Ageing phenomena of current pass blades in high voltage disconnector switch

Edwiin
02/11/2025

This failure mode has three primary origins:

  1. Electrical Causes: The switching of currents, such as loop currents, can lead to localized wear. At higher currents, an electric arc may burn at a specific spot, increasing the local resistance. As more switching operations occur, the contact surface wears down further, causing an increase in resistance.

  2. Mechanical Causes: Vibrations, often due to wind, are the main contributors to mechanical aging. These vibrations cause abrasion over time, leading to material wear and potential failure.

  3. Environmental Causes: Corrosion plays a significant role, affecting materials like aluminum, copper, and steel through oxidation. This environmental stress factor can significantly deteriorate components.

An image illustrating a deteriorated flexible joint (specifically, the primary contacts of a center-break disconnector) highlights an instance where improper welding of aluminum belts suggests a manufacturing defect. Environmental stresses have led to the corrosion of the external belt. When combined with mechanical stresses from switching operations, this results in significant material fatigue at the weld site, ultimately causing the aluminum blades to break. This scenario exemplifies how a combination of manufacturing deficiencies and environmental and mechanical stresses can lead to failure.

Edwiin

Online condition monitoring device (OLM2) on high voltage Circuit Breakers
Online condition monitoring device (OLM2) on high voltage Circuit Breakers
This device is capable of monitoring and detecting various parameters according to the specifications outlined:SF6 Gas Monitoring:Utilizes a specialized sensor for measuring SF6 gas density.Capabilities include measuring gas temperature, monitoring SF6 leak rates, and calculating the optimal date for refilling.Mechanical Operation Analysis:Measures operational times for closing and opening cycles.Evaluates primary contacts separation speed, damping, and contact overtravel.Identifies signs of mec
Edwiin
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Initial Transient Recovery Voltage (ITRV) for high voltage circuit breakers
Initial Transient Recovery Voltage (ITRV) for high voltage circuit breakers
Transient Recovery Voltage (TRV) stress similar to that encountered during a short-line fault can also occur due to the busbar connections on the supply side of a circuit breaker. This specific TRV stress is known as Initial Transient Recovery Voltage (ITRV). Given the relatively short distances involved, the time to reach the first peak of ITRV is typically less than 1 microsecond. The surge impedance of the busbars within a substation is generally lower compared to that of overhead lines.The f
Edwiin
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Typical transient recovery voltage waveshapes under fault conditions
Typical transient recovery voltage waveshapes under fault conditions
Transient Recovery Voltages (TRVs) caused by fault current interruptions are typically categorized into three types of waveshapes: exponential, oscillatory, and sawtoothed. Additionally, significant TRV conditions can be classified under two main scenarios:Short Circuit Current Interruption: This is the simplest scenario involving the interruption of a symmetrical, rated-frequency short-circuit current. Since this current naturally reduces to zero at least once every half cycle, it represents th
Edwiin
02/07/2025
Gasket design for SF6 leakage
Gasket design for SF6 leakage
Leakage Causes and Gasket Design ConsiderationsLeaks in equipment often occur due to the deterioration of gasket materials over time and with use. Three critical factors influence gasket design and performance:Hardening of Gaskets:High ambient temperatures and the heat generated by electrical currents passing through circuit breakers during normal operation can reduce the elasticity of gaskets, causing them to harden over time.Chemical Attack:In substations, SF6 gas undergoes chemical changes du
Edwiin
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