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What is the principle of high current conductive slip ring?

What is the principle of high current conductive slip ring?

High-current through hole slip ring electrical is an electrical component mainly used to transmit high power and signals on rotating bodies. It consists of two main components: a conductive ring and a brush. The conductive ring is usually made of
copper alloy or carbon alloy, while the brush is made of conductive material. When the rotating body rotates, the brushes come into contact with the conductive ring, thereby transmitting power and signals.

High-current conductive slip rings are rotary joint devices used to transmit high currents. Its principle basically follows the working principle of traditional conductive slip rings. Conductive slip rings transmit electrical energy, signals or data
between rotating and stationary parts through mechanical structures and electrical connections. In high-current conductive slip rings, in order to cope with higher current transmission requirements, the following points need to be specially
considered in its design and working principle:
current conductive slip ring
Material selection: In order to carry high current and reduce contact resistance, high-current conductive slip rings usually use high-quality conductive materials, such as copper alloys, etc., to ensure stable transmission under high current conditions.



Heat dissipation design: Since high current transmission will generate a lot of heat, high current conductive slip rings usually need to design an effective heat dissipation system to ensure that they will not overheat under high load conditions, affecting
transmission efficiency and life.
electrical through bore slip ring
Contact design: In order to reduce contact resistance and reduce wear, the contact surface design of high-current conductive slip rings is usually more refined, and special surface treatment technology may be used, such as silver plating or gold plating.

Insulation and sealing: Since high current transmission may be accompanied by higher voltage, special attention should be paid to the insulation and sealing design in high current conductive slip rings to ensure safety and reliability while preventing arc
discharge and leakage phenomena.

Generally speaking, high current conductive slip rings are similar in working principle to traditional conductive slip rings, but there are some special considerations in material selection, heat dissipation design, contact design, and insulation and sealing
to meet the needs of high current transmission.

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