Explosion-proof coal mine hoist


The shaft hoisting system is further divided into the shaft cage system and the skip hoisting system. The shaft cage system is typically used as a secondary shaft hoisting system (and can also serve as part of a combined shaft system), while in smaller mines, it occasionally doubles as the main shaft hoisting system. In contrast, the shaft skip hoisting system is exclusively employed for the main shaft.
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Mining hoisting winch


The explosion-proof hoisting winch, specifically designed for coal mines, is used to lift or transport personnel and materials underground. Its配套 explosion-proof electrical control system ensures enhanced safety. This lightweight and compact lifting device employs a drum to wind steel cables or chains, enabling the lifting or pulling of heavy loads. It features one or more horizontally mounted drums—or cable drums—capable of winding ropes, and is primarily utilized in mining operations for hoisting materials or towing them horizontally.
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Multi-rope friction hoist


The multi-rope friction hoist primarily consists of an electric motor, a gearbox, a friction sheave, a braking system, a depth indicator, a speed-limiting system, and a control system, and is driven by either an AC or DC motor. When a low-speed motor is used, a gearbox can be omitted entirely—allowing the motor to connect directly to the drum’s main shaft, or even positioning the motor rotor at the end of the drum shaft.
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JKMD Floor-Mounted Multi-Rope Friction Hoist


The multi-rope friction hoist primarily consists of an electric motor, a gearbox, a friction sheave, a braking system, a depth indicator, a speed-limiting system, and a control system, and is driven by either an AC or DC motor. When a low-speed motor is used, a gearbox can be omitted entirely—allowing the motor to connect directly to the drum’s main shaft, or even positioning the motor rotor at the end of the drum shaft.
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JKM Shaft-Type Multi-Rope Friction Hoist


The multi-rope friction hoist primarily consists of an electric motor, a gearbox, a friction sheave, a braking system, a depth indicator, a speed-limiting system, and a control system, and is driven by either an AC or DC motor. When a low-speed motor is used, a gearbox can be omitted entirely—allowing the motor to connect directly to the drum’s main shaft, or even positioning the motor rotor at the end of the drum shaft.
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JK-Type Single-Rope Winding Hoist


The electric motor transmits power to the drum that winds the steel wire rope via a gearbox, enabling the lifting and lowering of the container. Speed control is achieved through electrical regulation. The disc-type brake system is operated by hydraulic and electrical controls for precise braking. A variety of position-indication systems ensure accurate monitoring of the container's depth during operation. Additionally, a sophisticated integrated mechanical, electrical, and hydraulic control system—comprising various transmission sensors and control components—provides comprehensive monitoring and protection for the entire machine. Finally, advanced computer and network technologies facilitate seamless information exchange both within and outside the hoisting unit.
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2JK Single-Rope Winding Hoist


The electric motor transmits power to the drum that winds the steel wire rope via a gearbox, enabling the lifting and lowering of the container. Speed control is achieved through electrical regulation. The disc-type brake system is operated by hydraulic and electrical controls for precise braking. A variety of position-indication systems ensure accurate monitoring of the container's depth during operation. Additionally, a sophisticated integrated mechanical, electrical, and hydraulic control system—comprising various transmission sensors and control components—provides comprehensive monitoring and protection for the entire machine. Finally, advanced computer and network technologies facilitate seamless information exchange both within and outside the hoisting unit.
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JKB (Flameproof) Single-Rope Winding Hoist


The electric motor transmits power to the drum that winds the steel wire rope via a gearbox, enabling the lifting and lowering of the container. Speed control is achieved through electrical regulation. The disc-type brake system is operated by hydraulic and electrical controls for precise braking. A variety of position-indication systems ensure accurate monitoring of the container's depth during operation. Additionally, a sophisticated integrated mechanical, electrical, and hydraulic control system—comprising various transmission sensors and control components—provides comprehensive monitoring and protection for the entire machine. Finally, advanced computer and network technologies facilitate seamless information exchange both within and outside the hoisting unit.
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