FIELD: engines and pumps.
SUBSTANCE: rotor axis CPV GTE perform reel-disc, four-gathering on the number of drives design. The shaft is made in three steps. At the first stage, the assembly units, i.e. the shaft front and rear bearing journals, discs and spacers. At the second stage, mentioned unit is assembled to three mounting sections to be coupled to compose the rotor shaft. Every section is a nonseparable structure. In the first section of the pin mounted front support wheels of the first and second stages, the spacer. The second section includes the third stage disc, rear trunnion bearings and spacer. The third section - the fourth stage disc. In the third step section sequentially connected via spacers and complete the installation by attaching the drive of the fourth stage. Discs at all levels include the rim, rolling in the ring blade to the hub. Radius Rg1 the first stage disc of the rotor shaft to the outer surface of the rim to the disc average plane of blade (0.42÷0.61) of radius Rp.ch. peripheral circuit flow part. The exterior surface of the rim discs operate at an angle relative to the generator rotor shaft axis coinciding with the angle forming the internal flow path part. The number and frequency of placement slots for rotor blades of increase in the direction of the working fluid flow from the first drive of the third.
EFFECT: invention allows improved technological parameters of manufacturing CPV needed to increase efficiency and expand the supply of dynamic stability in the full range of modes of operation of the compressor.
19 cl, 2 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD OF PRODUCING A ROTOR SHAFT OF LOW-PRESSURE GAS TURBINE ENGINE COMPRESSOR AND ROTOR SHAFT OF LOW-PRESSURE COMPRESSOR, MADE ACCORDING TO THIS METHOD (VARIANTS) | 2016 |
|
RU2616138C1 |
METHOD FOR PRODUCING A ROTOR SHAFT OF LOW-PRESSURE GAS TURBINE ENGINE COMPRESSOR AND ROTOR SHAFT OF LOW-PRESSURE COMPRESSOR, MADE ACCORDING TO THIS METHOD (VARIANTS) | 2016 |
|
RU2615304C1 |
METHOD OF PRODUCING A ROTOR SHAFT OF LOW-PRESSURE GAS TURBINE ENGINE COMPRESSOR AND ROTOR SHAFT OF LOW-PRESSURE COMPRESSOR, MADE ACCORDING TO THIS METHOD (VERSIONS) | 2016 |
|
RU2616139C1 |
PRODUCTION OF TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) AND TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) | 2014 |
|
RU2573416C2 |
PRODUCTION OF TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) AND TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) | 2014 |
|
RU2573413C2 |
PRODUCTION OF TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) AND TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) | 2014 |
|
RU2573406C2 |
PRODUCTION OF TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) AND TURBOJET ENGINE LOW-PRESSURE COMPRESSOR ROTOR SHAFT (VERSIONS) | 2014 |
|
RU2573419C2 |
ROTOR SHAFT OF LOW PRESSURE COMPRESSOR OF TURBOJET ENGINE | 2014 |
|
RU2565113C1 |
ROTOR SHAFT OF LOW PRESSURE COMPRESSOR OF TURBOJET ENGINE, CONNECTION ASSEMBLY OF ROTOR SHAFT DISKS OF LOW PRESSURE COMPRESSOR OF TURBOJET ENGINE | 2014 |
|
RU2565090C1 |
ROTOR SHAFT OF LOW PRESSURE COMPRESSOR OF TURBOJET ENGINE, CONNECTION ASSEMBLY OF ROTOR SHAFT DISKS OF LOW PRESSURE COMPRESSOR OF TURBOJET ENGINE, SPACER OF CONNECTION ASSEMBLY OF ROTOR SHAFT DISKS OF LOW PRESSURE COMPRESSOR OF TURBOJET ENGINE | 2014 |
|
RU2565133C1 |
Authors
Dates
2017-03-28—Published
2016-05-19—Filed