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Air-Insulated Busbar Trunking System
Air-Insulated Busbar Trunking System
The air-insulated
busbar trunking system
is a type of busbar product that uses air as the insulating medium. Its structural design emphasizes air circulation between conductors to achieve insulation and heat dissipation functions, and it has specific applications in low-voltage power distribution systems.
Structural Features
Conductor Layout
: A certain air gap is maintained between phase conductors and between conductors and the shell. No solid insulating materials are used (or only simple insulating supports are used locally), and air is mainly relied on as the insulating medium.
Shell Design
: The shell is usually made of metal materials (such as aluminum, steel, etc.) to provide protection and mechanical support. Some shells are designed with ventilation holes to enhance air convection and improve heat dissipation.
Support Method
: Conductors are fixed in the shell through insulating brackets to ensure stable spacing between phase conductors, thus guaranteeing insulation performance and structural reliability.
Technical Parameters
Current Rating
: Generally applicable to the current range of 400A-3150A, with specific differences depending on models and specifications. For example, air-insulated busbar trunking of some brands can cover the common current range of 630A-2500A.
Voltage Rating
: Mainly used in low-voltage power distribution systems with a rated voltage of 690V and below, and the rated insulation voltage is mostly 1000V.
Protection Class
: Due to its reliance on air insulation, its protection level is relatively low, usually IP30-IP40. It is suitable for indoor environments that are dry, dust-free, and free of corrosive gases. Caution is required in harsh environments.
Application Scenarios
Industrial Plants
: It can be used for power trunk transmission in machinery processing workshops, assembly workshops, etc., where environmental conditions are good.
Commercial Buildings
: Suitable for power distribution trunks in large shopping malls, office buildings, and other buildings, especially places with certain requirements for installation space and clean environments.
Temporary Power Supply
: In some temporarily built power distribution systems, it can be used as a temporary power transmission channel due to its relatively flexible installation.
Advantages and Limitations
Advantages
:
Lower cost: Compared with intensive busbar trunking, it reduces the use of insulating materials, resulting in relatively lower manufacturing costs.
Good heat dissipation: Air gaps help dissipate heat through convection, ensuring stable heat dissipation within a certain current range.
Easier installation and maintenance: The structure is relatively simple, reducing the difficulty of installation and later maintenance operations.
Limitations
:
Insulation performance is greatly affected by the environment: The presence of dust, moisture, corrosive gases, etc., in the environment will reduce the insulation performance of air, potentially causing safety hazards.
Larger volume: To ensure air insulation gaps, the overall volume of the busbar trunking is relatively large, occupying more space.
Limited current-carrying capacity: Under high current conditions, relying solely on air for heat dissipation is insufficient, leaving limited room for increasing the current-carrying capacity.
Air-insulated busbar trunking still has certain applications in suitable low-voltage power distribution scenarios due to its cost advantage. However, in occasions with high requirements for insulation performance, protection level, and space utilization, other types such as intensive busbar trunking may be more applicable.
Durability and Safety cable festooning system HXDL
Compact /Intensive Busbar Trunking System
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