For water conservancy and hydropower buyers who need a dedicated crane to lift, lower or hold hydraulic gates and control water passages.

Henan Mine Crane qm gate hoist gantry crane showing the primary gantry structure and lifting arrangement.
The QM gate-hoist crane is dedicated to operating hydraulic gates, weir gates and similar water-control equipment. The source identifies water conservancy, hydropower stations, reservoirs, river management and municipal drainage as application areas.
Procurement should begin with the gate rather than the crane: gate dead weight, hydrostatic / seal resistance, lifting points, required stroke, operating frequency, corrosion environment and holding requirements determine the hoisting system.
| Product Model | QM |
| Type-Test Product Name | General Gantry Crane |
| Lifting Capacity | Source-stated where published; otherwise project-specific |
| Span | Source-stated where published; otherwise project-specific |
| Lifting Height | Project-specific unless source-stated |
| Runway / Travel Length | Project-specific |
| Working Duty | Source-stated where published; otherwise selected from actual duty |
| Lifting Attachment | According to the product and load |
| Control Method | Source-supported options + project requirements |
| Operating Environment | According to actual site conditions |
Request A QM Gate Hoist Gantry Crane Quote
Dedicated to lifting, lowering or suspending hydraulic / weir gates.
Used to regulate water-channel opening and control flow, velocity and upstream/downstream water level.
Water conservancy, hydropower, reservoirs, river management and municipal drainage are source-listed.
Any capacity, span, speed, synchronization accuracy, wind limit, temperature limit, throughput or other contractual value that is not explicitly published by the source should be engineered from the actual project and written into the technical agreement.
Designed around controlled gate movement rather than general cargo lifting.
Supports opening adjustment for flow and water-level control.
Source confirms special anti-corrosion treatment for long-term water-project service.
Source highlights heavy-duty structure and high-strength materials.
Key components are designed for easier inspection and replacement.
Official source image associated with the gate-hoist crane or a water-control project reference. |
Official source image associated with the gate-hoist crane or a water-control project reference. |
Official source image associated with the gate-hoist crane or a water-control project reference. |
| Gantry Structure | Main girder(s), legs and end structures selected from the exact product layout, load, span and site conditions. |
| Hoisting / Trolley System | Configured around the product's source-described lifting mechanism and operating cycle. |
| Lifting Attachment | Hook, grab, magnet, gantry hook, gate lifting device or construction attachment according to the product. |
| Gantry Travel System | Moves the crane along the fixed ground rail or semi-gantry runway. |
| Electrical & Control System | Configured from source-supported controls and project-specific safety / automation requirements. |
| Model | QM |
| Product Type | QM Hydraulic Gate Hoist Gantry Crane |
| Type-Test Product Name | General Gantry Crane |
| Capacity | Project-specific unless source-stated |
| Span | Project-specific unless source-stated |
| Lifting Height | Project-specific unless source-stated |
| Runway Length | Project-specific |
| Hoisting Speed | Project-specific |
| Trolley Travel Speed | Project-specific |
| Gantry Travel Speed | Project-specific |
| Working Duty | Project-specific unless source-stated |
| Control Method | Project-specific |
| Power Supply | According to site electrical conditions |
| Site Environment | According to wind, rain, dust, corrosion and temperature |
Source-confirmed product facts:
Buyer-defined items:
| Hydropower Stations | Gate operation. |
| Reservoirs / Dams | Water-control gate lifting. |
| River Projects | Gate and weir operation. |
| Municipal Drainage | Water-control equipment handling. |
Include lifting beam or connecting hardware.
Gate travel determines rope / drum / hoist geometry.
State any seal friction, water load or special breakout condition specified by the hydraulic designer.
Water chemistry, humidity and outdoor exposure affect protection.
State whether the gate must be held at intermediate positions or operated under emergency conditions.
| Gate Weight | Base crane load input. |
| Lift Stroke | Determines hoisting geometry. |
| Water / Seal Loads | Provide project hydraulic design data where relevant. |
| Corrosion | Source confirms special anti-corrosion design. |
| Holding Requirement | Define required gate positions and emergency behavior. |
Before manufacture, confirm rail center distance, runway length, rail elevation, foundation or building-runway capacity, available lifting height, process clearances, power supply and erection access. Outdoor projects should include wind, rain, temperature, corrosion and anchoring conditions.
Maintenance should follow the final supplied crane manual and actual duty. In addition to hoisting, brakes, ropes, wheels, drives, rails, limits and electrical systems, inspect product-specific devices such as grabs, magnets, gantry hooks, gate equipment, tipping mechanisms, encoders, cameras or automation hardware.
| 1 | Gate type / dimensions |
| 2 | Gate dead weight |
| 3 | Lifting points / lifting beam |
| 4 | Required lift stroke |
| 5 | Operating frequency |
| 6 | Hydraulic / seal resistance data if applicable |
| 7 | Span / travel length |
| 8 | Corrosion environment |
| 9 | Holding / emergency operation requirement |
| 10 | Control method |
| 11 | Project drawings |
| 12 | Destination / installation scope |
Use the complete suspended load, including the load plus grab, magnet, gantry hook, lifting beam, rigging or any other below-the-hook equipment.
Yes. Unless the source publishes a range, these are project-specific and should be selected from the rail layout and working envelope.
Send a plan and cross-section showing rails, foundations or building runway, loading positions, obstacles, travel length and available clearances.
Where the source supports VFD, PLC, linked operation, cameras, access control or other functions, the final scope should be defined from the buyer's process and acceptance requirements.
Treat them as source product data. If a value is contract-critical for a new project, define the test conditions and acceptance method in the technical agreement.
Send your maximum load, span, lifting height, runway length, site drawing, operating cycle, load geometry, lifting attachment and special control / environment requirements. Henan Mine Crane engineers can then review the actual process and prepare a project-specific configuration and quotation.