I have heard good things about your newsletter and how persons interested in
rotary engine performance can share information. I currently have a P-Port
Mazda single rotor and a Rotamax single turbo engines that I have been
dynoing in several off road configurations. The idea of an aircraft
application intrigues me given the power curves available from these
engines.
Thanks and I look forward to my subscription
Bud Westerman
Your in luck Bud. I just came up with an idea to fix the Rotamax.
The problem is charge cooling. This SAE paper by Wankel will explain
what the Rotamax problem was.
There is a lot here based on years of research with charged cooled
rotary engines.
The home made water cooled hollow eccentric
shaft will fix the problem. It is machined in two pieces and welded
together than ground to final dimensions.
---------------------------------------------
Bud, disassemble your Rotamax and if you see any discoloration
in these areas the engine has been run at excessive speeds or
continuous power levels beyond its ability to cool.
The shaft and bearings may be history. If not you are in luck
as you can increase the power and RPM capabilities at relatively
low cost. The current limit to what the engine can be run at IMHO
is about 4000 RPM. The limits the power to weight ratio.
The power out is directly proportional to the RPM so a small
increase in RPM will give you more power. Towards the end
of the Rotamax company they kept backing off on the claimed power
and RPM. I suspect this was typical charge cooling rotary
characteristics learned from various attempts to use it in
aircraft. At that time I was in close touch with an aircraft
company that attempted to use it. By June 2008 the HP was derated
to about 120 HP at 5700 RPM but I suspect that could not
be sustained.
One well known trick to improve charge cooled rotary engines is
to drill holes in the eccentric shaft in the indicated area to
better lube the rotor bearing. I learned this trick about charged
cooled engines too late to help Rotamax.
IMHO and I am guessing here this could increase
the continuous RPM to as much as 6500. That should increase the
continuous power out from around 80 HP to about 100 HP or more.
As I said I am guessing. In any event it will make the engine
more durable.
The second trick is to replace the rotor and main bearing
with expensive silicon nitride roller bearings.
This is the ultimate solution short of water cooling the e-shaft
and should further increase the RPM and continuous power out.
http://www.ceradyne.com/products/industrial/roller-bearings.aspx
Ceradyne, Inc.
3169 Red Hill Avenue
Costa Mesa, CA 92626
USA
Tel: 800-839-2189
Fax: (714) 549-5787
Email:
info@ceradyne.com
Made out of the same stuff the best apex seals are made from.
There is no real reason why a water cooled e-shaft, p-ports and ceramic
bearings would not run to 10,000 RPM and roughly 200 HP in
a Rotamax based engine.
Paul Lamar
--
The Rotary Engine NewsLetter. Powered by Linux.
ACRE NL web site.
http://www.rotaryeng.net
Youtube key word PaulLamar2
Copyright 1998-2010 All world wide rights reserved.