For container-handling facilities that need a bridge crane for container loading, unloading, stacking and area transfer inside a fixed runway system.

Henan Mine Crane cqj container overhead crane showing the primary crane structure and lifting arrangement.
The CQJ container overhead crane uses a double-main-girder bridge and a winch hoisting mechanism for container loading and unloading. The source publishes rated capacity of 30–65 t and span of 18–35 m for this product page.
For procurement, container size, loaded gross mass, spreader type, stacking geometry, operating cycle and control mode are as important as crane capacity. If automation is planned, positioning, container identification and host-system interfaces should be defined at RFQ stage.
| Product Model | CQJ |
| Type-Test Product Name | General Overhead Crane |
| Lifting Capacity | Configured according to project requirements |
| Span | Configured according to runway center distance |
| Lifting Height | Configured according to workshop / process requirements |
| Working Duty | Configured from source data and actual load spectrum |
| Lifting Attachment | Configured according to the product and load |
| Control Method | Configured according to project requirements |
| Source-Stated Capacity | 30–65 t |
| Source-Stated Span | 18–35 m |
Request A CQJ Container Overhead Crane Quote
Double-main-girder structure.
Winch hoisting mechanism.
Source-rated lifting capacity 30–65 t.
Where the source page does not publish a numerical capacity, span, speed, duty, positioning accuracy or other guaranteed performance value, the final value should be selected and agreed from the actual project rather than copied from a similar crane.
Designed around container handling rather than general hook lifting.
Source provides 30–65 t and 18–35 m.
Ground, remote and cabin operation are source-listed.
Useful for container loads and wide operating areas.
Can be configured for automated container handling.
Source image associated with the CQJ Container Overhead Crane, showing the crane, lifting attachment or industrial application. |
Source image associated with the CQJ Container Overhead Crane, showing the crane, lifting attachment or industrial application. |
Source image associated with the CQJ Container Overhead Crane, showing the crane, lifting attachment or industrial application. |
Source image associated with the CQJ Container Overhead Crane, showing the crane, lifting attachment or industrial application. |
| Bridge Structure | Engineered from capacity, span, duty, runway and product-specific process loads. |
| Hoisting / Trolley System | Configured for the product's lifting mechanism and operating cycle. |
| Lifting Attachment | Selected from the actual load geometry, material and process. |
| Travel System | Bridge and trolley travel selected for required speed, duty and positioning. |
| Electrical & Control System | Configured for operator control, safety functions and any source-supported automation / monitoring. |
| Model | CQJ |
| Product Type | CQJ Container Handling Overhead Crane |
| Type-Test Product Name | General Overhead Crane |
| Capacity | Project-specific unless source-stated above |
| Span | Project-specific unless source-stated above |
| Lifting Height | Project-specific |
| Hoisting Speed | Project-specific |
| Trolley / Crane Travel Speed | Project-specific |
| Working Duty | Project-specific unless source-stated above |
| Control Method | Project-specific |
| Power Supply | According to site electrical conditions |
| Operating Environment | According to actual process conditions |
Source-confirmed product facts:
Buyer-defined items:
| Inland Container Facilities | Indoor / fixed-runway container transfer. |
| Container Storage Bays | Stacking and retrieval. |
| Intermodal / Factory Logistics | Transfer of containers between process zones. |
| Automated Container Handling | Bridge-crane integration with positioning and control systems. |
State 20/40/45 ft or other formats and maximum gross mass.
Provide spreader type, self-weight and telescoping / rotating requirements if any.
Rows, tiers, aisle clearance and truck / transfer positions.
Moves/hour and operating hours drive duty and speed.
State manual, remote, semi-auto or fully automated scope.
| Container Mass | Use maximum gross container mass plus spreader / attachment weight. |
| Stacking Height | Defines lifting height and hook/spreader approach. |
| Throughput | Moves/hour drive speed and duty selection. |
| Automation | Define positioning, identification and interface requirements before control design. |
Before manufacture and installation, confirm runway span, rail / runway-beam condition, elevation, straightness, available headroom, power supply and erection access. Special attachments, multi-trolley systems, cantilevers, suspended runways and automated layouts should be coordinated with the workshop or yard drawing before production.
Maintenance should follow the supplied crane manual and actual duty. Inspection normally covers the hoisting mechanism, brakes, ropes, hooks / attachments, wheels, drives, fasteners, limits and electrical systems, with additional checks for magnets, grabs, clamps, sensors, encoders or automation hardware where fitted.
| 1 | Container sizes |
| 2 | Maximum container gross mass |
| 3 | Spreader self-weight / type |
| 4 | Stacking rows and tiers |
| 5 | Span |
| 6 | Lifting height |
| 7 | Runway length |
| 8 | Moves per hour |
| 9 | Control mode |
| 10 | Automation / positioning interfaces |
| 11 | Power supply method |
| 12 | Site layout and destination |
Use the total suspended load, including the load itself plus any beam, grab, magnet, clamp, spreader or rigging that remains below the hook.
Yes, these values are project-specific unless a source range is explicitly listed on this page. Provide the workshop / yard data for engineering selection.
Provide load drawings or dimensions, maximum suspended load, span, lifting height, runway length, operating cycle, environment and the specific process function that makes this product necessary.
Where the source supports PLC, VFD, positioning, WMS/MES/DCS or remote functions, the final scope should be defined from the buyer's interface and acceptance requirements.
They describe the source product configuration. Any value that matters contractually for a new project should be written into the technical agreement and acceptance plan.
Send your lifting load, span, lifting height, runway length, workshop or yard drawing, operating cycle, load geometry and special attachment / control requirements. Henan Mine Crane engineers will review the process and prepare a project-specific crane configuration and quotation.