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The Geokhod Bar Working Body With a Diameter of 1.8 m Characteristic Point Determination
Author(s) -
В. И. Аксенов,
Vladimir Yu. Sadovets,
Elena V. Rezanova,
Dmitry А. Pashkov
Publication year - 2019
Publication title -
iop conference series. materials science and engineering
Language(s) - English
Resource type - Journals
eISSN - 1757-899X
pISSN - 1757-8981
DOI - 10.1088/1757-899x/582/1/012020
Subject(s) - bar (unit) , projection (relational algebra) , rotation (mathematics) , point (geometry) , geometry , mathematics , physics , combinatorics , algorithm , meteorology
In the article the geokhod bar working body characteristic point with a graphical method is determined. The research relevance has been considered. The information about the geokhods’ working bodies operating peculiarities is given. For the research objectives and tasks setting the geokhod bar working body characteristic point condition is defined. The 1.8 m diameter geokhod with a bar working body use conditions have been determined.On the ground of the research results the graph of changes of the geohod bar working body cutting force axial projection ( P O.CV ) was constructed depending on the distance x by which the point is remote from the axis of rotation, as well as the geohod bar working body cutting force radial projection ( R IO.CV ) dependence on the range from x to R g ..The geokhod bar working body characteristic point has been foundin a graphical manner, i.e. it is the interception point of graphs of changes in the cutting force axial projection ( P O.CV ) in the range from 0 to x at a distance from the point rotation axis over a distance x and the cutting force radial projection ( R IO.CV ) within the range from x to R g at a distance from the point rotation axis over a distance x .

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