A Study on the Breakdown Mechanism of Rotating Machine Insulation

  • 발행 : 1997.06.01

초록

A lot of experiments and analyses have been done to determine the aging mechanism of mica-epoxy composite material used for large generator stator windings in order to estimate remaining life of the generator for last decades. After degrading artificially the mica-epoxy composite material, the surface analysis is performed to analyze breakdown mechanism of insulation in air and hydrogen atmosphere; i) In the case of air atmosphere, it is observed that an aging propagation from conductor to core by partial discharge effect and the formation of cracks between layers is widely carbonized surface. ii) In case of hydrogen atmosphere, the partial discharge effect is reduced by the hydrogen pressure (4kg/$\textrm{cm}^2$). Potassium ions forming a sheet of mica is replaced by hydrogen ions, which can lead to microcracks. It is confirmed that the sizes of crack by SEM analysis are 10∼20[$\mu\textrm{m}$] in length under air, and 1∼5[$\mu\textrm{m}$] in diameter, 10∼50[$\mu\textrm{m}$] in length under hydrogen atmosphere respectively. The breakdown mechanism of sttor winding insulation materials which are composed of mica-epoxy is analyzed by the component of materials with EDS, SEM techniques. We concluded that the postassium ions of mica components are replaced by H\ulcorner, H$_3$O\ulcorner at boundary area of mica-epoxy and/or mica-mica. It is proposed that through these phenomena, the conductive layers of potassium enable creation of voids and cracks due to thermal, mechanical, electrical and environmental stresses.

키워드

참고문헌

  1. IEEE Trans., Energy Conversion v.5 no.4 A Probabilistic Model for Evaluation of Remanining Life of Electrical Insulation in Rotating Machines J.Anders
  2. Proceeding 18th EEIC Toward Assessing the Remaining Life of Rotating Machine Insulation G.C.Stone
  3. 4Th Int. conf. on Generator and Motor Partial Discharge Testing Use of Partial Discharge Measurements as Stator Bar Acceptance Criteria J.L.Drommi
  4. 5TH, Int. Conf. Dielectric. Estimation of Residual Life in Electrical Insulation H.N.Geeta
  5. IEEE Trans. Power Apparatus and System Accelerated-Frequency Hydrogen-Atmosphere Voltage Endurance Testing of Micaceous Insulation Systems A.M.Breitenstein
  6. Introduction to Ceramics(Second Edition) W.D.Kingery
  7. Introduction to Materials Science for Engineers J.F.Shackelford
  8. IEEE Trans. Dielectric and Electrical Insulation v.2 no.3 The Role of Microscopic Defects in Multistress Aging of Miaceous Insulation K.Kimura
  9. IEEE Trans. Electrical Insulation v.EI-13 no.6 Mechanical Fatigue Characteristics of High Voltage Generator Insulation A.Futakawa
  10. IEEE Trans. on Dielectric and Electrical Insulation v.2 no.5 Ionization and Excitation Behavior in a Microcavity J.P.Novak
  11. IEEE Int. Symposium on Electric Insulation Basic Investigation of a Macroscopic Interface between Two Solid Dielectrics V.Homburg