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Overhead Cranes for the Automotive Industry: Efficient Automation Solutions
Overhead Crane Solutions for Railways: Track Laying, Rolling Stock Maintenance, and Container Handling
Overhead Cranes for Food and Beverages: Reliable Solutions for Efficient Handling
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Hand Chain Hoists
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Pneumatic Chain Hoists
Overhead Crane Rail Clips
Overhead Crane Motors
Overhead Crane Reducers
Couplings for Overhead Crane
General Manufacturing
Waste Handling
Precast
Power
Stone
Papermaking
Metal Production
Bridge Construction
Port Cranes: For Container and Bulk Material Handling
Overhead Cranes for Petroleum and Gas Industry: Enhance Operational Efficiency
Marine Cranes for Efficient Cargo Loading on Ships
Overhead Cranes for the Automotive Industry: Efficient Automation Solutions
Overhead Crane Solutions for Railways: Track Laying, Rolling Stock Maintenance, and Container Handling
Overhead Cranes for Food and Beverages: Reliable Solutions for Efficient Handling
Overhead Cranes for Efficient Cement, Glass, Brick and Precast Concrete Manufacturing
Overhead Cranes for Aviation Industry: Aircraft Maintenance and Assembly
Aerospace Overhead Cranes: Precision Lifting for Rocket Launch and Transport
Single Girder Overhead Cranes
Double Girder Overhead Cranes
European Type Overhead Cranes
Explosion Proof Overhead Cranes
Grab And Magnetic Overhead Cranes
Monorail Cranes
Foundry Overhead Cranes
Workstation Cranes
Insulation Overhead Cranes
Low Headroom Overhead Cranes
Grab Overhead Cranes
Ladle Overhead Cranes
Underhung Overhead Cranes
Electromagnetic Overhead Cranes
Manual Overhead Cranes
Ceiling Mounted Bridge Crane
Free Standing Workstation Bridge Cranes
Semi Gantry Cranes
Single Girder Gantry Cranes
Double Girder Gantry Cranes
Container Gantry Cranes
Truss Gantry Cranes
Adjustable Gantry Cranes
Portable Gantry Cranes
European Gantry Cranes
Aluminum Gantry Cranes
Rubber Tyred Container Gantry Cranes
Rail Mounted Container Gantry Cranes
Shipyard Gantry Crane
Electric Stainless Steel Grab Bucket
Mechanical Four Rope Orange Peel Grabs
Mechanical Four Rope Clamshell Grabs Bucket
Electro Hydraulic Rectangular Grabs
Electro hydraulic Clamshell Grabs
Electro Hydraulic Orange Peel Grabs,Hydraulic Cactus Grab
Electric Motor Grab
Electric Monorail Grab Bucket with Monorail Hoist
Remote Control Clamshell Grabs
Mechanical Two Rope Clamshell Grabs
Timber Grabs
Single Rope Grab Bucket
Trash Rack Cleaning Machines
Dredging Grabs
Trimming Grabs
Wire Rope Sheaves
Crane Rope Drum
Crane Trolley
Electric Winch
Crane Operator Cabin
Overhead Crane Brakes
Overhead Crane Cables
Overhead Crane Rope Guides
Overhead Crane Conductors and Power Supply Lines
Overhead Crane Rails
Hand Chain Hoists
Manual Lever Hoists
Pneumatic Chain Hoists
Overhead Crane Rail Clips
Overhead Crane Motors
Overhead Crane Reducers
Couplings for Overhead Crane

The wheel pressure load of the overhead crane is the vertical pressure of the wheel on the track. Crane operating mechanism parts and metal structure strength calculation mainly depends on the maximum wheel pressure load of the crane, while it also provides a basis for the design of wheel devices, but also for the design of the track support structure provides the original data. And the minimum wheel pressure load is mainly used for running mechanism starting and braking wheel slip test.

The calculation of the wheel pressure load of the overhead crane, that is, the calculation of the total pressure of the pivot point. The calculation of wheel pressure load is divided into the calculation of the wheel pressure load under the moving load and the calculation of the wheel pressure load under the super static structure.

The four-point supporting structure of the overhead crane is super static, the distribution of the supporting reaction force is not only related to the load, but also related to the structural rigidity of the frame, the foundation rigidity, the manufacturing and installation accuracy of the frame structure, and the elasticity and flatness of the track, etc. However, to calculate the impact of these factors on the supporting reaction force is quite time-consuming, and it is difficult to estimate the unevenness of the track. Therefore, the calculation of wheel pressure load under super-stationary structure generally adopts the approximate solution method, and the error difference between the approximate solution method and the exact solution method has not been studied yet.
First,known: lifting capacity: Q = 20 tons, span: L = 22.5 m, the number of wheels: 4, the total weight of the crane (including the trolley) total = 32.5 tons.
Trolley weight: G = 7.5 tons, spreader weight: 0.5 tons, the minimum distance from the hook centerline to the end beam centerline L1 = 1.5 meters (large hook limit position)
Second, the calculation process
So the maximum wheel pressure load Pmax=19317, the minimum wheel pressure load Pmin=6517kg
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