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G. A. Terekhov
G. A. Terekhov

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Articles

Article
  • Date submitted
    1985-08-13
  • Date accepted
    1985-10-09

Errors of experimental determination of efficiency of gear mechanisms on stands with closed power flow

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Coefficient of efficiency of gear transmission determines the degree of energy perfection of motion conversion by the mechanism. Energy losses in gears arise as a result of friction between the teeth during their relative movement, friction in shaft supports, in seals, as well as when mixing oil in the gear case and squeezing it out of the depressions between the teeth.

How to cite: Terekhov G.A. Errors of experimental determination of efficiency of gear mechanisms on stands with closed power flow // Journal of Mining Institute. 1986. Vol. 108. p. 32-38.
Article
  • Date submitted
    1982-09-11
  • Date accepted
    1982-11-23

Conclusion of the basic equation of the open thermodynamic system of pneumatic drive

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In open thermodynamic systems, there is thermal and mechanical interaction of the working body with the environment and transfer of the working body through the control surface of the system.

How to cite: Terekhov G.A. Conclusion of the basic equation of the open thermodynamic system of pneumatic drive // Journal of Mining Institute. 1983. Vol. 97. p. 25-29.
Article
  • Date submitted
    1974-07-21
  • Date accepted
    1974-09-15

Differential equation of fluid motion in piston sedimentation machine

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Features of the gravity method of beneficiation of heavy unclassified minerals require intensive water currents at relatively high values of displacements, velocities and accelerations. This determines the application of a mechanical drive for the OMT type stripping machines. ...

How to cite: Bogdanov E.I., Terekhov G.A. Differential equation of fluid motion in piston sedimentation machine // Journal of Mining Institute. 1975. Vol. 69. Iss. 1. p. 65-71.
Article
  • Date submitted
    1974-07-29
  • Date accepted
    1974-09-02

Electronic modeling of liquid motion in piston settling machine of OMT type

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By means of electronic modeling the influence of the size of the gap between the piston and the walls of the machine on the oscillatory motion of the liquid was studied, the maximum overpressures in the chambers of the machine were determined at different values of the gap, velocities and accelerations of the piston. ...

How to cite: Bogdanov E.I., Terekhov G.A. Electronic modeling of liquid motion in piston settling machine of OMT type // Journal of Mining Institute. 1975. Vol. 69. Iss. 1. p. 72-76.
Article
  • Date submitted
    1969-09-06
  • Date accepted
    1969-11-12

Static flow characteristics of distribution devices of pneumatic jackhammers

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Modern methods of calculation of pneumatic hammers are based on the assumption that their working processes are equilibrium, and the mass exchange at filling and emptying of the working cavities of the cylinder occurs in accordance with the regularities of the steady flow of compressed air.

How to cite: Terekhov G.A. Static flow characteristics of distribution devices of pneumatic jackhammers // Journal of Mining Institute. 1970. Vol. 60. Iss. 1. p. 131-139.
Article
  • Date submitted
    1969-09-13
  • Date accepted
    1969-11-21

Relay switching device for electronic model

Article preview

For electronic modeling of working cycles of pneumatic machines a relay switching device (RSD) is developed and used. It serves for changes in switching of the electronic model when solving problems described by different systems of differential equations at separate intervals of variables change.

How to cite: Terekhov G.A. Relay switching device for electronic model // Journal of Mining Institute. 1970. Vol. 60. Iss. 1. p. 207-208.
Article
  • Date submitted
    1961-07-26
  • Date accepted
    1961-09-30

System of differential equations of working process of pneumatic impact machines

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Pneumatic percussion machine is a piston thermal machine in which the potential energy of the working body (compressed air) is cyclically converted into kinetic energy of the piston. The piston (striker) of this machine moves reciprocatingly under the action of compressed air pressure alternately supplied to the cylinder cavities by a special air distribution device. Kinetic energy of the piston is transferred 20 cycle can be determined from the following considerations. Since the working cycle of the pneumatic hammer is closed, the initial state of the dynamic system for each period of the working cycle will be identical to the final state of this system in the previous period.

How to cite: Terekhov G.A. System of differential equations of working process of pneumatic impact machines // Journal of Mining Institute. 1962. Vol. 47. Iss. 1. p. 20-29.
Article
  • Date submitted
    1961-07-14
  • Date accepted
    1961-09-18

Electrical modeling of the working cycle periods of the impact pneumatic machine

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A number of difficulties arise in the theoretical study of working processes of pneumatic impact machines. The complex character of thermodynamic processes occurring in the cylinder of a pneumatic machine causes the introduction of simplifying schematization. On the other hand, the approximate mathematical methods used to solve the system of differential equations of the working process of these machines introduce additional errors in the final result of the study. In this case, it is impossible to separately assess these errors and prove or disprove the correctness of the adopted schematization of physical phenomena.

How to cite: Terekhov G.A., Shkolnikov A.D. Electrical modeling of the working cycle periods of the impact pneumatic machine // Journal of Mining Institute. 1962. Vol. 47. Iss. 1. p. 30-36.