For ultra-wide hazardous-area workshops that need multiple roof supports, unobstructed floor space and a crane system that can be modified as the plant layout changes.

Henan Mine Crane blxd explosion-proof multi-point crane showing the suspended crane structure and overhead lifting arrangement.
The BLXD explosion-proof multi-point electric single-girder suspension crane is a special-purpose system for very large-span industrial workshops and warehouses, including aircraft manufacturing and maintenance facilities. Multiple suspension tracks and support points allow the crane to cover wide buildings while distributing loads through the roof structure.
The source also emphasizes a fully suspended layout: the rails and crane are carried below the roof, leaving the floor completely unobstructed for equipment, production lines, material storage and personnel movement. Because the product is explosion-proof, hazardous-area data must also be included in the RFQ.
| Product Model | BLXD |
| Type-Test Product Name | Electric Single Girder Suspension Crane |
| Lifting Mechanism | Explosion-proof lifting system configured to project requirements |
| Lifting Capacity | Configured according to project requirements |
| Span / Working Width | Configured from building structure and required crane coverage |
| Lifting Height | Configured according to workshop and process requirements |
| Runway / Suspension System | Roof-supported / building-supported suspended runway |
| Control Method | Configured according to project requirements |
Request A BLXD Explosion-Proof Multi-Point Crane Quote
Special-purpose multi-point suspension crane for ultra-large-span industrial workshops and warehouses.
Source cites aircraft manufacturing plants and aircraft maintenance workshops as typical applications.
Tracks and crane are fully suspended below the roof, leaving the floor 100% unobstructed according to the source.
For procurement, unpublished capacity, span and speed ranges should not be assumed from similar crane models. Henan Mine Crane should size the final crane from the building structure, suspension points, load, lifting height, operating cycle, environment and applicable project requirements.
Designed for very large buildings where both multi-point support and explosion-protected lifting are required.
The source states the crane and tracks are fully suspended and the floor remains unobstructed.
Multiple supports reduce the structural concentration created by very wide crane spans.
Production equipment, lines, storage and personnel routes can be arranged without crane columns on the floor.
The source highlights modular design for later system changes as the factory layout evolves.
Source product image associated with the BLXD Explosion-Proof Multi-Point Crane, showing the suspended crane or explosion-protected lifting arrangement. |
Source product image associated with the BLXD Explosion-Proof Multi-Point Crane, showing the suspended crane or explosion-protected lifting arrangement. |
Source product image associated with the BLXD Explosion-Proof Multi-Point Crane, showing the suspended crane or explosion-protected lifting arrangement. |
| Multi-Track Suspended Runway | Several roof-supported tracks distribute the crane load. |
| Multi-Point Single-Girder Bridge | Bridge supported at several points across the building width. |
| Explosion-Protected Lifting / Drive Equipment | Selected to the approved hazardous-area specification. |
| Synchronized Multi-Point Travel System | Coordinates multiple support points across the wide suspended crane. |
| Modular Control System | Configured for project operation and future system modification. |
| Model | BLXD |
| Product Type | BLXD Explosion-Proof Multi-Point Single Girder Suspension Crane |
| Lifting Mechanism | Explosion-proof lifting system configured to project requirements |
| Capacity | Project-specific |
| Bridge Span / Working Width | Project-specific |
| Runway Length | Project-specific |
| Lifting Height | Project-specific |
| Suspension-Point Spacing | According to building structure and crane design |
| Hoisting Speed | Project-specific unless source-stated below |
| Crane Travel Speed | Project-specific unless source-stated below |
| Control Method | Project-specific |
| Power Supply | According to site electrical conditions |
| Building Support Loads | Calculated from final crane configuration |
| Explosion-Protection Grade | To be selected from the buyer's approved hazardous-area specification; no universal grade is published on the source page |
Source-confirmed product facts:
Buyer-defined items for quotation:
| Aircraft Manufacturing | Wide-bay lifting where floor columns cannot interfere with aircraft assembly. |
| Aircraft Maintenance Hangars | Overhead service coverage with clear floor access. |
| Hazardous Large-Span Workshops | Industrial buildings combining wide span and classified operating conditions. |
| Expandable Production Facilities | Plants expecting future equipment or layout changes. |
Provide roof structural drawings and the approved explosion-protection classification together; both drive the crane design.
State total building width, runway length and zones that require hook coverage.
Provide support locations and allowable roof loads so the multi-point arrangement can be calculated.
If expansion or line relocation is expected, identify future coverage needs at the first design stage.
Complete the normal lifting data after the support and protection concept is established.
Suspension-crane installation should be coordinated with the building structure. Before manufacture or installation, verify support-point locations, runway straightness and level, structural steel capacity, available erection access, electrical supply and any overhead obstructions.
Maintenance should follow the final supplied crane manual and include the hoist, brakes, wheels or travel assemblies, fasteners, suspension connections, runway components, limits and electrical protection. Multi-point systems also require inspection of synchronization and the condition of each support / travel point.
| 1 | Hazardous-area classification |
| 2 | Hazardous medium and protection requirements |
| 3 | Maximum lifted load |
| 4 | Total required working width |
| 5 | Roof support locations and allowable loads |
| 6 | Roof-truss / building drawings |
| 7 | Runway length |
| 8 | Required lifting height |
| 9 | Operating frequency |
| 10 | Control method |
| 11 | Power supply and standard |
| 12 | Future expansion requirements |
| 13 | Destination and installation scope |
It can cover a very wide building while distributing loads through several roof supports and keeping the floor clear for aircraft movement.
Yes. The source states that the tracks and crane are fully suspended below the roof and the floor is 100% unobstructed.
Yes. The source highlights modular design so the lifting system can be adapted to a new layout.
The source page does not publish a universal grade. Provide the approved hazardous-area classification and project standard so the correct configuration can be selected.
Building steel / roof-truss drawings, support locations, working coverage and future layout plans are especially important.
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Send your load, required crane coverage, lifting height, building / roof-support drawings, operating cycle and control requirements. Henan Mine Crane engineers will review the suspended-runway concept, building interfaces and product configuration before preparing a quotation.