X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: <13brv3@bellsouth.net> Received: from imf25aec.mail.bellsouth.net ([205.152.59.73] verified) by logan.com (CommuniGate Pro SMTP 4.3.4) with ESMTP id 1009041 for flyrotary@lancaironline.net; Tue, 21 Jun 2005 12:59:56 -0400 Received-SPF: pass receiver=logan.com; client-ip=205.152.59.73; envelope-from=13brv3@bellsouth.net Received: from ibm69aec.bellsouth.net ([65.6.194.9]) by imf25aec.mail.bellsouth.net with ESMTP id <20050621165905.VLYE8692.imf25aec.mail.bellsouth.net@ibm69aec.bellsouth.net> for ; Tue, 21 Jun 2005 12:59:05 -0400 Received: from rd ([65.6.194.9]) by ibm69aec.bellsouth.net with ESMTP id <20050621165901.PJPO13045.ibm69aec.bellsouth.net@rd> for ; Tue, 21 Jun 2005 12:59:01 -0400 From: "Russell Duffy" <13brv3@bellsouth.net> To: "'Rotary motors in aircraft'" Subject: RE: [FlyRotary] Prop balancing Date: Tue, 21 Jun 2005 11:59:00 -0500 Message-ID: <000001c57682$8586d7c0$6101a8c0@rd> MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0001_01C57658.9CB0CFC0" X-Priority: 3 (Normal) X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook, Build 10.0.6626 Importance: Normal In-Reply-To: X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.2527 This is a multi-part message in MIME format. ------=_NextPart_000_0001_01C57658.9CB0CFC0 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0002_01C57658.9CB0CFC0" ------=_NextPart_001_0002_01C57658.9CB0CFC0 Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: quoted-printable What G-force and frequency range are we talking about?=20 =20 See attached chart of acceleration limits. =20 =20 Do you find an RPM of high amplitude and work there.=20 =20 The manual suggests a low cruise setting for the rpm. I'm not sure it matters much, but you need to reproduce the same rpm from one run to the next for best results. =20 =20 What sort of weights do you put on the prop?=20 =20 None. You put the permanent weights on the spinner back plate, but the temporary weights generally go under the spinner attachment screws on = the outside of the spinner. On Lycomings, you can put them on the flywheel, since there are already holes every 30 degrees. =20 =20 I assume placement is amount is trial and error.=20 =20 Yep, no equipment required :-) Kidding. =20 Does this approach work on a three-blade?=20 =20 Absolutely. =20 Any info on how this is done appreciated=20 =20 Using the professional equipment, it's pretty easy. Basically, you set = up one vibration sensor, vertical, as close to the prop hub as you can get (I've got a bracket that clamps to the nose of the redrive). You also = set up an optical tach, with a piece of reflective tape on one blade. Pick = an rpm, and the analyzer tells you what the peak acceleration reading is, = and how many degrees from the tape mark it occurred at. It then suggests a temporary weight that should be attached, and tells you what position to install it. =20 If you think about this, you will realize that the distance the sensor = is from the prop, and the distance the weight is from the center of the = prop hub both make a difference on how much weight is required. The program doesn't know any of these variables up front, and doesn't care. It initially picks a weight that it knows will make a measurable change, = then you install it, and re-run the test. From the change that was made, = using a known weight, the program can now calculate what the real weight = should be to make the change required. Each time, the old weights are removed, = and the new weight is installed where the program suggests =20 The program will continue to work well, even if you don't do exactly = what it says, as long as you are honest, and tell the program what you really = did. For example, if it says put 15 grams at 355 degrees, and you have a = spinner hole at 360, then put 15 grams at 360, and enter that for the actual = weight in the program. If you have a hole at 30 and 60 degrees, and it wants weight at 39 degrees, you can tell it to split the weight, and give it = the two locations you have available. It will then tell you how much weight = to put in each location to make the equivalent weight. Pretty handy. =20 =20 When you get to .06 ips or less, you have to convert the temporary = weights to permanent ones. For that, you measure the radius the temporary = weights are located, and the radius you want to install the permanent weights, = and the program will tell you how much to adjust the weights for the new location. =20 =20 Or maybe Rusty has purchased the professional equipment by now and = wants to rent it out :-).=20 =20 We have vibration analyzers similar to this for measuring site environmental qualifications for MRI scanners, and it takes just a few = trips on the FedEx plane to convert a new piece of equipment to junk. In = other words, there will be no renting, or shipping of equipment, but I can certainly offer a reasonably priced balance job if you bring your = airplane to 2R4. Send all your experimental Lycoming friends too, since those = are simple :-) =20 Cheers, Rusty (fighting Al's font for control) =20 =20 =20 =20 =20 =20 ------=_NextPart_001_0002_01C57658.9CB0CFC0 Content-Type: text/html; charset="us-ascii" Content-Transfer-Encoding: quoted-printable Message
What G-force and = frequency range=20 are we talking about? 
 
See=20 attached chart of acceleration limits. 
 
Do you find an RPM of = high=20 amplitude and work there. 
 
The=20 manual suggests a low cruise setting for the rpm.  I'm not sure it = matters=20 much, but you need to reproduce the same rpm from one run to the next = for best=20 results. 
 
What sort of weights do = you put on=20 the prop? 
 
None.  You put the permanent weights on the spinner = back plate,=20 but the temporary weights generally go under the spinner attachment = screws on=20 the outside of the spinner.  On Lycomings, you can put them=20 on the flywheel, since there are already holes every 30=20 degrees.    
   
I assume placement is = amount is=20 trial and error. 
 
Yep, no equipment=20 required :-)  Kidding.
   
Does this approach work = on a=20 three-blade? 
 
Absolutely.
 
Any info on how this is = done=20 appreciated 
 
Using the=20 professional equipment, it's pretty easy.  Basically, you = set up=20 one vibration sensor, vertical, as close to the prop hub as = you can=20 get (I've got a bracket that clamps to the nose of the redrive).  = You also=20 set up an optical tach, with a piece of reflective tape on one = blade.  Pick=20 an rpm, and the analyzer tells you what the peak acceleration = reading=20 is, and how many degrees from the tape mark it occurred at.  = It then=20 suggests a temporary weight that should be attached, and tells you what = position=20 to install it.
 
If you think=20 about this, you will realize that the distance the sensor is from = the prop,=20 and the distance the weight is from the center of the prop hub = both=20 make a difference on how much weight is required.  The = program doesn't=20 know any of these variables up front, and doesn't care.  It = initially picks=20 a weight that it knows will make a measurable change, then you = install it,=20 and re-run the test.   From the change that was made, = using a=20 known weight, the program can now calculate what the real  = weight=20 should be to make the change required.  Each time, the old = weights are=20 removed, and the new weight is installed where the program=20 suggests
 
The program will=20 continue to work well, even if you don't do exactly what it says, as = long as you=20 are honest, and tell the program what you really did.  For example, = if it=20 says put 15 grams at 355 degrees, and you have a spinner hole at 360, = then put=20 15 grams at 360, and enter that for the actual weight in the=20 program.  If you have a hole at 30 and 60 degrees, and it=20 wants weight at 39 degrees, you can tell it to split the = weight, and=20 give it the two locations you have available.  It will then tell = you how=20 much weight to put in each location to make the equivalent = weight. =20 Pretty handy.  
 
When you get to=20 .06 ips or less, you have to convert the temporary weights to = permanent=20 ones.  For that, you measure the radius the = temporary=20 weights are located, and the radius you want to install the permanent = weights,=20 and the program will tell you how much to adjust the weights for = the new=20 location.    
 
 =20 Or maybe Rusty has = purchased the=20 professional equipment by now and wants to rent it out = J. 
 
 We have=20 vibration analyzers similar to this for measuring site environmental=20 qualifications for MRI scanners, and it takes just a few trips on = the FedEx=20 plane to convert a new piece of equipment to junk.   In other=20 words, there will be no=20 renting, or shipping of equipment, but I can certainly offer a = reasonably priced=20 balance job if you bring your airplane to 2R4.  Send all your = experimental=20 Lycoming friends too, since those are=20 simple :-)
 
Cheers,
Rusty (fighting=20 Al's font for = control)
 
 

 

 

 

 

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