Product Description
Double-girder EOT cranes are heavy-duty lifting solutions engineered for efficient material handling in factories, workshops, and warehouses. Featuring a dual-main-girder structure, they offer superior strength, stability, and higher lifting capacity compared to single-girder cranes.
Nucleon Crane provides customized EOT crane designs and configurations to meet your specific operational environments, load requirements, and structural dimensions. Contact us for tailored solutions.
Double Girder EOT Crane Parts
The Double Girder EOT Crane mainly consists of the bridge girders, end carriages, trolley with hoist, runway system, and electrical control components. Below are the functional characteristics of each component:
Double Main Girders: Two box-type or truss-type main girders are arranged in parallel and connected by cross beams, forming a stable load-bearing framework. This configuration offers greater load capacity and span range, enabling coverage of a wider operational area.
End Beams: Mounted at both ends of the main girders, these beams house drive mechanisms that propel the crane longitudinally along the rails, ensuring smooth operation even under heavy loads.
Trolley: Positioned between the two main girders, it comprises a hoisting mechanism, trolley frame, and travel mechanism. It vertically lifts and horizontally moves loads along the main girders, delivering high operational precision and enabling fine positioning.
Electrical Control System: Includes control cabinets, operator handles, or remote controllers, integrated with overload protection and limit switches to ensure safe and reliable operation.
Heavy Machinery Plants: Used for the assembly, handling, and installation of large machine tools and heavy equipment, such as the transshipment of heavy components like steam turbines and rolling mills.
Metallurgical Industry: Used for lifting ladles, billets, and steel products in steel mills and steelmaking plants, withstanding high temperatures and harsh environments.
Ports and Logistics Hubs: Responsible for the loading, unloading, and stacking of containers and large cargo, improving port cargo turnover efficiency.
Energy Industry: Used for the handling of large equipment such as generator sets and boilers in hydropower stations and thermal power plants, supporting the construction and maintenance of power facilities.
Bridge and Construction Engineering: Used for the lifting and relocation of bridge components and large prefabricated parts, facilitating the construction of large scale infrastructure projects.
Product Advantages
Higher safety redundancy: The double girder structure features an independent dual braking system, and key load-bearing components are designed with multiple safety factors. This effectively reduces the risk of single failures during heavy-load lifting or emergency braking, providing dual safety assurance for high-load operations.
Strong customizability: The modular design of the double girder facilitates compatibility with a variety of specialized lifting equipment. Flexibly integrate explosion-proof and high-temperature resistance features to meet the specific working conditions of different industries, enabling multi-functional heavy-load operations.
Double Girder EOT Crane is a robust, smooth-running, high-capacity lifting device widely used in factories, warehouses, steel structure manufacturing, and large-scale engineering projects. It offers significant advantages including high efficiency, precision, and safety reliability.
High Load Capacity: Featuring a dual-girder design, it handles lifting demands ranging from 5 to 800 tons.
Structural Stability: The bridge frame exhibits high rigidity, ensuring smooth operation while minimizing equipment vibration and deformation.
Wide Operational Range: Enables three-dimensional material handling, covering the entire work area.
Precise Operation: Equipped with an electric control system for smooth starts/stops and accurate positioning.
Easy Maintenance: Key components feature standardized designs for convenient inspection and upkeep.
Customizable Design: Span, lifting capacity, and control methods can be tailored to suit diverse factory structures and operational requirements.

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