Henan Mine Crane · New Industrial Lifting Equipment

Bridge Crane for Sale

Henan Mine Crane manufactures new bridge cranes for production workshops, warehouses, maintenance bays, steel plants, power facilities and process industries. Each crane is configured around the lifted load, span, lifting height, operating duty, building clearances and working environment.

Available systems include single-girder, double-girder, top-running, underhung, electric-hoist, winch-trolley and special-purpose bridge cranes. Supply can cover crane equipment, runway interfaces, electrification, project documentation, delivery and agreed installation services.

New single girder bridge crane for sale from Henan Mine Crane
New bridge crane equipment configured for the required load, building geometry and operating cycle.

EQUIPMENT CONDITION

New · Project Configured

BRIDGE STRUCTURE

Single or Double Girder

RUNWAY ARRANGEMENT

Top Running or Underhung

CONTROL OPTIONS

Pendant · Radio · Cabin · Automation

New Bridge Cranes for Industrial Facilities

A bridge crane provides three-axis material movement within a defined bay. The bridge travels along parallel runways, the hoist or trolley moves across the bridge, and the lifting mechanism raises or lowers the load. This arrangement keeps the operating floor clear while providing controlled lifting coverage over production and storage areas.

Bridge crane, overhead crane and EOT crane are common commercial terms for this equipment family. The purchase specification must identify the actual bridge structure, runway arrangement, hoisting mechanism, duty and control system rather than relying on the product name alone.

Supply position: The offered range covers newly manufactured, project-configured bridge cranes. Used equipment, rental cranes and generic component kits are outside the standard product scope.

Bridge Crane Applications

Manufacturing and Assembly

Machinery components, fabrications, tooling, molds and assemblies moving between production stations.

Warehousing and Maintenance

Inbound materials, stored equipment, maintenance assemblies and controlled loading operations.

Steel and Metallurgy

Coils, plates, billets, ladles, scrap, process equipment and high-temperature production materials.

Power and Process Industry

Generators, turbines, pumps, production equipment and planned maintenance loads.

Bulk Material Handling

Grab-crane systems for coal, ore, aggregate, biomass, waste and process feedstock.

Hazardous and Special Areas

Classified, corrosive, dusty, high-temperature or cleanliness-controlled operating environments.

Bridge Crane Specifications

The final crane schedule is developed from the operating requirement and building interface. Approved values are stated in the technical proposal and general arrangement drawing.

Specification Available Engineering Direction Required Project Information
Rated Capacity Configured for the selected crane model and service Maximum suspended load, attachment weight and load spectrum
Span and Runway Length Matched to the working bay and runway geometry Runway gauge, travel distance, support spacing and rail data
Lifting Height Project-defined hook travel and approach dimensions Lowest pickup, highest placement, rigging height and building clearances
Working Class Selected from operating time, cycles and load spectrum Lifts per hour, shifts, loaded cycles, travel distance and process criticality
Hoisting Mechanism Wire-rope electric hoist, winch trolley or special mechanism Capacity, duty, lift, speed, headroom, redundancy and access
Control Method Pendant, radio remote, cabin, remote station or automated control Visibility, travel distance, staffing, speed control and process interfaces
Power Supply Electrical equipment matched to the destination supply Voltage, frequency, phases, earthing and site distribution
Operating Environment General, outdoor, hazardous, corrosive, dusty or high-temperature configuration Temperature, humidity, contaminants, hazard classification and local requirements

Selection Considerations

01 / LOAD

Maximum Load and Attachment

Rated capacity includes the lifted item and below-the-hook equipment. Load geometry and centre of gravity affect the handling arrangement.

02 / COVERAGE

Working Area and Hook Envelope

Span, runway length, hook approaches, lift and obstructions determine usable coverage inside the crane bay.

03 / DUTY

Load Spectrum and Operating Cycle

Working class and mechanism ratings are aligned with operating hours, starts, travel and the proportion of heavy lifts.

04 / BUILDING

Runway and Structural Capacity

Wheel loads, lateral forces, rail size, support spacing and allowable clearances must be coordinated with the supporting structure.

05 / OPERATION

Control and Motion Performance

Control position, speeds, variable-frequency drives, anti-sway and positioning functions are selected for the handling process.

06 / PROJECT SCOPE

Delivery and Site Responsibility

Runway, power distribution, freight, erection, commissioning, testing and documentation require defined responsibility.

Bridge Crane Compared with Other Industrial Crane Configurations

Equipment selection is based on building support, required lifting coverage, operating duty and load-handling method. The same rated capacity can require a different configuration when the site or production process changes.

Configuration Structural Arrangement Application Position Critical Selection Inputs
Single-Girder Bridge Crane One bridge girder with an under-running hoist General workshop, warehouse, assembly and maintenance lifting Capacity, span, headroom, duty and runway reactions
Double-Girder Bridge Crane Two bridge girders with a selected hoist or trolley Heavier loads, demanding duty, wider spans and process service Load spectrum, trolley arrangement, hook envelope and access
Underhung Bridge Crane Bridge travels beneath compatible suspended runways Facilities where elevated top-running runway columns are unsuitable Roof structure, runway flange, support spacing and clearances
Double-Trolley Bridge Crane Two lifting mechanisms operating on one bridge Long loads, two-point handling and defined coordinated operations Individual capacities, combined load, hook spacing and control logic
Gantry Crane Leg-supported bridge travelling on ground-level rails or wheels Outdoor yards or facilities without suitable elevated runway support Ground conditions, foundations, travel lanes, wind and cantilevers

Bridge Crane Configurations

The commercial description “bridge crane for sale” covers several structural and mechanical arrangements. Configuration selection affects hook coverage, building loads, maintenance access, operating performance and total project scope.

Single girder electric hoist bridge crane configuration

Single-Girder Bridge Crane

A single bridge girder carries an electric wire-rope hoist operating beneath the girder. This arrangement is widely specified for general manufacturing, warehousing, maintenance and assembly service.

  • Compact bridge structure for general industrial lifting
  • Electric-hoist mechanism with pendant or radio control
  • Selection governed by span, headroom, duty and runway capacity
Double girder electric hoist bridge crane configuration

Double-Girder Bridge Crane

Two bridge girders support an electric hoist or winch trolley. The layout permits alternative hook approaches, service platforms and mechanism arrangements for demanding production service.

  • Suitable for higher loads, wider spans or intensive duty
  • Electric-hoist or open-winch trolley configurations
  • Access platforms and process equipment available by specification
Underhung bridge crane operating beneath suspended runways

Underhung Bridge Crane

The bridge end trucks travel beneath suspended runway beams. This structure can provide lifting coverage where floor-supported runway columns are restricted or where the building has a compatible supporting system.

  • Suspended runway arrangement for defined building conditions
  • Roof and runway support require structural confirmation
  • End approaches and suspension points established by layout
Explosion-proof bridge crane for a classified industrial environment

Special-Purpose Bridge Crane

Hazardous, metallurgical, high-temperature, corrosive and bulk-handling applications require equipment developed for the stated operating conditions rather than a general-purpose crane with isolated component changes.

  • Hazard classification and material properties defined at enquiry stage
  • Special mechanisms, protection, controls and lifting attachments
  • Technical scope aligned with project acceptance requirements

Crane, Runway and Building Integration

A bridge crane is part of an integrated load path. Crane wheel reactions pass through the rails and runway beams into building columns, freestanding supports or another approved structure. The complete arrangement must accommodate vertical loads, transverse forces, longitudinal forces, operating clearances and maintenance access.

New-Build Facility

Early coordination permits the crane envelope, runway elevation, support spacing, electrical feed and maintenance access to be incorporated into the building design.

Existing Runway

An existing runway requires dimensional and structural assessment. Rail condition, alignment, span, support spacing and permissible reactions are evaluated against the proposed crane.

Freestanding Runway

Independent runway columns can separate crane reactions from the main building where space, foundations and operating routes permit a freestanding support structure.

Interface control: Crane span, rail level, runway gauge, wheel loads, end approaches and power-feed location are recorded in approved project drawings. Building and runway suitability remain subject to competent structural verification.

Hoisting, Travel and Control Systems

Hoisting Mechanism

Wire-rope electric hoists provide a compact mechanism for many general-purpose single- and double-girder cranes. Winch trolleys permit alternative reeving, machinery layouts, access provisions and redundancy for demanding service. The selected mechanism is matched to capacity, lift, speed, duty, headroom and maintenance strategy.

Bridge and Trolley Travel

Motor, brake, wheel and drive arrangements are developed for the travel distance, acceleration, operating frequency and required positioning performance. Variable-frequency control can provide smoother acceleration and deceleration where the process requires controlled motion.

Control Options

  • Pendant control: local control for conventional workshop service.
  • Radio remote control: flexible operating position with the specified control functions.
  • Operator cabin: elevated control position for process cranes, long travel routes or defined visibility requirements.
  • Remote station: control from a fixed operating room or protected station.
  • Automated operation: positioning, interlocks and process communication developed from a defined functional specification.

Safety and Environmental Configuration

Protective functions are selected for the crane duty, motion hazards, load characteristics, access conditions and applicable project requirements. The final safety schedule forms part of the technical agreement.

Load and Hoist Protection

Upper and lower travel limits, overload protection, braking and other mechanism safeguards are specified for the lifting arrangement.

Travel Protection

Travel limits, end stops, buffers, audible or visual warnings and anti-collision functions are applied for the operating layout.

Electrical Protection

Isolation, emergency stopping, short-circuit, phase and motor protection are coordinated with the electrical design and site supply.

Access and Maintenance

Platforms, walkways, guards, access points and maintenance clearances are defined where required by the crane arrangement.

Hazardous Areas

Gas or dust classification, temperature class, zone information and material properties are required before an explosion-protected configuration can be established.

Outdoor or Corrosive Service

Weather exposure, wind, ambient temperature, humidity, chemicals and coating requirements determine environmental protection measures.

Bridge Crane Supply Scope

A commercially complete comparison requires a defined boundary between crane equipment, runway infrastructure, site services and installation activities. Henan Mine Crane prepares the proposal against the agreed project scope.

Scope Group Typical Content Commercial Definition
Crane Equipment Bridge structure, end carriages, hoist or trolley, travel drives, electrical equipment and controls Included equipment and technical limits stated in the proposal
Power and Electrification Crane power feed, conductor system, festoon system, isolators and interface cabling as specified Supply termination points and site connections identified
Runway System Rails, runway beams, columns, brackets, buffers and associated structural items when included Equipment-only, runway-inclusive or interface-data-only basis stated
Transport and Site Services Packing, freight, unloading, erection supervision, installation, commissioning and testing Commercial terms, destination and responsibility matrix agreed
Project Documentation Drawings, technical schedules, electrical information, manuals and agreed inspection records Document language, format, approval stages and submission schedule stated

Bridge Crane Price Factors

Bridge crane pricing is project-specific because capacity alone does not define the structure, mechanism, duty or installed scope. A quotation becomes commercially comparable only when all suppliers receive the same technical and delivery requirements.

Capacity, Span and Lift

Structural size, hoisting equipment, rope capacity and building interface change with the lifting geometry.

Duty and Motion Control

Operating cycle, speeds, variable-frequency drives, positioning functions and redundancy affect equipment selection.

Environment and Compliance

Hazard protection, temperature, corrosion, outdoor exposure and project documentation add specific engineering requirements.

Runway and Site Scope

Runway steelwork, freight, unloading, installation, commissioning and site testing can materially change total project cost.

A structured breakdown of equipment and installed-system cost drivers is available under Overhead Crane Pricing.

Manufacturing, Inspection and Documentation

Bridge crane steel structures inside a Henan Mine Crane manufacturing workshop
Crane structures and production equipment inside a Henan Mine Crane manufacturing workshop.

Henan Mine Crane develops the manufacturing package from the approved technical agreement and general arrangement. Production and inspection requirements are connected to the selected crane structure, mechanisms, electrical system and contracted documentation scope.

  • Approved general arrangement and interface dimensions before production release
  • Material, fabrication and component controls defined by the manufacturing plan
  • Electrical and mechanism checks performed against the agreed configuration
  • Inspection points, test activities and records aligned with the contract
  • Packing and shipment planning coordinated with crane dimensions and destination

Manufacturing facilities and production scenes are presented in the Henan Mine Crane factory display.

Delivery, Installation and Commissioning

01

Engineering Approval

Project drawings, interfaces, components and commercial scope are approved before manufacturing release.

02

Production and Inspection

Manufacturing, assembly checks and agreed inspection activities follow the approved project package.

03

Packing and Delivery

Shipment preparation reflects component protection, lifting points, package dimensions and the contracted delivery term.

04

Site Installation

Runway readiness, lifting access, electrical services and installation responsibilities are confirmed before site work.

05

Commissioning and Handover

Functional checks, agreed testing, records and operating documentation support formal project handover.

Production and delivery timing depends on configuration, drawing approval, material and component availability, inspection scope, transport arrangement and site readiness. Contract milestones are established for the individual order.

Information Required for a Bridge Crane Quotation

A complete enquiry enables technical evaluation, layout development and a defined commercial scope. Building drawings, runway data and load information can be attached where available.

Load and Operation

  • Maximum and typical lifted loads
  • Load dimensions and attachment weight
  • Lifts per hour and operating shifts
  • Required speeds and positioning needs

Building and Coverage

  • Runway span and travel length
  • Required lifting height and hook positions
  • Runway and support information
  • Roof, wall and service clearances

Environment and Supply

  • Indoor or outdoor operating conditions
  • Temperature, dust, corrosion or hazard data
  • Electrical power supply
  • Project location, delivery term and required services

Bridge Crane for Sale FAQ

What information is needed to price a bridge crane?

Essential inputs include rated load, span, lifting height, runway length, operating duty, environment, power supply, control method, project location and required supply scope. Drawings and existing-runway data improve dimensional and structural coordination.

Is a bridge crane the same as an overhead crane or EOT crane?

These terms commonly describe the same family of travelling-bridge lifting equipment. The technical specification must still define the girder arrangement, runway type, lifting mechanism, duty and control system.

When is a double-girder crane selected instead of a single-girder crane?

A double-girder arrangement is evaluated when load, span, working duty, lifting envelope, trolley layout, maintenance access or process requirements exceed the preferred operating range of a single-girder arrangement. Selection is based on the complete project rather than capacity alone.

Can a new bridge crane operate on an existing runway?

Compatibility is determined from the existing rail and runway geometry, alignment, support condition and allowable reactions. The proposed crane wheel loads, wheel spacing, power demand and clearances must be assessed against the existing structure.

Does the quoted bridge crane price include runway beams and installation?

Inclusion depends on the stated commercial scope. Crane equipment, rails, runway steelwork, power feed, freight, erection, commissioning and testing should be identified separately when comparing proposals.

Can bridge cranes be configured for hazardous or high-temperature areas?

Special configurations are available when the hazard classification, temperature, material, exposure and project requirements are defined. General-purpose equipment is not substituted for a purpose-designed crane in these environments.

Which controls are available for a bridge crane?

Pendant, radio remote, operator cabin, fixed-station and automated controls can be evaluated. Visibility, operating route, production interface, motion precision and site rules determine the appropriate arrangement.

How is delivery time established?

The delivery schedule is established after configuration and scope confirmation. Drawing approval, production complexity, component availability, inspection activities, packing, transport route and site readiness affect the contracted milestones.

Request A Bridge Crane Quote

Submit the required capacity, span, lifting height, duty, building information, power supply, operating environment and project location. Henan Mine Crane will develop a bridge crane proposal with the applicable configuration, technical data and defined supply scope.

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