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420kV Dead tank SF6 circuit breaker
  • 420kV Dead tank SF6 circuit breaker
Key attributes
Brand ROCKWILL
Model NO. 420kV Dead tank SF6 circuit breaker
Rated voltage 420kV
Rated normal current 5000A
Rated frequency 50/60Hz
Series LW
Product descriptions from the supplier
Description

Description

420kV Dead tank SF6 circuit breaker products are composed of inlet and outlet bushings, current transformers, interrupters, frames, operating mechanisms and other componentsIt is used to cut off the rated current, fault current or conversion line to realize the control and protection of the power system, and is widely used in domestic and overseas electric power, metallurgy, mining, transportation and public utilities industries.

Main Features

  • High-Efficiency Arc Extinction and Insulation: Utilizes SF6 gas for rapid arc extinction and excellent insulation performance, capable of quickly interrupting fault currents to ensure stable operation of power systems at the 420kV voltage level.

  • Robust Sealed Structure: Adopts a dead-tank design, sealing live components within a metal tank filled with SF6 gas to isolate them from the external environment. Features outstanding seismic resistance and dust-proof capability, adapting to complex environments.

  • Integrated Multifunctionality: Integrates components such as bushings and current transformers, combining functions like current measurement and protection control to simplify system configuration and improve operation and maintenance efficiency.

  • Long Lifespan and Low Maintenance: Exhibits long mechanical and electrical service lives. The sealed structure effectively reduces component aging and corrosion, significantly decreasing maintenance frequency and saving operational costs.

  • Multiple Safety Protections: Equipped with anti-misoperation interlocking devices and comprehensive insulation protections to effectively prevent human errors and fully safeguard the safety of personnel and equipment during operation.

Technical specifications

Documentation Resource Library
Dead Tank Circuit Breakers Catalog
Restricted.
Dead Tank Circuit Breakers Catalog
Catalogue
English
Consulting
Consulting
FAQ
Q: What are the requirements for monitoring the gas decomposition products of the SF6 tank circuit breaker?
A:

During the normal operation and interruption processes of a circuit breaker, SF₆ gas can decompose, producing various decomposition products such as SF₄, S₂F₂, SOF₂, HF, and SO₂. These decomposition products are often corrosive, toxic, or irritating, and therefore require monitoring.If the concentration of these decomposition products exceeds certain limits, it may indicate abnormal discharges or other faults within the arc quenching chamber. Timely maintenance and handling are necessary to prevent further damage to the equipment and to safeguard personnel health.

Q: What are the leakage rate requirements for the arc quenching chamber of a tank-type circuit breaker?
A:

The leakage rate of SF₆ gas must be controlled at an extremely low level, typically not exceeding 1% per year. SF₆ gas is a potent greenhouse gas, with a greenhouse effect 23,900 times that of carbon dioxide. If a leak occurs, it can not only cause environmental pollution but also lead to a decrease in the gas pressure within the arc quenching chamber, affecting the performance and reliability of the circuit breaker.

To monitor the leakage of SF₆ gas, gas leakage detection devices are typically installed on tank-type circuit breakers. These devices help to promptly identify any leaks so that appropriate measures can be taken to address the issue.

Q: What are the structural characteristics of the tank circuit breaker?
A:

Integral Tank Structure:

  • Integral Tank Structure: The breaker's arc quenching chamber, insulating medium, and related components are sealed within a metal tank filled with an insulating gas (such as sulfur hexafluoride) or insulating oil. This forms a relatively independent and sealed space, effectively preventing external environmental factors from affecting the internal components. This design enhances the insulation performance and reliability of the equipment, making it suitable for various harsh outdoor environments.

Arc Quenching Chamber Layout:

  • Arc Quenching Chamber Layout: The arc quenching chamber is typically installed inside the tank. Its structure is designed to be compact, enabling efficient arc quenching within a limited space. Depending on different arc quenching principles and technologies, the specific construction of the arc quenching chamber may vary, but generally includes key components such as contacts, nozzles, and insulating materials. These components work together to ensure that the arc is quickly and effectively extinguished when the breaker interrupts the current.

Operating Mechanism:

  • Operating Mechanism: Common operating mechanisms include spring-operated mechanisms and hydraulic-operated mechanisms.

  • Spring-Operated Mechanism: This type of mechanism is simple in structure, highly reliable, and easy to maintain. It drives the opening and closing operations of the breaker through the energy storage and release of springs.

  • Hydraulic-Operated Mechanism: This mechanism offers advantages such as high output power and smooth operation, making it suitable for high-voltage and high-current class breakers.

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