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Improved Silicone Fluids as Candidate Gas Turbine Engine Oils for-40 F to 465F to 465F Temperature Range
Mapping Intimacies
◽
10.21236/ad0767898
◽
1973
◽
Author(s):
George J. Morris
Keyword(s):
Gas Turbine
◽
Gas Turbine Engine
◽
Turbine Engine
◽
Engine Oils
◽
Temperature Range
Download Full-text
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References
Boundary Lubrication RCF Performance of 4 cSt Gas Turbine Engine Oils at 204 °C
Tribology Letters
◽
10.1023/b:tril.0000009722.66339.5e
◽
2004
◽
Vol 16
(1/2)
◽
pp. 123-131
Author(s):
H.K. Trivedi
◽
G.D. Givan
◽
C.S. Saba
Keyword(s):
Gas Turbine
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Boundary Lubrication
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Gas Turbine Engine
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Elastomer: Methyl/Methyl Vinyl Silicone, (MQ/MVQ), High Temperature/Gas Turbine Engine Oil/Phosphate Esther Hydraulic Fluid Resistant, High Strength/High Tear/High Modulus 55 to 65 Type “A” Hardness, for Products in High Temperature Environments/Gas Turbine Engine Oils
10.4271/ams3306d
◽
2019
◽
Author(s):
Keyword(s):
High Temperature
◽
Gas Turbine
◽
High Strength
◽
Gas Turbine Engine
◽
Engine Oil
◽
High Modulus
◽
Turbine Engine
◽
Methyl Vinyl
◽
Engine Oils
◽
High Temperature Gas
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Experimental study of the plasma stabilizer characteristics for low-emission combustion chamber of a gas turbine engine
Collection of Scientific Publications NUS
◽
10.15589/jnn20150312
◽
2016
◽
Vol 0
(3)
◽
Author(s):
Artem V. Kozlovskii
◽
Yevhen Yu. Kirchuk
Keyword(s):
Experimental Study
◽
Combustion Chamber
◽
Gas Turbine
◽
Gas Turbine Engine
◽
Turbine Engine
◽
Low Emission
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THE MATHEMATICAL MODELLING OF THE THREE-DIMENSIONAL NONSTATIONARY NONLINEAR TEMPERATURE FIELDS OF GAS-TURBINE ENGINE BLADES
Proceeding of International Heat Transfer Conference 10
◽
10.1615/ihtc10.2540
◽
1994
◽
Author(s):
V. M. Epifanov
◽
V. Stankiewitcz
Keyword(s):
Mathematical Modelling
◽
Gas Turbine
◽
Three Dimensional
◽
Gas Turbine Engine
◽
Temperature Fields
◽
Turbine Engine
◽
Nonlinear Temperature
Download Full-text
Icing conditions on sea level gas turbine engine test stands
10.2514/6.1982-1237
◽
1982
◽
Author(s):
H. WILLCOCKS
Keyword(s):
Gas Turbine
◽
Sea Level
◽
Gas Turbine Engine
◽
Engine Test
◽
Turbine Engine
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Flexible manufacturing in repair of gas turbine engine components
10.2514/6.1992-3524
◽
1992
◽
Author(s):
KIRK D
◽
ANDREW VAVRECK
◽
ERIC LITTLE
◽
LESLIE JOHNSON
◽
BRETT SAYLOR
Keyword(s):
Gas Turbine
◽
Flexible Manufacturing
◽
Gas Turbine Engine
◽
Turbine Engine
◽
Engine Components
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Fracture of a Compressor Stator Blade in a Gas Turbine Engine
Practical Metallography
◽
10.3139/147.110196
◽
2013
◽
Vol 50
(1)
◽
pp. 43-49
Author(s):
A. Neidel
◽
B. Matijasevic-Lux
Keyword(s):
Gas Turbine
◽
Gas Turbine Engine
◽
Turbine Engine
◽
Stator Blade
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Fretting Fatigue Cracking of an Arresting Feature in a Turbine Disk of a Heavy-Duty Gas Turbine Engine
Practical Metallography
◽
10.3139/147.110348
◽
2018
◽
Vol 55
(1)
◽
pp. 37-46
Author(s):
A. Neidel
◽
M. Giller
◽
S. Riesenbeck
Keyword(s):
Gas Turbine
◽
Fatigue Cracking
◽
Fretting Fatigue
◽
Gas Turbine Engine
◽
Turbine Disk
◽
Heavy Duty
◽
Turbine Engine
◽
Heavy Duty Gas Turbine
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Uncharacteristic Circumferential TMF Cracking in a Heavy-duty Stationary Gas Turbine Engine Burner Outlet
Practical Metallography
◽
10.3139/147.110285
◽
2015
◽
Vol 52
(6)
◽
pp. 334-341
Author(s):
A. Neidel
◽
Th. Ullrich
◽
S. Wallich
Keyword(s):
Gas Turbine
◽
Gas Turbine Engine
◽
Heavy Duty
◽
Turbine Engine
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Probabilistic Rotor Design System (PRDS) -- Gas Turbine Engine Design
10.21236/ada378908
◽
1998
◽
Cited By ~ 1
Author(s):
P. G. Roth
Keyword(s):
Gas Turbine
◽
Gas Turbine Engine
◽
Design System
◽
Turbine Engine
◽
Rotor Design
◽
Engine Design
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