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UDC 62-8:621.867:004.9

DOI: 10.15507/0236-2910.027.201701.077-092

 

CONVEYOR DRIVE DESIGN IN COMPAS 3D SYSTEM

Mikhail Yu. Rodioshkin
Lecturer of Vocational Education Department, Ruzayevka Institute of Engineering (93 Lenina St., Ruzayevka 431440, Russia), ORCID: http://orcid.org/0000-0002-3745-8643, This email address is being protected from spambots. You need JavaScript enabled to view it.

Lyudmila V. Maslennikova
Professor of Social Studies Department, Ruzayevka Institute of Engineering (93 Lenina St., Ruzayevka 431440, Russia), Dr.Sci. (Pedagogy), ORCID: http://orcid.org/0000-0002-8696-2256, This email address is being protected from spambots. You need JavaScript enabled to view it.

Olga A. Aryukova
Lecturer of Vocational Education Department, Ruzayevka Institute of Engineering (93 Lenina St., Ruzayevka 431440, Russia), Ph.D. (Pedagogy), ORCID: http://orcid.org/0000-0002-1157-1613, This email address is being protected from spambots. You need JavaScript enabled to view it.

Yuliya G. Rodioshkina
Associeted Professor of Social Studies Department, Ruzayevka Institute of Engineering (93 Lenina St., Ruzayevka 431440, Russia), Ph.D. (Pedagogy), ORCID: http://orcid.org/0000-0002-1320-8973, This email address is being protected from spambots. You need JavaScript enabled to view it.

Introduction: Engineers often face problems associated with design and technological preparation of production and with improving the technical documentation quality. These problems can be solved using CAD/CAE/CALS-technology in industrial production. Design engineering products is related to modeling parts and assemblies in 3D CAD graphics, followed by engineering analysis. The authors demonstrate the sequence of the conveyor drive design using COMPAS application libraries.
Materials and Methods: А conveyor drive mechanical transmission was calculated and simulated using COMPAS application libraries. Design calculation and construction of COMPAS 3D model are present in the article.
Results:The authors proposed their method of the conveyor drive design using COMPAS 3D libraries.
Discussion and Conclusions: The method of a 3D conveyor drive model design with the choice of the necessary parameters for design, calculation and simulation of mechanical transmissions as a part of the projected product was developed. The proposed technique allows using the capabilities of modern CAD software for product design related things ensuring time reduction for preparation of production, and promoting economic efficiency.

Keywords: computer-aided design, the conveyor drive, 3D model, mechanical transmission, COMPAS 3D

For citation: Rodioshkin MYu, Maslennikova LV, Aryukova OA, Rodioshkina YuG. Conveyor drive design in COMPAS 3D system. Vestnik Mordovskogo universiteta = Mordovia University Bulletin. 2017; 1(27):77-92. DOI: 10.15507/0236-2910.027.201701.077-092

Contribution of the co-authors: M. Rodioshkin compiled the draft; L. Maslennikova developed a theoretical framework; coordinated activities of the co-authors, and critically revised the manuscript; O. Aryukova took part in writing of the draft; Yu. Rodioshkina wrote the draft, and reviewed the scholarly literature.

All authors have read and approved the final manuscript.

 

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