
【国外标准】 Standard Test Method for Gassing of Electrical Insulating Liquids Under Electrical Stress and Ionization (Modified Pirelli Method)
本网站 发布时间:
2024-02-28
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
4.1 For certain applications when insulating liquid is stressed at high voltage gradients, it is desirable to be able to determine the rate of gas evolution or gas absorption under specified test conditions. At present time correlation of such test results with equipment performance is limited.4.2 In this test method, hydrogen (along with low molecular weight hydrocarbons) is generated by ionic bombardment of some insulating liquid molecules and absorbed by chemical reaction with other insulating liquid molecules. The value reported is the net effect of these two competing reactions. The aromatic molecules or unsaturated portions of molecules present in insulating liquids are largely responsible for the hydrogen-absorbing reactions. Both molecule type, as well as concentration, affects the gassing tendency result. Saturated molecules tend to be gas evolving. The relation between aromaticity and quantity of unsaturates of the insulating liquid and gassing tendency is an indirect one and cannot be used for a quantitative assessment of either in the insulating liquid.4.3 This test method measures the tendency of insulating liquids to absorb or evolve gas under conditions of electrical stress and ionization based on the reaction with hydrogen, the predominant gas in the partial discharge. For the test conditions, the activating gas hydrogen, in contrast to other gases, for example, nitrogen, enhances the discrimination of differences in the absorption-evolution patterns exhibited by the insulating liquids. Insulating liquids shown to have gas-absorbing (H2) characteristics in the test have been used to advantage in reducing equipment failures, particularly cables and capacitors. However, the advantage of such insulating liquids in transformers is not well defined and there has been no quantitative relationship established between the gassing tendency as indicated by this test method and the operating performance of the equipment. This test method is not concerned with bubble evolution, which may arise from physical processes associated with super-saturation of gases in oil or water vapor bubbles evolving from wet insulation.1.1 This test method measures the rate at which gas is evolved or absorbed by insulating liquids when subjected to electrical stress of sufficient intensity to cause ionization in cells having specific geometries.1.2 This test method is not concerned with bubbles arising from supersaturation of the insulating liquid.1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of whoever uses this standard to consult and establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. For specific precautions see 5.1.4 and 8.4.
标准号:
ASTM D2300-08(2017)
标准名称:
Standard Test Method for Gassing of Electrical Insulating Liquids Under Electrical Stress and Ionization (Modified Pirelli Method)
英文名称:
Standard Test Method for Gassing of Electrical Insulating Liquids Under Electrical Stress and Ionization (Modified Pirelli Method)标准状态:
Active-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- ASTM E3104-17(2023) Standard Specification for Strippable and Removable Coatings to Mitigate Spread of Radioactive Contamination
- ASTM E3107/E3107M-23 Standard Test Method for Resistance to Penetration and Backface Deformation for Ballistic-resistant Torso Body Armor and Shoot Packs
- ASTM E3111/E3111M-22 Standard Test Methods for Ballistic Resistant Head Protection
- ASTM E3115-17(2023) Standard Guide for Capturing Facial Images for Use with Facial Recognition Systems
- ASTM E3116-23 Standard Test Method for Viscosity Measurement Validation of Rotational Viscometers
- ASTM E3118/E3118M-22 Standard Test Methods to Evaluate Seismic Performance of Suspended Ceiling Systems by Full-Scale Dynamic Testing
- ASTM E3119-19 Standard Test Method for Accelerated Aging of Environmentally Controlled Dynamic Glazing
- ASTM E3120-19 Standard Specification for Evaluating Accelerated Aging Performance of Environmentally Controlled Dynamic Glazings
- ASTM E3121/E3121M-17 Standard Test Methods for Field Testing of Anchors in Concrete or Masonry
- ASTM E3130-21 Standard Guide for Developing Cost-Effective Community Resilience Strategies
- ASTM E3131-17 Standard Specification for Nucleic Acid-Based Systems for Bacterial Pathogen Screening of Suspicious Visible Powders
- ASTM E3132/E3132M-17 Standard Practice for Evaluating Response Robot Logistics: System Configuration
- ASTM E3134-20 Standard Specification for Transportation Tunnel Structural Components and Passive Fire Protection Systems
- ASTM E3137/E3137M-18 Standard Specification for Heat Meter Instrumentation
- ASTM E314-16 Standard Test Methods for Determination of Manganese in Iron Ores by Pyrophosphate Potentiometry and Periodate Spectrophotometry Techniques