Preview

Proceedings of the Voronezh State University of Engineering Technologies

Advanced search

MATHEMATICAL MODELLING OF QUAZISTEADY MODE OF BEARING AIR BUFFER FILLING

https://doi.org/10.20914/2310-1202-2014-1-56-62

Abstract

Summary. Today the only way to eliminate contact with the product during the manufacturing process is to provide a support surface under its support surface air buffer layer formed due to the expiration of the working environment through holes perforated gas distribution grids forms. There proposed the method of contactless formation of products consisting of composite materials by the means of air buffer in the article. The results of theoretical and experimental investigations of hydro-gas-dynamic processes occurring when casting of organic- mineral composite material onto the bearing air buffer expressed in the form of mathematical description realizing original hypotheses reflected in the choice of transformation algorithm and limiting conditions are presented. On the base of obtained mathematical model the algorithm of calculation of optimum parameters of transporting systems with discretely powered gas buffer is developed. The method of deduction of a semi-finished product on the gas buffer, which allows to level the pressure field under the bearing surface of the deduction object due to the usage of devices of pseudo fluidized granular material in pneumatic chambers is offered. The application of this method allows to eliminate the possibility of contact between the composite material and the working surface of the equipment and also to reduce the cost of production of pneumatic devices, to improve operational characteristics of this equipment. Submitted depending allowed to develop the methodology and implementation of engineering calculation device for non-contact casting composite materials on air buffer, semi-industrial and industrial variants were created and put into production.

About the Authors

E. D. Chertov
Voronezh state university of engineering technology
Russian Federation
Professor
Department of technical mechanics
phone (473) 255-37-51


M. A. Vasechkin
Voronezh state university of engineering technology
Russian Federation
associate Professor
Department of technical mechanics
phone (473) 255-37-51


E. V. Matveieva
Voronezh state university of engineering technology
Russian Federation
associate Professor
Department of technical mechanics
phone (473) 255-37-51


O. A. Nosov
State Technological University by V.G. Shukhov, Belgorod
Russian Federation
Professor
Department of technological systems, equipment and machinery
phone (472) 230-99-44


References

1. Пат. №2301534, RU, А 23 G 51/03. Устройство для отливки корпусов конфет с оперативным управлением / Носов О.А., Носова Е.В., Васечкин М.А., Павловский М.Ю.; № 2006114232/13; Заявл. 25.04.2006; Опубл. 27.06.2007, Бюл. №18. Nosov O.A, Nosova E.V., Vasechkin M.A., Pavlovskii M.Iu. Ustroistvo dlia otlivki korpusov konfet s operativnym upravleniem [The device for casting of shells for candies with operational management]. Patent RF, no. 2301534, 2007. (In Russ.).

2. Носов О.А., Носова Е.В., Щербаков Д.С., Елисеев О.Н. Автоматизированный участок формования корпусов помадных конфет // Автоматизация и современные технологии. 2005. № 5. С. 9-12. Nosov O.A, Nosova E.V., Shcherbakov D.S., Eliseev O.N. Automated area for formation of shells for fondant candies. Avtomatizatsiia i sovremennye tekhnologii. [Automation and modern technologies], 2005, no. 5, pp. 9-12. (In Russ.).

3. Носов О.А., Матвеева Е.В., Стоянова Н.В. Бесконтактное формование помадных конфет. Воронеж: Изд-во Воронеж. гос. ун-та инж. технол., 2011. 78с. Nosov O.A., Matveyeva E.V., Stoyanova N.V. Beskontaktnoe formovanie pomadnykh konfet [Contactless formation of fondant candies]. Voronezh, Izdatel’stvo VGUIT, 2011. 78 p. (In Russ.).

4. Васечкин М.А., Матвеева Е.В., Проскурин А.В. Моделирование волновых процессов в несущей газовой прослойке // Автоматизация и современные технологии. 2011. № 11. С. 7-10. Vasechkin M.A., Matveeva E.V., Proskurin A.V. Modelling of wave processes in the bearing gas layer. Avtomatizatsiia i sovremennye tekhnologii. [Automation and modern technologies], 2011, no. 11, pp. 7-10. (In Russ.).

5. Афанасьева Н.Ю. Вычислительные и экспериментальные методы научного эксперимента: учеб. пособие для вузов. М.: КНОРУС, 2013. 330 c. Afanasyeva N.Iu. Vychislitel’nye I eksperimental’nye metody nauchnogo eksperimenta [Calculating and experimental methods of scientific experiment], Moscow, KNORUS, 2013. 330 p. (In Russ.).

6. Носов О.А., Васечкин М.А., Рыжкова Е.А. Новый подход к проектированию бесконтактных транспортирующих систем // Автоматизация и современные технологии. 2013. № 3. С. 25-29. Nosov O.A., Vasechkin M.A., Ryzhkova E.A. New approach to design of contactless transporting systems. Avtomatizatsiia i sovremennye tekhnologii. [Automation and modern technologies], 2013, no. 3, pp. 25-29. (In Russ.).


Review

For citations:


Chertov E.D., Vasechkin M.A., Matveieva E.V., Nosov O.A. MATHEMATICAL MODELLING OF QUAZISTEADY MODE OF BEARING AIR BUFFER FILLING. Proceedings of the Voronezh State University of Engineering Technologies. 2014;(1):56-62. (In Russ.) https://doi.org/10.20914/2310-1202-2014-1-56-62

Views: 543


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2226-910X (Print)
ISSN 2310-1202 (Online)