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OSCILLATORY VISCOMETERS AND WAYS TO ENHANCE THEM

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The article provides information on measurements of vibration viscosity, related methods and formulas for their calculation. The article also describes devices for measuring vibration viscosity and ways to improve them. Similarities and differences between viscosity-measuring instruments are also listed. The article discusses ways of raising the efficiency of measuring instruments and their expression; factors influencing the efficiency are also shown. Expressions for determining the required parameters and properties of the vibration viscosity measuring device depending on the test design are also given. Development stages of new measurement methods of vibration viscosity measuring instruments and their scheme have been elucidated. In conclusion, it can be said that the vibratory viscosity measuring equipment, which is based on a new design and measurement method, is promising.

AUTHORS

J.Shamuratov

Islom Karimov nomidagi Toshkent davlat texnika universiteti

Tags

# амплитуда# частота# плотность# момент инерции# density# frequency# Chastota# zichlik# amplitude# amplituda# oscillatory viscometers# probe vibrations# the moment of inertia# Newtonian# tebranish qovushqoqlikni o‘lchag# zond tebranishlari# inersiya momenti# nyutoniy# вибрационный вискозиметр# колебания зонда# ньютоний

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References

Belonosov S.M., Chernous K.A. Boundary value problems for the Navier-Stokes equation. Ch. ed. physical.-mat. lit. Moscow, Science, 1985, 312 p.

Belotserkovsky O.M. Numerical modeling in continuum mechanics, Moscow, Physicomathematical literature, 1994, 448 p.

Besekersky V.A., Popov E.P. Theory of automatic control systems. St. Petersburg, Professiya Publishing House, 2003, 752 p.

Biderman V.L. Theory of Mechanical Oscillations. Moscow, Higher. school, 1980, 480 p.

Blekhman I.I. Vibrational mechanics. Moscow, Fizmatlit, 1994, 400 p.

Vorotnikov A. Information devices of robotic systems. Moscow, Publishing house of MSTU, 2005, 384 p.

Geniev G.A., Estrin M.I. Dynamics of plastic and loose media. Moscow, Stroyizdat, 1972, 258 p.

Goncharevich I.F. Vibrorheology in mining. Moscow, Nauka, 1977, 144 p.

Goncharevich I.F., Uriev N.B., Taleysnik M.A. Vibration technology in the food industry. Moscow, Food industry, 1977, 278 p.

Deich M.E., Zaryankin A.E. Hydrodynamics:. Moscow, Energoatomizdat, 1984, 384 p.

Dobronravov V.V., Nikitin N.N. Theoretical mechanics course. Moscow, Higher school, 1983, 575 p.

Emtsev B.T. Technical hydromechanics. Moscow, Mashinostroenie, 1987, 440 p.

Landau L.D., Lifshits E.M. Theoretical Physics. In 10 vol. Hydrodynamics. Moscow, Science. Ch. ed. Phys.-Math. lit., 1988, vol. VI, 736 p.

Belkin I.M., Vinogradov G.V., Leonov A.I. Rotary devices. Moscow, Mashinostroenie, 1968, 272 p.

Abramovich G.N. Applied gas dynamics. Moscow, Gostekhizdat, 1951.

Azarov B.M., Aret V.A. Engineering rheology of food production. Moscow, MTRSHP, 1978, 112 p.

Anderson D., Tannehill J., Pletcher R. Computational fluid mechanics and heat transfer. Moscow, Mir Publ., 1990, vol. 1, 382 p.

Altshul A.D., Kiselev P.G. Hydraulics and Aerodynamics (Fundamentals of Fluid Mechanics). Moscow, Stroyizdat, 1975, 323 p.

Altshul A.D., Zhivotovsky L.S., Ivanov L.P. Hydraulics and aerodynamics. Moscow, Stroyizdat, 1987, 414 p.

Astarita J., Marrucci J. Fundamentals of hydromechanics of non-Newtonian fluids. Moscow, Mir Publ., 1978, 312 p.

Belotserkovsky O.M., Davydov Yu.M. Method of large particles in gas dynamics. Computational experiment. Moscow, Nauka, 1982, 392 p.