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Flight Controls
Citation Bravo
Developed for Training Purposes
5E-13
March 2009
Secondary
Flight
Controls
The secondary flight controls consist
of wing flaps and speedbrakes.
Flaps
The flaps on the trailing edge of each
wing inboard of the ailerons increase
the lift of the wing when they are par-
tially extended. When they are fully
extended (
Figure 5E-12
), they
increase drag to help reduce speed.
The flaps are mechanically controlled
and electrically actuated by two
geared DC motors connected in par-
allel. The parallel system is so
designed to preclude the possibility of
a split flap condition. Full flap travel
is from 0° to 40°; selected positions
are UP (0°), T.O. & APPR (15°), and
LAND (40°). Full extension occurs
within seven seconds; full retraction
from 40° takes six seconds. The flap
lever is on the center control pedestal
to the right of the throttles.
The flap preselect system consists of
the PRESELECT lever and a pointer
assembly on the control pedestal. The
pointer moves along a slot next to the
flap lever to indicate the actual flap
position. In addition, the pointer
removes electrical power from the
actuation system once the flaps reach
the preselect position. A flap preselect
cable under the cabin floor attaches to
the preselect assembly. Components
that control the flap actuation system
include the up and down position
switches and an arm and cam unit.
Moving the flap lever closes a
microswitch that activates the two
motors and selects the direction of
travel. When the flaps reach the pre-
selected position, the microswitch
opens to deactivate the motors.
Detents are provided only at the 15°
(T.O. & APPR) and 40° (LAND)
positions on the flap lever (
Figure
5E-13
). The 0° (LAND or UP) flap
positions are reached by pushing
down on the flap lever when passing
through the T.O. & APPR detente.
Any time the flaps are selected past
the T.O. & APPR position and the
gear is not down and locked, a gear
warning horn sounds that cannot be
silenced with the HORN SILENCE
button. The condition causing the
horn to sound must be corrected.
Speedbrakes
The hydraulically actuated and elec-
trically controlled speedbrakes (
Fig-
ure 5E-14
,
following page) provide
increased descent rates without
exceeding maximum operating
speeds (i.e., V
MO
/M
MO
) along with
spoiling lift and increasing drag dur-
ing the landing roll. The angular
travel for the speedbrake panels are
58 ± 2°; the lower speedbrake panels
close with the upper panels. The
speedbrakes are on the upper and
lower surface of each wing forward
of the flaps. Mechanical ball studs
and two spring retainers (
Figure 5E-
15
,
following page) hold the lower
speedbrake panels up.
5E-12
5E-13
Flap Limitations
Flaps extended speeds
(V
FE
) – T.O. & APPR
15°. . . . . . . . . . . . . . . . . . 200 KIAS
LAND, 40° . . . . . . . . . . . 174 KIAS
Содержание Citation Bravo
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Страница 547: ...Fuel System Citation Bravo Developed for Training Purposes 5F 5 September 2005 ...
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Страница 598: ...5I 2 Developed for Training Purposes Citation Bravo September 2005 CAE SimuFlite ...
Страница 601: ...Landing Gear Citation Bravo Developed for Training Purposes 5I 5 September 2005 CAE SimuFlite Landing Gear System 5I 6 ...
Страница 611: ...Landing Gear Citation Bravo Developed for Training Purposes 5I 15 September 2005 CAE SimuFlite Brake System 5I 16 ...
Страница 622: ...CAE SimuFlite 5J 2 Developed for Training Purposes Citation Bravo March 2009 ...
Страница 625: ...Miscellaneous Citation Bravo Developed for Training Purposes 5J 5 March 2009 CAE SimuFlite Thrust Reverser System 5J 6 ...
Страница 626: ...5J 6 Developed for Training Purposes Citation Bravo March 2009 CAE SimuFlite Thrust Reverser System Schematic ...
Страница 643: ...Miscellaneous Citation Bravo Developed for Training Purposes 5J 23 March 2009 CAE SimuFlite Annunciator Panels 5J 24 ...
Страница 652: ...CAE SimuFlite 5J 32 Developed for Training Purposes Citation Bravo March 2009 ...
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