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www.T-Science.org       p-ISSN 2308-4944 (print)       e-ISSN 2409-0085 (online)
SOI: 1.1/TAS         DOI: 10.15863/TAS

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ISJ Theoretical & Applied Science 04(36) 2016

ISPC Global Science, Lancaster, USA

* Scientific Article * Impact Factor 6.630


Baubekov SD, Nemerebayev M, Bekmuratov MM, Taukebayeva KS, Karymsakov NS, Orynbaev SA

TO DEFINE THE PARAMETERS OF NEW AUTOMATED MACHINES FOR CONTOURING.

Full Article: PDF

Scientific Object Identifier: http://s-o-i.org/1.1/TAS-04-36-10

DOI: http://dx.doi.org/10.15863/TAS.2016.04.36.10

Language: Russian

Citation: Baubekov SD, Nemerebayev M, Bekmuratov MM, Taukebayeva KS, Karymsakov NS, Orynbaev SA (2016) TO DEFINE THE PARAMETERS OF NEW AUTOMATED MACHINES FOR CONTOURING. ISJ Theoretical & Applied Science, 04 (36): 69-75. Soi: http://s-o-i.org/1.1/TAS-04-36-10 Doi: http://dx.doi.org/10.15863/TAS.2016.04.36.10

Pages: 69-75

Published: 30.04.2016

Abstract: The work relates to mechanical engineering and automations dedicated for contour machining of products of light industry. The authors offers a new way contour machining of light industry products and device for its realization, where in the process of performing contour machining of different curvature, the device automatically adjusts itself to changes in curvature of the contour and enforces an equidistant lines, at the expense of friction-transport-orienting device (FTOD). Distinctive features of this device is the simplicity of the design, as the device samoustraniajutsia, changing the magnitude and modules curvature reacts automatically, i.e. without need for management, therefore, is reliable in operation and flexible technology. The study aims to explore performance and determine the main parameters of the new device. The paper presents the results of a study of technological capabilities, FTOD and ways of their extension.

Key words: mechanical engineering; automation of contour processing; light industry; equidistantly line; a friction-transport-orienting device (FTOD); the process orientation; the apparatus and method of processing; sewing machine.


 

 

 

 

 

 

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