Used Gantry Crane For Metal Coils
Products Description
Key Considerations for Selecting a Gantry Crane for Metal Coils:
Load Capacity: Ensure the crane can handle the maximum weight of your metal coils.
Span and Height: The crane's dimensions should accommodate the size of the coils and the layout of your facility.
Mobility: Decide between fixed or mobile gantry cranes based on your operational needs.
Lifting Attachments: Specialized attachments like C-hooks or coil tongs are essential for securely handling coils.
Condition and Maintenance History: When considering used cranes, review their maintenance records and inspect for wear and tear.
Core Components PLC, Engine, Bearing, Gearbox, Motor, Pressure vessel, Gear, Pump
Place of Origin Henan, China
Warranty 1 Year
Weight (KG) 30000 kg
Application Precast yard, construction site, warehouse, etc.
Product name 40 ton straddle carrier rubber tired single girder gantry cranes
Crane Type A Type, Single Girder, Double Girder Straddle Carrier
Lifting mechanism Customer Requirements
Control Method Cabin Control+Remote Control
Lifting Capacity 5~1200 Ton
Multiple Steering Modes Go straight, transverse traveling, carousel steering, etc.
Install On-site and online
Motor Famous brand
Work Duty A3~A5

Pictures & Components
Gantry Structure
Material: Heavy-duty steel.
Type: Usually double girder or box-type frame to handle the high weight of metal coils.
Purpose: Forms the crane's frame and distributes the load.
Hoisting Mechanism
Motorized Hoist: Usually an electric wire rope hoist for lifting coils.
Speed Control: Often equipped with variable frequency drives (VFD) for smooth lifting/lowering.
Load Capacity: Rated for the maximum weight of coils (e.g., 20–50 tons or more).

Trolley System
Travel Direction: Moves laterally along the main girder.
Carries: The hoist and specialized lifting attachment.
Construction: Reinforced to support heavy loads and reduce sway.
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3.End carriage
An end carriage is a structural and mechanical assembly located at the ends of the gantry crane's girder(s). It houses wheels, drive mechanisms, and other components essential for stability and, in some cases, movement along a track.
Components of an End Carriage:Wheel Assemblies:Fixed wheels: Support the structure's weight and maintain stability.Driving wheels: Powered wheels for motion along rails (if applicable).Materials: Made from durable materials like forged steel for heavy-duty applications.
2. Drive Mechanism (optional for stationary setups):Includes motors, gearboxes, and coupling systems.Used for cranes that have limited or controlled horizontal movement along rails.
3. Bearings:Allow smooth and frictionless wheel rotation.Designed for high loads and long service life,Frame:A robust, rigid structure that connects the wheels and supports the girder.Typically constructed from high-strength steel.
4. Rail Clamps (Optional):Clamps or locking mechanisms to secure the crane in place.Essential for safety in outdoor installations or windy conditions.Buffers:Absorb impact and reduce vibration at the ends of travel
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4.Crane travelling mechanism
Key Components of the Travelling Mechanism Drive System:Electric motors: Provide the power for movement.Gearboxes: Control the speed and torque of the motors.Wheels and Rails:Wheels are mounted at the base of the gantry legs or on a trolley. They are typically made of high-strength steel to handle heavy loads.Rails are fixed on the ground or a beam, guiding the wheels for smooth travel.
Braking System:Electromagnetic or mechanical brakes ensure stability by preventing unwanted movement when stationary.Controls:Operated manually (via a control panel or pendant) or through wireless remote control systems.
Travelling Mechanism Types,Gantry Movement:The entire gantry crane structure moves along a fixed rail system.Trolley Movement:A trolley equipped with a hoist travels horizontally along a beam (cross-travel) while the gantry remains stationary.
Safety Mechanisms:Anti-collision devices: Prevent accidental impacts between cranes or structures.Limit switches: Ensure safe stopping at end points.
Maintenance Tips,Regularly inspect wheels and rails for wear and alignment.Lubricate moving parts to ensure smooth operation.Check the electrical system for faults or damage.
5.Trolley travelling mechanism
1. Trolley Frame:A robust steel structure designed to support the hoist and handle heavy loads. It connects all the components of the trolley mechanism.Wheels:The trolley is equipped with wheels (usually four or more), which run along the flange of the gantry beam or a dedicated track.Wheels are typically made of high-strength steel and can be plain, flanged, or grooved, depending on the rail or beam design.
2. Electric Motor: Powers the trolley's movement. Motors are often equipped with variable frequency drives (VFD) for smooth acceleration and deceleration.Gearbox: Converts the motor's rotational speed into the desired torque and speed for moving the trolley.Couplings and Shafts: Transmit power from the motor to the wheels.
3.Operated via:Pendant Control: A wired controller suspended from the crane.Remote Control: Wireless operation using radio frequency.
Cabin Control: For larger cranes, an operator's cabin may be provided.
4.Braking System:Includes mechanical or electromagnetic brakes to stop and hold the trolley in place.Brakes engage automatically when power is cut or when the trolley is stationary.
Crane wheel
Key Features of Crane Wheels;Material:Typically made from high-strength steel or alloyed materials to withstand heavy loads and resist wear.Common materials include carbon steel, forged steel, or heat-treated steel to enhance durability.
Design:Flat Wheels: Used for flat-topped rails, allowing lateral movement flexibility.Flanged Wheels: Feature a flange on one side to prevent derailment and maintain alignment with the rail.Double-Flanged Wheels: Provide additional safety by keeping the wheel securely on the track, often used in heavy-duty applications.Tread Profile: Designed to distribute the load evenly and reduce wear.
Tread Profile: Designed to distribute the load evenly and reduce wear.Dimensions:Vary depending on the size and capacity of the crane.Key parameters include wheel diameter, tread width, and flange thickness.Mounting:Mounted on axles or shafts, either directly or via bearings.Bearings reduce friction and enable smooth rotation.

Crane Hook
Key Features of Crane Hooks Material:Typically made from high-strength materials such as forged steel or alloy steel.Designed to withstand heavy loads, impact forces, and harsh working conditions
Design:Single Hook: A simple, straight design used for general lifting tasks.Double Hook: Features two prongs, used for balancing heavier loads and reducing stress on each hook.Rotating Hook: Allows 360-degree rotation for precise load positioning.Safety Latch: Most crane hooks include a latch to prevent the load from slipping off the hook.
Load Capacity:Varies widely depending on the crane's design and application.Clearly marked on the hook for operator safety.
Hook Shapes:C-Hook: Used for handling coils and cylindrical loads.Eye Hook: Features a circular eye for secure attachment to the hoist or chain.Clevis Hook: Includes a U-shaped clevis and pin for quick attachment.

Motor
Key Features of Crane Motors Motor Types:Squirrel Cage Induction Motors:Commonly used for their durability and low maintenance.Suitable for applications requiring constant speed.Slip Ring Induction Motors:Used where variable speed is needed, such as in hoisting mechanisms.Servo Motors:Provide precise control, often used in advanced cranes.Brake Motors:Include built-in braking systems for immediate stopping.
Power Rating:Ranges from a few kilowatts for small cranes to hundreds of kilowatts for heavy-duty industrial cranes.The rating depends on the crane's lifting capacity and operational requirements.
Design:Duty Cycle: Designed for intermittent or continuous operation, depending on the application.Insulation: High-grade insulation to withstand harsh industrial environments.Cooling: Equipped with cooling systems (fan-cooled or liquid-cooled) to prevent overheating.
Control Features:Motors often work with Variable Frequency Drives (VFD) or motor controllers for:Speed control.Smooth acceleration and deceleration.Reduced power consumption.


Sound and light alarm system & limit switch
Key Features of the Alarm System,Audible Alarm (Sound)Emits a loud, distinct sound, such as a siren or buzzer, to alert workers.Typically activated during crane operation, load movement, or in emergencies.Sound level: Adjusted to ensure audibility over background noise.Visual Alarm (Light);High-intensity flashing or rotating lights (commonly red or yellow) provide a visual warning.Helps alert personnel in noisy environments or when hearing protection is used.
Control Integration;Activated automatically during specific operations (e.g., hoisting, traveling) or manually by the operator.Often integrated with other safety systems like anti-collision sensors.Functions of the Alarm System Movement Alerts: Warn workers when the crane or load is in motion.Collision Prevention: Signal potential obstructions or proximity to other equipment.
Emergency Indication: Highlight faults, overload conditions, or other emergencies.Maintenance Tips Regularly test sound levels and light visibility.Replace worn-out bulbs, LED, or speakers.Ensure proper wiring and connection to the control system.

Safety Devices
Overload Limiter
End Stop Bumpers
Emergency Brakes
Anti-sway Systems
Limit Switches (hoisting, trolley travel, crane travel)
11.Control Mode
1. Types of Control Modes for Stationary Gantry Cranes,Pendant Control;Description: The operator uses a wired or wireless pendant control unit to operate the crane from a safe distance.Components: A handheld device with buttons or joysticks for controlling movement and functions.
2. Cabin Control;Description: The operator is stationed in a control cabin that is mounted on the crane or nearby the crane's operating path.Components: Equipped with buttons, joysticks, pedals, and sometimes touchscreens for controlling crane functions.
3. Remote Control;Description: Uses a wireless remote control device, which can be handheld or worn on the operator's body.Components: A compact device with buttons or joysticks, similar to a pendant control but without a cable.
4.Automatic Control (Automated Control);Description: The crane operates according to pre-programmed commands and sequences without operator intervention.Components: Includes sensors, programmable logic controllers (PLC), and control software that manage the crane's functions.

Sketch

Main technical

Advantages
1. 💰 Cost Savings
Major advantage: Significant price reduction compared to new cranes (often 30–70% cheaper).
Allows smaller or medium-sized operations to afford heavy-duty equipment.
2. 🏭 Built for Heavy, Repetitive Lifting
Designed to safely lift, rotate, and position heavy metal coils (which are dense and awkwardly shaped).
Often already equipped with coil-specific attachments like C-hooks or coil grabs.
3. 🔄 Proven Reliability
Many used cranes come from industrial settings where they were well-maintained.
You get equipment that's been tested under real conditions and has a known performance record.
4. ⚙️ Shorter Lead Times
No waiting months for fabrication-used cranes are usually available immediately.
Minimizes project delays or downtime.
5. 🛠️ Upgradability
Older cranes can often be retrofitted with:
New control systems (like wireless remotes)
Modern safety features (anti-sway, limiters)
Updated lifting attachments for coils
6. 🧩 Heavy-Duty Construction
Gantry cranes built for metal coil handling are typically over-engineered-meant to last decades.
Even older models retain excellent structural integrity if properly maintained.
7. 📦 Versatility in Handling
One crane can handle different coil sizes, materials (steel, aluminum), and orientations (horizontal or vertical).
Useful in warehouses, ports, fabrication shops, and steel mills.
8. ♻️ Environmentally Friendly
Reusing industrial equipment reduces material waste and energy usage compared to building new.
Application
Applications of a Marble Gantry Crane
A marble gantry crane is widely used in industries that handle marble, granite, and other stone slabs. Its design allows for safe, efficient, and precise lifting of heavy stone materials, making it an essential tool in various applications.
1. Marble & Granite Quarries 🏗️
🔹 Used for lifting and transporting raw stone blocks extracted from quarries.
🔹 Helps in loading and unloading heavy slabs onto transport vehicles.
🔹 Equipped with vacuum lifters or clamps to ensure secure handling.
2. Stone Processing Factories 🏭
🔹 Moves marble and granite slabs between different processing stations (cutting, polishing, finishing).
🔹 Enhances efficiency in material handling, reducing manual labor.
🔹 Reduces slab breakage with anti-sway and smooth lifting technology.
3. Warehouses & Storage Yards 📦
🔹 Organizes stone slabs in stacks for easy access and distribution.
🔹 Maximizes storage space by enabling precise stacking and retrieval.
🔹 Rail-mounted or rubber-tired options allow flexibility in storage yard layouts.
4. Construction Sites 🏢
🔹 Lifts and positions large marble or granite panels used in architectural projects.
🔹 Essential for high-rise building cladding and flooring installation.
🔹 Ensures safe transportation of fragile stone materials on-site.
5. Logistics & Shipping Ports 🚢
🔹 Handles the loading and unloading of marble slabs from ships, containers, and trucks.
🔹 Works efficiently in port storage areas for bulk marble transportation.
🔹 Reduces material handling time and improves supply chain logistics.
6. Monument & Sculpture Production 🗿
🔹 Assists in the movement of large stone blocks for sculpting and monument making.
🔹 Ensures precise positioning of slabs during carving and finishing processes.
🔹 Prevents damage to delicate and high-value stone artworks.
Conclusion
A marble gantry crane plays a critical role in the stone industry, improving safety, efficiency, and precision in lifting operations. Whether in quarries, factories, warehouses, or construction sites, these cranes make heavy stone handling safer and faster.
Crane production procedure
1. Design stage: Determine the parameters of the crane, such as rated load, span and lifting height, according to the customer's needs and working environment. Carry out detailed structural design, including main beam, end beam, crane, lifting mechanism, etc., to ensure that the design meets safety standards and usage requirements. Select appropriate materials according to the design, usually high-strength steel to ensure the stability and durability of the structure.
2. Manufacturing stage: Prepare the required raw materials and parts according to the design drawings. Cut, bend and shape the steel to prepare structural components such as main beams and end beams. Weld the various components and assemble them into an overall structure. This step requires guaranteed welding quality to ensure strength and stability.
3. Machining: Machining key components such as motors, gears, bearings, etc. to ensure that their size and accuracy meet the requirements. Anti-corrosion treatment of components, such as painting and galvanizing, increases the durability and aesthetics of the equipment.
4. Electrical system installation: Install electrical components such as motors, controllers, switches, sensors and alarm systems. Connect and wire cables to ensure the normal operation of the electrical system.
5. Assembly phase: Assemble all components and systems as a whole, connect the lifting mechanism, trolley running mechanism and control system. Perform a comprehensive inspection of the assembled crane to ensure that all components and systems are working properly, and perform preliminary debugging.
6. Testing phase: Perform static load test on the crane to check the structural strength and stability. Perform dynamic test on the crane, including tests on lifting, moving, braking and other functions, to ensure that its performance meets the design requirements. Check the functions of safety devices, such as limit switches, overload protection, etc., to ensure the safety of the equipment during operation.
7. Quality control: Perform quality control on each link in the production process to ensure compliance with industry standards and customer requirements. Record various data and inspection results in the production process for subsequent traceability and analysis.
8. Delivery and installation: Pack and prepare the completed crane for transportation to ensure that it is not damaged during transportation. Deliver the crane to the customer's site for installation, and perform on-site debugging and acceptance. Provide operation training to customers to ensure that they are proficient in the use and maintenance of the crane.

Workshop view:
The company has installed an intelligent equipment management platform, and has installed 310 sets (sets) of handling and welding robots. After the completion of the plan, there will be more than 500 sets (sets), and the equipment networking rate will reach 95%. 32 welding lines have been put into use, 50 are planned to be installed, and the automation rate of the entire product line has reached 85%.





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