1 preliminary test results for the modified* philtec d63 optical probe for use as a high speed time...
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![Page 1: 1 Preliminary Test Results for the Modified* Philtec D63 Optical Probe for use as a High Speed Time of Arrival (TOA) Probe John J Jagodnik Project Engineer](https://reader036.vdocuments.us/reader036/viewer/2022070415/56649e4e5503460f94b449fc/html5/thumbnails/1.jpg)
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Preliminary Test Results for the Modified* Philtec D63 Optical Probe for use as a High
Speed Time of Arrival (TOA) Probe
John J Jagodnik
Project EngineerMechanical Solutions, Inc.11 Apollo DriveWhippany, NJ 07981(973) 326-9920 [email protected]
4/16/2009
![Page 2: 1 Preliminary Test Results for the Modified* Philtec D63 Optical Probe for use as a High Speed Time of Arrival (TOA) Probe John J Jagodnik Project Engineer](https://reader036.vdocuments.us/reader036/viewer/2022070415/56649e4e5503460f94b449fc/html5/thumbnails/2.jpg)
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MSI’s Compressor Test Rig
• MSI tested the 2 MHz bandwidth D63 optical probe on our in house high speed compressor test rig.
• The compressor test rig uses a small axial blisk from a 2 stage LTS101 Turboshaft Engine.
![Page 3: 1 Preliminary Test Results for the Modified* Philtec D63 Optical Probe for use as a High Speed Time of Arrival (TOA) Probe John J Jagodnik Project Engineer](https://reader036.vdocuments.us/reader036/viewer/2022070415/56649e4e5503460f94b449fc/html5/thumbnails/3.jpg)
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MSI’s Compressor Test Rig
• MSI’s compressor test rig includes:
• A shaker to excite blade modes
• Instrumented shroud
• Telemetry to simultaneously monitor strain on 2 blades
• A variable speed electric motor
Shaker
Shroud Telemetry Variable Speed
Motor
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MSI’s Compressor Test Rig
• The Philtec D63 Probe was attached to the shroud and pointed radially inward at the blade tips.
• The time of arrival (TOA) of each blade was recorded using an 80 MHz NI counter timer card.
![Page 5: 1 Preliminary Test Results for the Modified* Philtec D63 Optical Probe for use as a High Speed Time of Arrival (TOA) Probe John J Jagodnik Project Engineer](https://reader036.vdocuments.us/reader036/viewer/2022070415/56649e4e5503460f94b449fc/html5/thumbnails/5.jpg)
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Vibrating Blade Test Results
1500 RPM Blades 1 and 10 Vibrating
0.00E+00
5.00E-07
1.00E-06
1.50E-06
2.00E-06
2.50E-06
3.00E-06
3.50E-06
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24
Blade Number
ST
DE
V o
f ex
pec
ted
Arr
ival
Tim
e (s
ec)
• While spinning at 1500 RPM, the shaker was activated at the first bending frequency of Blade 10.
• This resulted in higher non-synchronous vibration levels on Blade 10 (Blade 1 also demonstrated higher vibration levels).
• All other blades (which have higher first bending frequencies) vibrated at significantly lower levels.
• A larger standard deviation of the expected arrival time was observed for the vibrating blades.
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Non Vibrating Blade Test Results
2000 RPM No Vibration
0.00E+00
5.00E-07
1.00E-06
1.50E-06
2.00E-06
2.50E-06
3.00E-06
3.50E-06
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24
Blade Number
ST
DE
V o
f E
xpec
ted
Arr
ival
Tim
e (s
ec)
• A test was then conducted spinning at 2000 RPM with no shaker excitation.
• This resulted in low vibration levels for each blade.
• No variations in the standard deviation of the expected arrival time were observed, indicating that no blades were significantly vibrating.
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Deviation from the Expected Arrival Time vs. Rotation Number
• The blade vibration can be detected directly from the deviation in expected arrival time curves for each blade.
• The graph on the left demonstrates that for rotations 10-50, Blade 2 (low vibration levels) has only small deviations from the 24 Blade average deviation (representative of average rotational speed fluctuation).
• The graph on the right demonstrates that for rotations 10-50, Blade 10 (high vibration levels) has large deviations from the 24 Blade average deviation.
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Future Work
• MSI has ordered two D63 optical probes with modified amplifiers for higher slew rates.
• One probe will be used as a once per rev, monitoring a shaft keyway near the blades.
• The second probe will monitor blade time of arrival.
• The combined 2 probe method will be used to separate out arrival time variations caused by fluctuations in shaft rotational speed.