. Gaydaychuk V.V. Modeliuvannia napruzheno-deformovanoho stanu konstruktsii dorozhnoho odiahu pid diieiu transportnykh navantazhen (Simulation of stress-strain states of road structures under action of transport loads) / V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk //Opir materialiv i teoriia sporud. – 2017. – V. 99 – P.45 – 57.
  4. Gaydaychuk V.V. Chyselne modeliuvannia termonapruzhenoho stanu sharuvatoho pokryttia avtomobilnoi dorohy (Numerical simulation of the thermal stress state of the layered road surface) / V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk //Opir materialiv i teoriia sporud. – 2017. – V. 98 – P.56 – 73.
  5. Gulyayev V. I. Doslidzhennia termonapruzhenoho stanu konstruktsii dorozhnoho odiahu (Analysis of thermo-stressed state of the road coating structures) / V.I. Gulyayev, V.V. Gaydaychuk, V.V. Mozgoviy, Yu. A. Zaets, L.V. Shevchuk // Promyslove budivnytstvo ta inzhenerni sporudy. – 2017. – No 1. – P. 6 – 12.
  6. Gulyayev V. I. Sezonnyi pererozpodil poliv napruzhen v konstruktsiiakh sharuvatykh pokryttiv dorih pid diieiu transportnykh navantazhen (Seasonal redistribution of stress fields in layered road structures under transport load action) / V.I. Gulyayev, L.V. Shevchuk, O. M. Kutsman //Visnyk Natsionalnoho transportnoho universytetu - 2018. - V. 40. − P. 98 − 105.
  7. Dimitrienko Yu.I. Mekhanika kompozitnykh konstruktsii pri vysokikh temperaturakh (Mechanics of composite structures at high temperatures) / Yu.I. Dimitrienko// – Fizmatlit, 2018. – 442p.
  8. Kucher N.K. Prohnozirovanie kharakteristik upruhosti sloistykh odnonapravlennykh uhleplastikov pri povyshennykh temperaturakh (Prediction of the elastic characteristics of unidirectional laminated carbon plastics at elevated temperatures) / N.K. Kucher, R.A. Ryazanov // Visnyk NTUU «KPI», seriia Mashynobuduvannia, 2016. – №3 (78). – P.5-11.
  9. Radovskiy B. Ways to reduce low temperature cracking in Asphalt Pavements. / B. Radovskiy, V. Mozgovoy //In: 4th Eurobitume Symposium, Madrid. – 1989.
  10. Yoder E.J. Principles of pavement design./ E.J. Yoder // – New York. John Wiley & sons, INC. London. Chapman & Hall, Ltd. 1991.
  11. Huliaiev V.I. Thermal Stress State of Layered and Inhomogeneous Pavement / V.I. Huliaiev, V.V. Haidaichuk, O.O. Hustieliev, L.V. Shevchuk // International Applied Mechanics, 2021. – Vol. 57, №1. – P.86-96.
  12. Gaidaichuk V.V. Certain Mechanisms of Thermostress Field Variations in Layered Pavement Structures / V.V. Gaydaychuk, V.V. Mozgoviy, Y. O. Zaets’ // Strength of Materialsthis, 2020. – 52(6). – P. 930–938.
  13. Kovalev Ya. N. Avtomobilnye dorohi (Car roads) / Ya. N. Kovalev //– Minsk: Art Dizain, 2006, 352 с. 
  14. Radovskiy B.S. Problemy mekhaniki dorozhno-stroitelnykh materialov i dorozhnykh odezhd (Problems of mechanics of road building materials and road pavements) / B.S. Radovskiy //– K: Polyhraf Konsaltynh, 2003, 252 p.
  15. Sendecki J. Mekhanyka kompozytnыkh materyalov (Mechanics of composite materials) /J. Sendecki //– T.2.M.: Mir, 1978, 566 p.
  16. Teltaev B.B. Deformatsii y napriazheniia v nezhestkikh konstruktsiiakh dorozhnykh odezhd (Deformations and stresses in non-rigid road pavement structures) /B.B. Teltaev //– Almata: Kazakhskaia akademiia transporta i kommunikatsii im. M.Tynyshbaeva, 1999, 217 p. 
  17. Chang N. Nelineinye sinhuliarno vozmushchennye kraevye zadachi (Nonlinear singularly perturbed boundary value problems) / N. Chang, F. Howes //– M.: Mir, 1988, 247 p.
  18. Bahia H.U. Consideration of strain at failure and strength in prediction of pavement thermal cracking / H.U. Bahia, M. Zeng, K. Nam // J AAPT. – 2000. – 69. – P. 497–535.
  19. Bouldin M.G. Predicting thermal cracking of pavements from binder properties / M.G. Bouldin, R. Dongré, G.M. Rowe, M.J. Sharrock, D.A. Anderson // AAPT. – 2000. – 69. – P. 455–496.
  20. Chen E.Y. Surface loading of a multilayered viscoelastic pavement. / E.Y. Chen, G.E. Pan, T.S. Norfolk, O. Wang //–Road Mat Pav Des 12:849–874 (2011).
  21. Herve Di Benedetto Mechanical tests for bituminous materials. Recent improvements and future prospects / Di Benedetto Herve, Francken Louis // – Proceedings of the Fifth international RILEM Symposium MTBM LYON 97/France/14-16 MAI 1997. – P. 353-355.
  22. Molenaar A.A. Prediction of compressive and tensile strength of asphalt concrete / A.A. Molenaar, N. Li // Int J Pav Res Tech. – 2014. – 7. – P. 324–331.
  23. Mozgoviy V.V. Metodyka proektuvannia asfaltobetonnykh shariv znosu dlia miskykh umov (Методика проектування асфальтобетонних шарів зносу для міських умов) / V.V. Mozgoviy, A.M. Onishchenko, O.S. Riznichenko // Visnyk, 2010. – Chast.1. – P. 46-50.
  24. Mozgoviy V.V. Povyshenie hidroyzoliatsionnoi sposobnosti asfaltobetonnoho pokrytiia (Increasing the waterproofing capacity of asphalt concrete pavement) / V.V. Mozgoviy // Problemy mekhaniki y stroitelstva transportnykh sooruzhenii: Trudy II Mezhdunarodnoi nauchno-prakticheskoi konferentsii.  Almaty– 2015. – 54-60 с.
  25. Kovalenko A. D. Osnovy termoupruhosti (Fundamentals of thermoelasticity) / A.D. Kovalenko //– K: Naukova Dumka, 1970, 239 p.
  26. Novatsky V. Dynamycheskye zadachy termoupruhosty (Dynamic problems of thermoelasticity) / V. Novatsky //– M.: Mir, 1970, 256 p.
  27. Perelmuter A.V. Raschetnye modely sooruzhenyi y vozmozhnost ykh analyza (Calculation models of structures and the possibility of their analysis) / A.V. Perelmuter, V.I. Slivker //– M.: DMK Press, 2007, 600 p.