REFLECTOR:Aileron Rigging
Al Gietzen
reflector@tvbf.org
Thu, 18 Dec 2003 17:55:54 -0800
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When I rigged my ailerons, I found it difficult to obtain the equal 2.5"
up and 2.5" down that is called for in the manuals - for my 173 Elite RG
=20
Rigging of the ailerons was a bit of a headache, at least for me, on my
SE RG. Referring to the manual helped =96 and hindered; there is the
version in the manual that I got with the plane, and an improved version
in the new manual; neither of which matched reality. Perhaps my
experience will be helpful to someone who hasn=92t been there yet.=20
=20
My experience was aggravated by having push-pull cables with
insufficient travel, so the first thing is to be certain that your
cables have at least 3=94 of travel; and a little more is better. The
ratio of the length of the bellcrank to the length of the aileron from
the hinge to the back edge is very close to 1.6; meaning that in order
to get the total of 5=94 specified, you=92d really like to have a =
minimum
cable travel of 3 1/8=94. But Velocity specs the cable at 3=94, and =
that
can work because you can gain a bit by the angles between cable and the
bellcrank. =20
=20
As stated in the new manual the important first step is the get the
rigging at the keel bellcrank setup to get full 3=94 travel, and equal =
in
both directions from center. It also says not to change the predrilled
holes in the keel plate for the cable clamp. In my case, these were
mutually exclusive. The cable clamp on the CP side was too close to the
bellcrank, so that even with the rod end threaded fully on (shortest
length) it only allowed about 1 =BC travel to that side. So I had to
re-drill and move the clamp further over. On the other side the angle
of the cable clamp was such that it caused binding of the cable at the
extremes of travel, so that needed to be reworked. My experience may be
unique, but don=92t be surprised if you have to move the clamps. It is
unlikely that you can get full/equal travel in both directions with the
rod ends threaded to the midpoint as suggested.
=20
<A while back, Dave Black pointed out the problem at the keel. One fix
is to build a wide bellcrank at the back of the keel so that the aileron
cables could be attached at a 90 degree approach angle while in the
neutral (centered) condition.>
=20
As has been previously pointed out; the position of the cable clamps
(and configuration of the keel plate) do not result is a 90 degree
approach angle between the cable and the keel bellcrank. This actually
results in slightly larger movement of the aileron, but makes the down
travel of the aileron a bit greater than the up travel. This we don=92t
like; so we compensate the other way at the aileron bellcrank.
=20
The =93old=94 manual says to rig the aileron bellcrank at the wingroot =
10
degrees forward from vertical with ailerons neutral; and adds that the
objective is to get a 90 degree angle (approach angle) between the
push-pull cable and the bellcrank. Of course the angle from =
=93vertical=94
will depend on the point at which you bring the cable through the
firewall; which was not specified; so this isn=92t very meaningful. The
new manual suggests bringing the cable through at about the center of
the spar, at rigging for a 90 degree approach angle at neutral aileron.
This is more definitive.
=20
You can compensate for the approach angle at the keel by using an
approach angle at the aileron greater than 90 degrees to get slightly
more up travel than down travel in the aileron. However, insuring that
you have 2 =BD=94 down is important to good control, and without
compromising on this, the amount of additional up travel that you can
reasonable achieve, I found to be about =BC=94, which is not likely to
noticeably effect affect adverse yaw.
=20
I found that an approach angle of about 100 degrees at neutral aileron
was about the best I could get and still get full down travel. You may
get a little more than that (positioning the cable clamp forward) but
you are limited by the forward travel ability of the bell crank. The
first photo shows the 100 degree position. Another way to rig to get a
good result is to set the aileron at about 1=94 down travel with the =
cable
approach angle of 90 degrees.
=20
Ronnie suggested
The other way is to attach the aileron cable at the wing so that the
approach angle is more than 90 degrees. Mine are attached at about 120
degrees, which results in more up travel than down travel. My Velocity
handles fine at low speeds, with just aileron control, similar to my
Cessna 172. If I need a sharper turn, I'll kick in more rudder, just
like in my 172. But normally, no rudder is needed, all the way down to
the runway. (But I also installed VG's before my first flight, these
also improve low speed aileron control).
=20
Apparently he was measureing a different angle (I=92ll guess the outside
included angle of the bellcrank from horizontal =96 giving 30 degrees
forward from vertical) since 120 degrees approach angle (angle between
cable and bellcrank, as shown in second photo) at neutral aileron would
not allow sufficient forward travel to get full up aileron. I=92d also
guess that the VG=92s are the major factor in decreasing adverse yaw at
low speeds, but have no flight experience to back that up.
=20
You can see that I brought the cables through the firewall more toward
the top of the spar to clear over the coolant connections to the
wing-root radiator; obviously a need specific to my case. (Other
non-standard features you will see there are a wing root extended inward
to accommodate my narrower custom cowl; radiator air exit fairing, and
an aileron fence. Tuft-testing by the guys in the local =93EZ =
squadron=94
indicated the need for that fence, and Rodney Brim has confirmed it=92s
benefit.)
=20
The third photo is full down aileron position. Rigging in this fashion
(vs the 90 degree at neutral) may reduce stick loads just slightly
because you get maximum leverage at a down elevator position where the
loads would be highest.
=20
Disclaimer: None of this is to suggest that you should do anything
different than the manual suggests (well; except where you have to). It
is just my approach, factoring in engineering judgment, analysis (did I
hear over-analysis:), and information gained from the experience of
others; and has not been reviewed by Velocity.
=20
Now; back to those cowl fasteners . . .
=20
Al
=20
=20
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<div>
<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D2 =
face=3D"Times New Roman"><span
style=3D'font-size:10.0pt'>When I rigged my ailerons, I found it =
difficult to
obtain the equal 2.5" up and 2.5" down that is called for in =
the
manuals - for my 173 Elite RG</span></font></p>
<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D3 =
face=3D"Times New Roman"><span
style=3D'font-size:12.0pt'> </span></font></p>
</div>
<div>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>Rigging of the ailerons was a bit =
of a
headache, at least for me, on my SE RG.=A0 Referring to the manual =
helped –
and hindered; there is the version in the manual that I got with the =
plane, and
an improved version in the new manual; neither of which matched =
reality.=A0
Perhaps my experience will be helpful to someone who hasn’t been =
there
yet. </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal style=3D'margin-right:27.6pt'><font size=3D2 =
color=3Dblue
face=3DVerdana><span =
style=3D'font-size:11.0pt;font-family:Verdana;color:blue'>My
experience was aggravated by having push-pull cables with insufficient =
travel,
so the first thing is to be certain that your cables have at least =
3” of
travel; and a little more is better. The ratio of the length of the =
bellcrank
to the length of the aileron from the hinge to the back edge is very =
close to
1.6; meaning that in order to get the total of 5” specified, =
you’d
really like to have a minimum cable travel of 3 1/8”.=A0 But =
Velocity specs
the cable at 3”, and that can work because you can gain a bit by =
the
angles between cable and the bellcrank.=A0=A0 </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>As stated in the new manual the
important first step is the get the rigging at the keel bellcrank setup =
to get
full 3” travel, and equal in both directions from center.=A0 It =
also says
not to change the predrilled holes in the keel plate for the cable =
clamp.=A0 In
my case, these were mutually exclusive.=A0 The cable clamp on the CP =
side was too
close to the bellcrank, so that even with the rod end threaded fully on
(shortest length) it only allowed about 1 =BC travel to that side.=A0 So =
I had to
re-drill and move the clamp further over.=A0 On the other side the angle =
of the
cable clamp was such that it caused binding of the cable at the extremes =
of
travel, so that needed to be reworked.=A0 My experience may be unique, =
but
don’t be surprised if you have to move the clamps.=A0 It is =
unlikely that
you can get full/equal travel in both directions with the rod ends =
threaded to
the midpoint as suggested.</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 face=3D"Times New Roman"><span =
style=3D'font-size:
10.0pt'><A while back, Dave Black pointed out the problem at the =
keel.
One fix is to build a wide bellcrank at the back of the keel so that the
aileron cables could be attached at a 90 degree approach angle while in =
the
neutral (centered) condition.></span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>As has been previously pointed =
out; the
position of the cable clamps (and configuration of the keel plate) do =
not
result is a 90 degree approach angle between the cable and the keel =
bellcrank.=A0
This actually results in slightly larger movement of the aileron, but =
makes the
down travel of the aileron a bit greater than the up travel.=A0 This we
don’t like; so we compensate the other way at the aileron =
bellcrank.</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>The “old” manual says =
to rig
the aileron bellcrank at the wingroot 10 degrees forward from vertical =
with
ailerons neutral; and adds that the objective is to get a 90 degree =
angle
(approach angle) between the push-pull cable and the bellcrank.=A0 Of =
course the
angle from “vertical” will depend on the point at which you =
bring
the cable through the firewall; which was not specified; so this =
isn’t
very meaningful.=A0 The new manual suggests bringing the cable through =
at about
the center of the spar, at rigging for a 90 degree approach angle at =
neutral
aileron. This is more definitive.</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>You can compensate for the =
approach
angle at the keel by using an approach angle at the aileron greater than =
90
degrees to get slightly more up travel than down travel in the aileron.
However, insuring that you have 2 =BD” down is important to good =
control,
and without compromising on this, the amount of additional up travel =
that you
can reasonable achieve, I found to be about =BC”, which is not =
likely to
noticeably effect affect adverse yaw.</span></font></p>
<p class=3DMsoNormal><font size=3D3 face=3D"Times New Roman"><span =
style=3D'font-size:
12.0pt'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>I found that an approach angle of =
about
100 degrees at neutral aileron was about the best I could get and still =
get
full down travel.=A0 You may get a little more than that (positioning =
the cable
clamp forward) but you are limited by the forward travel ability of the =
bell
crank.=A0 The first photo shows the 100 degree position.=A0 Another way =
to rig to
get a good result is to set the aileron at about 1” down travel =
with the
cable approach angle of 90 degrees.</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D2 =
color=3Dblue
face=3DVerdana><span =
style=3D'font-size:11.0pt;font-family:Verdana;color:blue'>Ronnie
suggested</span></font></p>
<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D2 =
color=3Dblue
face=3DVerdana><span =
style=3D'font-size:11.0pt;font-family:Verdana;color:blue'>=A0</span></fon=
t><font
size=3D2><span style=3D'font-size:10.0pt'>The other way is to attach the =
aileron
cable at the wing so that the approach angle is more than 90 =
degrees.
Mine are attached at about 120 degrees, which results in more up travel =
than
down travel. My Velocity handles fine at low speeds, with just =
aileron
control, similar to my Cessna 172. If I need a =
sharper turn,
I'll kick in more rudder, just like in my 172. But normally, no =
rudder is
needed, all the way down to the runway. (But I also installed VG's =
before
my first flight, these also improve low speed aileron =
control).</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>Apparently he was measureing a =
different
angle (I’ll guess the outside included angle of the bellcrank from
horizontal – giving 30 degrees forward from vertical) since 120 =
degrees
approach angle (angle between cable and bellcrank, as shown in second =
photo) at
neutral aileron would not allow sufficient forward travel to get full up
aileron.=A0 I’d also guess that the VG’s are the major =
factor in
decreasing adverse yaw at low speeds, but have no flight experience to =
back
that up.</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>You can see that I brought the =
cables
through the firewall more toward the top of the spar to clear over the =
coolant
connections to the wing-root radiator; obviously a need specific to my =
case.
(Other non-standard features you will see there are a wing root extended =
inward
to accommodate my narrower custom cowl; radiator air exit fairing, and =
an
aileron fence. Tuft-testing by the guys in the local “EZ =
squadron”
indicated the need for that fence, and Rodney Brim has confirmed =
it’s
benefit.)</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>The third photo is full down =
aileron
position.=A0 Rigging in this fashion (vs the 90 degree at neutral) may =
reduce
stick loads just slightly because you get maximum leverage at a down =
elevator
position where the loads would be highest.</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>Disclaimer: None of this is to =
suggest
that you should do anything different than the manual suggests (well; =
except
where you have to).=A0 It is just my approach, factoring in engineering =
judgment,
analysis (did I hear over-analysis:), and information gained from the
experience of others; and has not been reviewed by =
Velocity.</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>Now; back to those cowl fasteners =
. . .</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'>Al</span></font></p>
<p class=3DMsoNormal><font size=3D2 color=3Dblue face=3DVerdana><span =
style=3D'font-size:
11.0pt;font-family:Verdana;color:blue'> </span></font></p>
<p class=3DMsoNormal style=3D'margin-left:.5in'><font size=3D2 =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana'>=A0</span></font></p>
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