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Engineering Bulletin # 10, October 2015
УДК: 531.7:62-27
Medical Robots With Peristaltic Principle Of Movement
Machines and Plants: Design and Exploiting # 01, February 2015
DOI: 10.7463/aplts.0115.0776961
pp. 1-11
Analysis Sawmill Machine Using a Virtual Parametric Model
Engineering Education # 12, December 2014
DOI: 10.7463/1214.0743119
pp. 768-780

Engineering Bulletin # 10, October 2014
УДК: 539.5

Engineering Bulletin # 09, September 2014
УДК: 621.455
Synthesis method for spinning flasks made of composite materials as part of the product life cycle management concept
Engineering Education # 08, August 2012
DOI: 10.7463/0812.0434726
All elements of inconsistencies and contradictions between the stages of production of composite cylinders by method of spinning were considered in detail. It was established that solution of occurring conflicts is possible in the case of unified information approach in accordance with the concept of product life cycle management. The authors propose a technique of creating the proposed system and the example of its work in the special case.
77-30569/234986 Numerical investigation of execution behavior of the reference member and multirip bench with circular translating motion of saw blades
Engineering Education # 10, October 2011
 Dynamic behavior of essentially new log processing equipment – cranked multirip bench with circular translational movement of saw blades was researched. Mathematical models for core element of the bench (saw module) and for system as a whole were created. Motion stability of saw module is analyzed using Floquet-Lyapunov’s method and qualitative research techniques are used for whole system’s motion analysis. The author studied design factors influence on the core element behavior and system as a whole. The author discovered that though the core element (saw module) has nonlinear behavior and certain unstable modes, the system as a whole consisting of six core elements displays mostly linear behavior and is independent of neither the rotation angle nor the angular velocity of drive shaft. The results obtained in this work are included in the author’s methodology for efficient design of essentially new log processing equipment.
 
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