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10-ton I-beam Single-girder Bridge Crane


Entering this modern industrial plant, a 10-ton I-beam single-girder overhead crane stands out. The "10 t" logo on the bright yellow main beam accurately conveys its heavy lifting capacity. The I-beam's structural design gives it excellent load-bearing capacity and stability. During operation, it works in tandem with other equipment within the workshop, such as precision machining machinery. Within the spacious production space, enhanced by green steel structures and abundant natural light, it efficiently transfers heavy materials, ensuring smooth processing of large components and heavy equipment. This vividly demonstrates the company's strong production capabilities and expertise in the industrial sector.

Product Introduction

Entering this modern industrial plant, a 10-ton I-beam single-girder overhead crane stands out. The "10 t" logo on the bright yellow main beam accurately conveys its heavy lifting capacity.
The I-beam's structural design gives it excellent load-bearing capacity and stability. During operation, it works in tandem with other equipment within the workshop, such as precision machining machinery. Within the spacious production space, enhanced by green steel structures and abundant natural light, it efficiently transfers heavy materials, ensuring smooth processing of large components and heavy equipment. This vividly demonstrates the company's strong production capabilities and expertise in the industrial sector.

Technical Parameters:

Lifting Capacity10 t (including the weight of the hook and other lifting equipment, double hooks or multiple lifting points can be customized)
Span Range7.5 m~31.5 m (common spans are 10 m, 16.5 m, 22.5 m, etc., customized according to the column spacing of the factory building)
Lifting Height6 m~30 m (maximum vertical distance from the ground to the center of the hook, adapted to different factory building heights)
Lifting SpeedNormal speed: 8 m/min (suitable for rapid lifting of conventional materials);
Slow speed: 0.8 m/min (dual-speed/variable frequency electric hoist, suitable for precision assembly and positioning).
Work DutyA 3~A 5 (A 3: light, such as auxiliary lifting in machinery factories; A 5: medium, such as frequent cycle operations in assembly workshops)

Core advantages:

1. Structural Design: Compact, Lightweight, and Highly Adaptable

Utilizing a single-beam structure made of I-beam (or composite-section, box-beam), the crane is 30%-50% lighter than a double-beam crane. Its compact and simple structure occupies minimal factory floor space, making it ideal for workshops with large spans but height restrictions, maximizing headroom.

The main beam boasts excellent rigidity and torsional resistance (e.g., box-beam design and seamless butt-free welding), resists deformation even during long-term lifting of heavy materials, and offers exceptional operational stability.

2. Load Capacity and Operational Efficiency: Efficient Lifting, Precise and Flexible

Sufficient Load Capacity: With a rated load of 10 tons, it can reliably lift heavy materials such as metal sheets, large machinery and equipment, and steel structures, meeting the medium and heavy material handling needs of industries such as machinery manufacturing and metallurgy. High Operational Efficiency: Both the trolley and carriage mechanisms are often equipped with variable-frequency stepless speed regulation systems, ensuring smooth lifting and movement and precise positioning. This significantly improves the efficiency of material transfer and precision assembly of large components. The electric hoist's dual-speed (or variable-frequency) lifting function further reduces swaying of heavy objects, ensuring safe and efficient operations.

III. Safety Performance: Multiple Protections, Reliable and Durable

Complete Safety Devices: Multiple protections, including overload protection, position protection, and a lifting capacity limiter, prevent hook overload and equipment overload. Key components, such as the electric hoist and wheels, are made of high-quality materials (e.g., 45# forged wheels and 20# steel die-forged hooks), and undergo heat treatment and non-destructive testing processes for wear resistance and high reliability.

Reliable Braking and Control: The trolley drive often utilizes a "three-in-one" drive mechanism, offering sensitive braking (automatically braking within one second in the event of a power outage). The electronic control system includes protections for loss of pressure, interlocking, and phase loss, further reducing safety risks caused by operational errors or equipment failures. 4. Cost and Operation: Economical and practical, easy to maintain and install.
Low procurement and operation costs: The simple manufacturing process and low material consumption make the initial procurement cost 30%-60% lower than that of a double-girder crane. High component compatibility means that routine maintenance only requires checking the wire rope, gear lubrication, and electrical wiring, resulting in a low failure rate and manageable ongoing maintenance costs.
Easy Installation and Customization: The crane can be hoisted as a whole, eliminating the need for complex assembly, resulting in a short installation cycle and suitable for rapid commissioning. It can also be customized based on parameters such as plant span, lifting height, and operating speed, allowing precise integration into different production processes.
5. Adaptability and Energy Saving and Environmental Protection: Suitable for a wide range of applications, green and efficient.
Strong environmental adaptability: The crane can operate stably in complex environments ranging from -25°C to +50°C, in dusty environments (even in some less corrosive environments). It is widely used in dozens of industries, including machinery manufacturing, metallurgy, petroleum, logistics and warehousing, and construction. Significant energy-saving effects: The electric drive system consumes less energy, saving 20%-30% compared to double-girder cranes under equivalent operating conditions. Some models utilize a European-style low-headroom electric hoist, further reducing plant height requirements and indirectly saving on infrastructure costs.

VI. Technology and Cost-Effectiveness: Fusion and Upgrade for High Cost-Effectiveness

Combining the advantages of European design (such as a compact hoist layout and ultra-low headroom structure) with the practicality of traditional cranes, some models are equipped with advanced electronic control systems such as PLC + inverter and intelligent operation monitoring. While offering upgraded performance, the price difference is comparable to that of traditional 10-ton single-girder overhead cranes, offering both high quality and high cost-effectiveness.

 

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