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A theoretical investigation of the lateral oscillations of an airplane with free rudder with special reference to the effect of frictionCharts showing the variation in dynamic stability with the rudder hinge-moment characteristics are presented. A stabilizing rudder floating tendency combined with a high degree of aerodynamic balance is shown to lead to oscillations of increasing amplitude. This dynamic instability is increased by viscous-friction in the rudder control system. The presence of solid friction in the rudder control system will cause steady oscillations of constant amplitude if the floating angle of the rudder per unit angle of sideslip is stabilizing and greater than a certain critical value that depends on other airplane parameters, such as vertical-tail area and airplane moment of inertia about the vertical axis. The amplitude of the steady oscillation is proportional to the amount of friction and is generally quite small but increases as the condition of dynamic instability is approached. An approximate method of calculating the amplitudes of the steady oscillation is explained and is illustrated by a numerical example. A more accurate step-by-step calculation of the motion is also made and it is shown that the agreement with the approximate method is good.
Document ID
19930091841
Acquisition Source
Legacy CDMS
Document Type
Other
Authors
Greenberg, Harry
Sternfield, Leonard
Date Acquired
September 6, 2013
Publication Date
January 1, 1943
Report/Patent Number
NACA-TR-762
Report Number: NACA-TR-762
Accession Number
93R21131
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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