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Metallurgical Double Girder Overhead Crane for Molten Metal Lifting in Foundry

The metallurgical double girder overhead crane is a specialized lifting equipment tailored for the harsh working environment of foundries, especially designed for the safe and efficient lifting of molten metal.

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Metallurgical Double Girder Overhead Crane for Molten Metal Lifting in Foundry

The metallurgical double girder overhead crane is a specialized lifting equipment tailored for the harsh working environment of foundries, especially designed for the safe and efficient lifting of molten metal. With its robust structure, advanced safety protection systems and reliable performance, it has become an indispensable core equipment in the metallurgical casting process, ensuring the smooth progress of production operations while maximizing operational safety.

Product Features of Metallurgical Double Girder Overhead Crane & Heavy-Duty Molten Metal Handling Crane

Metallurgical Double Girder Overhead Crane for Molten Metal Lifting in Foundry

High-Temperature Resistance: The key components of the metallurgical double girder overhead crane, such as the lifting mechanism, trolley frame and gancho group, are made of high-temperature resistant materials. After special heat treatment, they can withstand the high-temperature radiation of molten metal (up to 1600℃) for a long time, avoiding performance degradation or structural damage caused by high temperatures— a critical advantage for any foundry-specific metallurgical crane.

Diseño estructural robusto: Adopting a double girder structure, the crane has high structural rigidity and bearing capacity. The main beam is usually designed with a box-type section, which effectively improves the bending and torsion resistance, ensuring stable operation even when lifting heavy molten metal ladles. The overall structure is optimized through finite element analysis to reduce weight while ensuring strength.

Multi-Layer Safety Protection: Equipped with a comprehensive safety protection system, the metallurgical double girder overhead crane includes overload protection, overheat protection, anti-collision protection, power failure protection and emergency braking devices. The overload limiter can immediately cut off the lifting power when the load exceeds the rated value; the anti-collision device uses infrared sensors to avoid collisions between the crane and the workshop wall or other equipment; the emergency braking system can quickly stop all movements in case of emergency to prevent molten metal spillage, ensuring safe operation of the molten metal lifting metallurgical crane.

Precise Control Performance: Adopting variable frequency speed regulation technology, the lifting and running speed can be adjusted steplessly, realizing smooth starting, stopping and speed change. This not only improves the stability of molten metal lifting, avoids splashing caused by sudden speed changes, but also reduces the impact on the crane structure and extends the service life of the equipment.

Easy Maintenance and Operation: El grúa puente de dos vigas is equipped with a user-friendly operation platform and control system, which can be operated by a driver’s cab or remote control. The cab is designed with a good view, allowing the driver to clearly observe the lifting process. At the same time, key components are designed with easy access, facilitating daily inspection, maintenance and repair, Reducción del tiempo de inactividad.

Metallurgical Double Girder Overhead Crane for Molten Metal Lifting in Foundry

Technical Parameters of Foundry Molten Metal Metallurgical Double Girder Overhead Crane

Elemento de parámetro
Especificación
Capacidad de elevación nominal
10-500 T
Durar
10-35 metro
Altura de elevación
8-30 metro
Velocidad de elevación
0.5-10 m/mi (regulación de velocidad continua)
Velocidad de desplazamiento del carro
5-30 m/mi
Velocidad de desplazamiento de la grúa
10-45 m/mi
Clase trabajadora
A7-A8 (heavy-duty working system)
Fuente de alimentación
380V/50Hz, three-phase AC
Resistencia a la temperatura
≤1600℃ (ambient temperature around molten metal)
Peso total
Depends on lifting capacity and span (15-500 T)

Working Principle of High-Temperature Metallurgical Double Girder Overhead Crane

Metallurgical Double Girder Overhead Crane for Molten Metal Lifting in Foundry

The metallurgical double girder overhead crane is composed of main components such as the main beam, end beam, overhead crane trolley, lifting mechanism, traveling mechanism and electrical control system. Its working principle, tailored for the foundry molten metal handling scenario, is based on the coordinated operation of each mechanism to realize the lifting and transportation of molten metal by the high-temperature metallurgical overhead crane.

Applications of Metallurgical Double Girder Overhead Crane in Foundry Molten Metal Scenarios

Metallurgical Double Girder Overhead Crane for Molten Metal Lifting in Foundry

The metallurgical double girder overhead crane is widely used in various links of the foundry production process, especially in the lifting and transportation of molten metal, which plays a key role in ensuring the continuity and safety of production. Its main applications include:

Conclusion on Metallurgical Double Girder Overhead Crane for Foundry Molten Metal Lifting

The metallurgical double girder overhead crane for molten metal lifting in foundry is a high-performance, high-safety specialized lifting equipment that integrates high-temperature resistance, robustness, precision control and comprehensive safety protection. As a core foundry molten metal handling crane, it effectively solves the problems of difficult lifting and high safety risks of molten metal in the foundry production process, and provides a reliable guarantee for improving production efficiency, ensuring product quality and protecting the safety of personnel and equipment. With the continuous development of the metallurgical casting industry, the heavy-duty metallurgical double girder overhead crane will be further optimized and upgraded in terms of intelligence, energy conservation and environmental protection to better meet the needs of modern foundry production.

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