The dynamics of the drum mower blade

Bartoň, Stanislav

  • Programs and Algorithms of Numerical Mathematics, Publisher: Institute of Mathematics CAS(Prague), page 7-14

Abstract

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The drum mower blade is freely rotatable around the fastening pin. During the operation of the mower, the centrifugal force and the resistance of the mowing material act on it. The presented article studies the effect of these forces on the behavior of the blade, in particular its oscillation around the steady state, depending on the properties of the cut material.

How to cite

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Bartoň, Stanislav. "The dynamics of the drum mower blade." Programs and Algorithms of Numerical Mathematics. Prague: Institute of Mathematics CAS, 2019. 7-14. <http://eudml.org/doc/294917>.

@inProceedings{Bartoň2019,
abstract = {The drum mower blade is freely rotatable around the fastening pin. During the operation of the mower, the centrifugal force and the resistance of the mowing material act on it. The presented article studies the effect of these forces on the behavior of the blade, in particular its oscillation around the steady state, depending on the properties of the cut material.},
author = {Bartoň, Stanislav},
booktitle = {Programs and Algorithms of Numerical Mathematics},
keywords = {momentum of force; momentum of inertia; nonlinear differential equation; Maple},
location = {Prague},
pages = {7-14},
publisher = {Institute of Mathematics CAS},
title = {The dynamics of the drum mower blade},
url = {http://eudml.org/doc/294917},
year = {2019},
}

TY - CLSWK
AU - Bartoň, Stanislav
TI - The dynamics of the drum mower blade
T2 - Programs and Algorithms of Numerical Mathematics
PY - 2019
CY - Prague
PB - Institute of Mathematics CAS
SP - 7
EP - 14
AB - The drum mower blade is freely rotatable around the fastening pin. During the operation of the mower, the centrifugal force and the resistance of the mowing material act on it. The presented article studies the effect of these forces on the behavior of the blade, in particular its oscillation around the steady state, depending on the properties of the cut material.
KW - momentum of force; momentum of inertia; nonlinear differential equation; Maple
UR - http://eudml.org/doc/294917
ER -

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