• Twin, triple blades
  • Twin, triple blades
  • Twin, triple blades
  • Twin, triple blades
  • Twin, triple blades
  • Twin, triple blades
Twin, triple blades
Twin, triple blades
Twin, triple blades
Twin, triple blades
Twin, triple blades
Twin, triple blades
+

Twin, triple blades

3-Blade Cluster (Industry term: Triple-Blade Cluster for Governing Stage) is a grouped rotor blade structure for the High Pressure (HP) Governing Stage of steam turbines.   Each group consists of 3 blade bodies, matching with 3 fork-roots and integral shrouds.  

Product detail

3-Blade Cluster (Industry term: Triple-Blade Cluster for Governing Stage) is a grouped rotor blade structure for the High Pressure (HP) Governing Stage of steam turbines.   Each group consists of 3 blade bodies, matching with 3 fork-roots and integral shrouds.  

They are assembled circumferentially along the rotor and connected via the shroud / Damping Block to form a full circle, achieving flow regulation and efficient work.

 

Application

HP Governing Stage of large steam turbines. Particularly suitable for units requiring frequent Frequency Modulation and handling large load fluctuations, such as 300MW and above thermal power units.

Twin, triple blades


3-Blade Cluster (Industry term: Triple-Blade Cluster for Governing Stage) is a grouped rotor blade structure for the High Pressure (HP) Governing Stage of steam turbines.   Each group consists of 3 blade bodies, matching with 3 fork-roots and integral shrouds.  
Keyword: Twin, triple blades
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  • Product detail

    3-Blade Cluster (Industry term: Triple-Blade Cluster for Governing Stage) is a grouped rotor blade structure for the High Pressure (HP) Governing Stage of steam turbines.   Each group consists of 3 blade bodies, matching with 3 fork-roots and integral shrouds.  

    They are assembled circumferentially along the rotor and connected via the shroud / Damping Block to form a full circle, achieving flow regulation and efficient work.

     

    Application

    HP Governing Stage of large steam turbines. Particularly suitable for units requiring frequent Frequency Modulation and handling large load fluctuations, such as 300MW and above thermal power units.

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