Mailing List flyrotary@lancaironline.net Message #66713
From: Stephen Izett stephen.izett@gmail.com <flyrotary@lancaironline.net>
Subject: Re: [FlyRotary] dynamic balance
Date: Sat, 20 Mar 2021 06:43:49 +0800
To: Rotary motors in aircraft <flyrotary@lancaironline.net>
Thanks Steve

> On 20 Mar 2021, at 6:36 am, Sboese sboese@uwyo.edu <flyrotary@lancaironline.net> wrote:
>
> My method was to add weight to the first bolt until the resultant phase angle coincided with a second bolt 90 degrees from that first bolt. Then weight was added to that second bolt to minimize the overall imbalance.  This was done to avoid the method of trying to add different weights to two bolts at a time.  Either way should eventually work.
>
> The weight added to each of the bolts was 8 grams or less.
>
> Steve Boese
>
>> On Mar 19, 2021, at 3:34 PM, Stephen Izett stephen.izett@gmail.com <flyrotary@lancaironline.net> wrote:
>>
>> So it lined up with one of the rubber damper bolts and you didn't need to distribute the weight across two bolt locations?
>> Thanks for the information Steve.
>> Steve I
>>
>>
>>> On 20 Mar 2021, at 4:38 am, Sboese sboese@uwyo.edu <flyrotary@lancaironline.net> wrote:
>>>
>>> About 8 grams at one corner after the phase angle indicated the light spot was aligned with that corner.
>>>
>>> Steve Boese
>>>
>>> Sent from my iPad
>>>
>>>>> On Mar 19, 2021, at 12:57 AM, Stephen Izett stephen.izett@gmail.com <flyrotary@lancaironline.net> wrote:
>>>>
>>>> ◆ This message was sent from a non-UWYO address. Please exercise caution when clicking links or opening attachments from external sources.
>>>>
>>>>
>>>> Thanks Steve B.
>>>> Do you recall how much weight was required to balance the engine at the flex plate?
>>>> Steve Izett
>>>>
>>>>> On 19 Mar 2021, at 9:40 am, Steven W. Boese SBoese@uwyo.edu <flyrotary@lancaironline.net> wrote:
>>>>>
>>>>> I did not try the procedure described by Finn where a weight was attached at the four cardinal locations.
>>>>>
>>>>> I used a Freescale MMA7260Q eval board as the 3 axis accelerometer, a USB 6009 as an A to D unit and Signalexpress software both from National Instruments, and a laptop computer to collect and process the data.
>>>>>
>>>>> The photo shows the setup for balancing the prop.  The position reference Hall effect sensor was installed on the red mount and clamped to redrive.  The sensor and mount were covered in modeling clay to dampen resonance vibrations possible in this mount.  The Hall effect trigger was attached to the prop flange with double sided tape along with an equal weight attached in the same way 180 degrees from the trigger.  The accelerometer is seen behind the red clamp and was installed in a 1/4” aluminum plate.  This was screwed to a second 1/4” aluminum plate which was bonded to the redrive with epoxy putty.  Before the engine was started, a  “thump test” was performed by striking the accelerometer lightly with a rubber hammer and recording the results in order to verify the stiffness of the accelerometer mount.  The balance was adjusted by adding washers under the screws which attach the spinner to the aft bulkhead and at the angular location indicated by the processed data.  The final balancing weight was in the form of washers, nut, and bolt installed in the aft spinner bulkhead.  This weight took into account the difference in the radius from the center of the prop shaft to the test washers under the spinner screws compared to the radius to the location of the balancing bolt, nut, and washers.
>>>>>
>>>>> The engine was balanced by locating the Hall effect position sensor where it would see a trigger attached to one of the damper plate to flex plate bolts with an equal weight attached to the opposite bolt.  Washers of various weights were installed under two of the bolts until the unbalance phase angle was aligned with one of the four bolts.  Then the weight under that bolt was adjusted until the balance was acceptable.
>>>>>
>>>>> Steve Boese
>>>>> <prop balance setup c.jpg>--
>>>>> Homepage:  http://www.flyrotary.com/
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>>>>
>>>>
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