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2012 | 12 | 3 |

Tytuł artykułu

Research of influence of brake device on dynamic properties of electro-pneumatic valve

Treść / Zawartość

Warianty tytułu

RU
Issledovanie vlijanija tormoznogo ustrojjstva na dinamicheskie kharakteristiki ehlektropnevmaticheskogo klapana

Języki publikacji

EN

Abstrakty

EN
The results of mathematical simulation of dynamic processes of opening and closing electro-pneumatic valve and optimization of geometrical parameters of brake device are presented.
RU
Приведены результаты математического моделирования динамических процессов при открытии и закрытии электропневматического клапана и оптими.

Wydawca

-

Rocznik

Tom

12

Numer

3

Opis fizyczny

p.151-154,fig.,ref.

Twórcy

autor
  • Volodymyr Dahl East- Ukrainian National University, Lugansk, Ukraine
autor
autor

Bibliografia

  • 1. Adler Y.P., Markova E.V.,Granovsky Y.V., 1971.: Planningof experiment by looking up of optimal conditions. - M.: Nauka,. - p. 286.
  • 2. Andruxin N.N., Polin L.P., 1971.: To a problem of experimental definition of a flow coefficient in the distribution device pneumatic drive.- Pneumatic drives and control systems. М.: p.236-239.
  • 3. Bundy B. 1988.: Methods of optimization. - M.: Radio i sviaz . - p.128 ..
  • 4. Bogacheva A.V., 1966.:. Pneumatic devices of automatic control systems. M.: Mashinostroenie,.- p.240.
  • 5. Dmitriev V.N., Gradecky V.G., 1973.: A fundamentals of a pneumoautomatics. M.: Mashinostroenie, - p.360.
  • 6. Esin V.I., Nugnov V.I., 1971.: Definition of a drag and flow coefficient in composite pneumatic systems.- Pneumatic drives and control systems. М,: p.230-232.
  • 7. Govorkov V.С., Chalatov Е.М., 1971.: A way of definition of a flow coefficient.-Pneumatic drives and control systems. М.: p.233-236.
  • 8. New ideas in planning of experiment 1969.: / Under red. V.V. Nalimov. - M.: Nauka,. - p.334.
  • 9. Osenin Y.,.Remen V., 2010.: Accuracy increase of positioning of pneumatic drives for mechanical systems. TEKA Commission of Motorization and Power Industry in Agriculture, V XB, p. 95-99.
  • 10. Osenin Y., Remen V., Epifanova O., 2010.: Mathematical model of valve – amplifiers for pneumatic drives of mechanical systems. TEKA Commission of Motorization and Power Industry in Agriculture, V XC, p. 255-260.
  • 11. Popov D.N. 1977.: Dynamics and adjusting of hydraulic and pneumatic systems: Uchebnik dlya mashinostr. VUZoz.-M.: Mashinostroenie, 1977.- p.424
  • 12. Popov D.N., Suliga S.V. 1982.: Bases of calculation and choice of optimum diameters of twocascade membrane pneumatic amplifiers.- Vestnik mashinostr., ,№4,p.7-10
  • 13. Suliga S.V. 1982.: Research of transients in membrane pneumatic amplifier by computer.- Iz.vuzov. Mashinostroenie, , №6,p.53-58.
  • 14. Syomin D., Pavljuchenko V., Maltsev Y., Rogovoy A., Dmitrienko D. 2010.: Vortex mechanical devices in control systems of fluid mediums. // Polish academy of sciences branch in Lublin. TEKA. Commission of motorization and power industry inagriculture. Volume X. TEKA Kom. Mot. Energ.Roln., OL PAN, № 10., 440-445
  • 15. Syomin D., Rogovoy A. 2010.: Power characteristics of superchargers with vortex work chamber // Polish academy of sciences branch in Lublin. TEKA. Commission of motorization and power industry in agriculture. Volume XB. TEKA Kom. Mot. Energ.Roln., OL PAN, № 19., 232-240.
  • 16. Syomіn D.O., Pavlyuchenko V.O., Mal'tsev Y.І., Voytsekhovs'kiY S.V., Rogoviy A.S., Dmitrієnko D.V., Mal'tseva M.O. 2009.: Vortical working devices. Part 1. Uniform working environments: monograph. – Lugansk: V. Dahl EUNU,. – 280 p.
  • 17. Zalmanzon L.A. 1961.: Running elements of pneumatic devices of control and management. it is M.:ÀÍ SSSR.1961.-p.247
  • 18. Zaporozhets V.P. 1976.: Research of expense descriptions of membrane strengtheners for stream sequencing control system .- Stream technique. Theses of lectures VI Mezhdunarod. Conf. Yblonna.M., p.91-95.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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