IEC 60034-18-34:2000
Rotating electrical machine - Functional evaluation of insulation systems - Test procedures for form-wound windings - Evaluation of thermomechanical endurance of insulation systems

Standard No.
IEC 60034-18-34:2000
Release Date
2000
Published By
International Electrotechnical Commission (IEC)
Status
 2012-06
Replace By
IEC 60034-18-34:2012
Latest
IEC 60034-18-34:2012
Scope
This standard specifies test procedures for the evaluation of the thermomechanical durability of formed winding insulation structures. In this assessment, it is recommended to compare the performance of the insulation structure to be evaluated with a benchmark insulation structure proven by operating experience.

IEC 60034-18-34:2000 Referenced Document

  • GB 755-2000 Rotating electrical machines-Rating and performance*2000-01-03 Update
  • GB/T 1408.1-1999 Methods of test for electric strength of solid insulating materials Tests at power frequencies
  • GB/T 17948-2003 Functional Evaluation of Insulation systems for rotating electrical machines-General guidelines*2003-10-09 Update
  • GB/T 17948.4-2006 Functional evaluation of insulation systems for rotating electrical machines.Test procedures for form-wound windings.Elactrical evaluation of insulation systems used in machines up to and including 50MVA and 15kV*2006-03-14 Update
  • GB/T 7354-2003 Partial discharge measurements*2003-10-09 Update
  • JB/T 10098-2000 Impulse voltage withstand levels of rotating a.c. machines with form-wound stator soils*2000-11-29 Update
  • JB/T 7608-1994 Test method and limit value of dielectric loss tangent of high voltage AC motor coil

IEC 60034-18-34:2000 history

  • 2012 IEC 60034-18-34:2012 Rotating electrical machines. Part 18-34: Functional evaluation of insulation systems. Test procedures for form-wound windings. Evaluation of thermomechanical endurance of insulation systems
  • 2000 IEC 60034-18-34:2000 Rotating electrical machine - Functional evaluation of insulation systems - Test procedures for form-wound windings - Evaluation of thermomechanical endurance of insulation systems



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