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The company mainly manufactures and sells electric hoists, single and double-beam bridges, gantry cranes, and explosion-proof series cranes.

Corner wheel

Corner box wheels are the core load-bearing components of the crane trolley/carriage running mechanism, consisting of wheels, corner bearing boxes, shafts, and bearings. Its unique 45° or 90° box structure effectively decomposes track pressure, and is widely used in the traveling systems of various bridge and gantry cranes.

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One-character hoist

A single-drum hoist (also known as a single-drum horizontal hoist) is the core driving component of a crane's lifting mechanism. It uses a horizontal single-drum layout, and the motor drives the drum to rotate and wind/unwind the steel wire rope to achieve vertical lifting or horizontal traction of heavy objects. Its name originates from the typical structural feature of the drum being arranged horizontally in a "one" shape.

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Electromagnetic chuck

Electromagnetic chucks are magnetic lifting tools specifically designed for cranes. They use electricity to generate a strong magnetic field, allowing for the quick attachment/release of ferromagnetic materials (such as steel plates, ingots, and scrap steel). They eliminate the need for manual hooking, significantly improving loading and unloading efficiency. They automatically demagnetize when the power is cut, ensuring operational safety.

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Electric hoist rope guide

The rope guide for electric hoists is a key guiding component of wire rope electric hoists. Through a mechanical device, it forcefully guides the wire rope to be arranged orderly on the drum, preventing rope tangling, overlapping, and jumping out of the groove, ensuring the safety of lifting operations and the service life of the wire rope.

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Electric rotating billet tongs

The electric rotating billet tongs are important accessories for cranes used to lift billets. The electric drive system can quickly and accurately achieve the opening and closing and rotation of the tongs. Coupled with sensors and a control system, it can precisely control the clamping force, rotation angle, and arm opening, ensuring the accuracy and stability of the billet lifting position. It can rotate 360 degrees to adapt to complex working environments and operational requirements. It is also equipped with various safety protection devices such as overload, limit, and anti-slip protection to ensure operational and equipment safety.

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Electric hydraulic double-valve grab

An electro-hydraulic double-valve grab is a specialized grabbing device used for cranes (such as gantry and bridge cranes). It is mainly used for loading and unloading bulk materials, such as coal, ore, grain, sand and gravel, scrap steel, etc. It uses a hydraulic system to drive the double-valve opening and closing, and has the characteristics of strong gripping force, flexible operation, and good sealing. It is suitable for ports, power plants, steel plants, garbage disposal, and other scenarios.

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Power hydraulic brake

Electro-hydraulic brakes (EHB) are critical safety components in heavy machinery such as cranes, port machinery, and mining equipment, primarily used to achieve fast and smooth braking. Combining electric control and hydraulic transmission technology, they feature high braking force, fast response, and long lifespan, suitable for high-load, frequent start-stop operations.

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Fixed electric hoist

A fixed electric hoist is a small and light lifting device installed in a fixed location (such as a jib crane, I-beam track, or fixed bracket) used for the vertical lifting or horizontal movement of heavy objects. It consists of a motor, reducer, wire rope/chain, hook, and control system. It features a compact structure, simple operation, and precise load, making it suitable for material handling in fixed locations such as workshops, warehouses, and production lines.

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Double gourd small car

The double-girder trolley is a crucial component of cranes, characterized by its compact structure, flexible operation, and strong load-bearing capacity. This product mainly consists of a hoist, trolley frame, and running wheels, enabling efficient collaboration in lifting and transportation operations. Double-girder trolleys are widely used in ports, logistics, and construction sites. When lifting goods, it provides stable load-bearing capacity and precise positioning, improving operational efficiency. In addition, this product also has good adaptability and reliability, capable of adapting to various complex environments and meeting various lifting needs. In short, the double-girder trolley is an indispensable component of modern cranes, playing a significant role in improving production efficiency and ensuring operational safety.

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Electromagnetic chuck

Electromagnetic chucks are essential components of cranes, primarily used for lifting and handling ferromagnetic materials such as steel plates and iron blocks. They utilize electromagnetic principles to securely hold ferrous objects, ensuring stable gripping and release of heavy materials. Electromagnetic chucks are installed on the crane's hook or other working devices, offering ease of operation and improving the crane's efficiency and safety. Specifications such as length, width, and thickness vary depending on the specific application to accommodate different sizes and weights of ferrous objects. Electromagnetic chucks are widely used in steel mills, ports, and machining plants. In short, electromagnetic chucks are indispensable components for cranes in specific work environments.

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Remote control

A crane remote control is a wireless control device used for remote operation of crane movements (such as lifting, lowering, lateral movement, and forward/backward movement), allowing operators to operate the crane without being in the cab or next to the equipment, thus improving safety, flexibility, and work efficiency.

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Buffer

Crane buffers are safety devices installed at the ends of crane tracks or on moving parts (such as the crane trolley and hoist trolley) to absorb collision energy, reduce impact force, and prevent structural damage or derailment due to inertial impact, thus ensuring personnel and equipment safety.

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