Steve, Are you going to design and build
your own helicopter rotor head?
What do you think of this one?
Paul Lamar ...No rotor no motor.
Gee I don't see why helicopter maintenance is so pricey :)
John
Here is almost a complete articulated counter rotating rotor head.
I can see why counter rotating rotor head helicopters are so rare. I still
haven't figured out how to move the forward swash plate yet. I am thinking
Blue Tooth radio controlled :) Four high speed, computer radio controlled,
angular electric servos, one on each blade, would do the trick.
It would vastly simplify this and make fly by radio control a real
reality.
It could also be done with a infra red optical link.
Another possibility is control the swash plates with three servos each.
The servos would not have to be as fast.
Perhaps the control rods can go into the inner shaft for the front
rotor. About the only company in the world that could build this is Kamov.
It is also still laking the lagging and flapping hinges.
I am not dumb enough to try to build one of these :)
Paul Lamar
Kamov has rooms full of guys that analyze and design all that stuff, I
don't. Co-axial designs may have advantages but they have control problems
in auto rotation and even if they are more efficient, it's easier for me,
time and money wise, to put in more power than deal with those other issues.
Steve
For our STOL canard we have little choice as aerodynamic surfaces
have proven to be inadequate for low speed control. Particular in cross
wind take offs and landings. I don't think it is all that practical
to add a tail rotor to our canard.
--
Paul Lamar ...No rotor no motor.
Paul,
All I can say is try it with a large, probably 1/4 scale, model first. I
didn't think of it before, but you might be able to get adequate low speed
control with the canard because it would be so close to the rotor. You
could use a mixer in the control to get roll and pitch which would become
translation and rotation around the z axis when in hover. A forward
vertical surface would allow sideways translation and provide some crash
protection in the event of a horizontal forced landing.
Steve Brazil
Yes that might work but the R&D might be considerable. I am inclined
to stick with stuff that is proven to work. A man needs to know his
limitation's :) I don't have a blimp hangar available for tethered testing.
I am not planning on building one. It is just a design exercise for me.
I might be able to afford a coaxial helicopter if I had help building
it and I could copy something that works. Hiller built a small single
place coaxial years ago.
Paul Lamar ...No rotor no motor.
Here is a small coaxial rotor that has been under development for the last
few years, in Henderson Nevada.
The Airscooter. It looks like they sold a flying RC scale model at one
time but now just sell parts?
http://www.airscooter.com
For low speed lateral control in hover mode landing of the coaxial canard,
maybe just a few properly placed compressed air jets? Kind of like the
little thrusters on the lunar module.
Perry
The Airscooter people have mounted the gear box on a gimbal.
The thrust vector then moves around relative to the CG. There is a U joint
inside the gimbal feeding the power into the gear box. Very clever.
Super simple. Analogous to a hang glider. Only two control rods are
needed. There is no blade pitch adjustment. Climbing and
descending are handled by throttle opening changes. This could work
for our purposes.
The two blades are rigid and pivoted on the top of
the mast to handle leading and lagging blade differential lift or flapping.
Same as most two blade helicopters and the Robinson. This looks build able and
relatively cheap.
In forward flight you could change the thrust vector for some very
interesting maneuvers. You might not need an elevator or rudder :)
If someone builds this STOL canard it could be a stunning break through
in aviation:)
The rotor blades would have be wider and look more like the V22 blades
as the trade off of vertical lift verses tip speed in horizontal flight
is the main problem.
Paul Lamar ...No rotor no motor.
Paul,
Nice toy. With no autorotation and recommended altitude of under 50ft (yea
right) I can imagine a few painful problems.
Doug Fir
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