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Aerospace Plant Crane Fleet Solution | Henan Mine Crane

32t Workshop Overhead Crane

32t Workshop Overhead Crane Industries : Heat treatment of aerospace components, metal component machining, and transportation of molds and tooling

32t Workshop Overhead Crane Description: The 32-T heat treatment shop Overhead Crane is used to transport aerospace metal components, tooling, and molds between heat treatment equipment, cooling areas, inspection stations, and storage areas.

Designed to address the high temperatures, frequent lifting operations, and significant fluctuations in workpiece surface temperatures typical of heat treatment workshops, this 32t Workshop Overhead Crane can be configured with high-temperature-resistant cables, electrical insulation, and structural protection based on the intensity of thermal radiation, ensuring stable operation of critical components under actual operating conditions.

32t Workshop Overhead Crane Features

32-T lifting capacity: Meets the daily handling requirements for medium- to large-sized aerospace metal components, molds, and heat treatment tooling.

Configurations Adapted to Hot Environments: Insulation panels, high-temperature-resistant cables, and heat-resistant components can be selected based on workpiece temperature and the range of thermal radiation.

Smooth Transport of High-Temperature Workpieces: Smooth start-up and stopping reduce load sway, preventing collisions between high-temperature components and the furnace or surrounding equipment.

Protection of critical electrical components: The electrical control system can be located in low-heat areas, and the impact of high temperatures is mitigated through insulation and ventilation measures.

Suitable for frequent production cycles: Select the appropriate duty cycle based on daily lifting frequency and operating time to avoid under-specification.

Ample maintenance space: Brakes, drums, gearboxes, and electrical components are easily accessible for inspection, reducing downtime on heat treatment production lines.

Explosion-Proof Crane | Henan Mine Crane

Explosion-Proof Overhead Crane

Explosion-Proof Overhead Crane Industries : Solid rocket engine manufacturing, aerospace propulsion equipment production, and heavy-duty component lifting in hazardous environments

Explosion-Proof Overhead Crane Description: The 160T+160T explosion-proof electric double-girder Overhead Crane is designed for high-capacity, high-risk lifting operations in the aerospace sector.

The Explosion-Proof Overhead Crane dual-hoist system allows for coordinated control based on the component’s center of gravity and lifting procedures, making it suitable for the lifting, transport, and installation of large engine assemblies, heavy-duty tooling, and oversized components.

The Explosion-Proof Overhead Crane-proof electrical system reduces the risk of ignition in hazardous environments while controlling the heavy-load lifting process through smooth speed regulation and safety monitoring. Specific combined lifting capacity, duty class, and explosion-proof rating should be verified based on load conditions and on-site hazardous areas.

Explosion-Proof Overhead Crane Features

160T + 160T dual-hoist configuration: The two hoisting mechanisms can operate independently or in coordination according to the lifting plan, accommodating oversized, eccentric, and long loads.

Explosion-proof electrical design: Motors, electronic controls, limit switches, and operating systems can be selected with appropriate explosion-proof ratings based on the on-site hazardous areas.

Double-girder heavy-duty structure: Enhances the load-bearing rigidity of the main girders and the overall stability of the crane, reducing structural deformation during heavy-load operations.

Synchronization control capability: Controls the height difference between the two lifting points, reducing the risk of large components tilting or experiencing localized stress.

Heavy-load low-speed operation: Allows for low-speed adjustments when approaching the installation position, preventing high-tonnage components from colliding due to inertia.

Heavy-load safety monitoring: Can be configured with load display, overload protection, brake status monitoring, limit switch protection, and fault alarms.

Aerospace Crane Supplier Solution | Henan Mine Crane

Specialized Cranes for the Aerospace Industry

Specialized Cranes for the Aerospace Industry Application : Aerospace propellant materials, aviation machinery manufacturing, composite materials processing, and aerospace component production

Specialized Cranes for the Aerospace Industry Description: Specialized cranes for aerospace materials manufacturing are designed to meet the material handling needs of various aerospace materials production workshops. They can be used for raw material loading, mold transfer, lifting of semi-finished products, equipment maintenance, and storage of finished products.

The Specialized Cranes for the Aerospace Industry configuration is determined based on the actual risks present in the workshop. Customers can select appropriate electrical protection, structural designs, and lifting equipment solutions tailored to flammable and explosive media, corrosive environments, cleanliness requirements, or space constraints, thereby avoiding the need for extensive modifications after using standard cranes.

Specialized Cranes for the Aerospace Industry Product Features

Selection Based on Production Environment: Protection ratings and equipment configurations are determined based on temperature, dust, gases, humidity, and cleanliness requirements.

Suitable for Multiple Production Stages: A single unit can handle the lifting and transport of raw materials, molds, tooling, semi-finished products, and production equipment components.

Customized Lifting Attachments: Clamps, lifting beams, and multi-point lifting devices can be designed for cylindrical parts, sheet metal, molds, or irregular components.

Minimize Plant Modifications: Choose from low-headroom, European-style, or compact designs to maximize effective lifting height in existing workshops.

Work Area Safety Controls: Configure operational zone restrictions, electronic fences, and anti-collision functions to prevent entry into restricted workstations.

Simplify Multi-Equipment Management: Supports unified maintenance standards, spare parts management, and operational status logging, reducing the cost of managing equipment across multiple workshops.

High-Precision Aerospace Cranes | Henan Mine Crane

Overhead Cranes for the Aerospace Industry

Overhead Cranes for the Aerospace Industry Applications: Aerospace composite manufacturing, production of large rocket casings, and assembly of launch tubes and long components

Overhead Cranes for the Aerospace Industry Description: These large-span, high-precision Overhead Cranes are suitable for aerospace production facilities with wide spans, long components, and stringent positioning requirements.

These Overhead Cranes for the Aerospace Industry can cover multiple production stations to lift and transport large composite casings, sealed structures, launch tubes, and related tooling.

To address customer concerns regarding main girder deflection over long spans, sway of long workpieces, and insufficient positioning accuracy, the Overhead Cranes enhances stability during cross-area handling through structural optimization, variable-frequency speed control, and specialized lifting device design.

Overhead Cranes for the Aerospace Industry  Features

Wide-span operational coverage: Covers multiple manufacturing, storage, and assembly areas while minimizing the number of factory columns and intermediate supports.

Main girder deflection control: Optimizes the main girder cross-section based on span and actual load to reduce the impact of wide-span operation on positioning accuracy.

Balanced lifting of long components: Can be configured with multi-point lifting beams or specialized lifting attachments to reduce the risk of uneven loading and bending in long cylindrical components.

Flexible start-stop control: Reduces load impact through acceleration and deceleration curves, protecting composite surfaces and precision joints.

Precise positioning across workstations: Balances long-distance transport efficiency with the low-speed, fine-motion requirements of assembly areas.

Customized to facility conditions: Lifting capacity, span, lifting height, track gauge, and control methods can be designed according to the workshop layout.

Downward Rotating Aerospace Crane | Henan Mine Crane

Automatic Rotating Overhead Crane

Rotating Overhead Crane Industries : Precision assembly in aerospace, composite shell production, and handling of rocket nozzles and large launch tubes

Rotating Overhead Crane Description: This millimeter-level high-precision downward-rotating Crane is primarily designed to address the challenges of lifting aerospace components that are “heavy, long, high-value, and require precise positioning in confined spaces.”

Through a modular structure, finite element analysis, and a dual-lifting-device design, this  Overhead Crane enhances overall rigidity and load control capabilities, achieving positioning accuracy within 1 millimeter.

The  Overhead Crane two lifting points provide more stable support for long workpieces, reducing tilting, localized stress, and component deformation caused by single-point lifting. It is suitable for production stations requiring precise rotation, alignment, and assembly.

 

Rotating Overhead Crane Features

Positioning accuracy within 1 millimeter: Meets the requirements for precision assembly, fixture alignment, and placement in confined spaces, reducing the need for repeated manual adjustments.

Proprietary dual-lifting-device design: Two lifting points jointly support long workpieces, improving load distribution and reducing the risk of workpiece tilting and deformation.

Downward rotation operation mode: The lifting device can perform directional adjustments beneath the main beam, facilitating angle adjustments of the workpiece according to production station requirements.

Finite Element Analysis (FEA) Structural Optimization: Analysis of the main beam and key stress points balances structural strength, stiffness, and the overall weight of the unit.

Modular Structure: Facilitates configuration adjustments based on span, lifting capacity, lifting height, and sling type, shortening the design cycle for custom solutions.

Traceable Operational Data: Records equipment status, operational information, and fault data, providing a basis for quality management and maintenance analysis.

Aerospace Production Crane Solution | Henan Mine Crane

Space Launch Overhead Cranes

Aerospace Overhead Cranes Industries : Launch vehicle manufacturing, spacecraft final assembly, testing and inspection, launch mission preparation

Aerospace Overhead Cranes Description: Overhead Cranes for space launch mission support are used to lift and transport launch vehicles, spacecraft components, and auxiliary equipment during production, assembly, testing, and launch preparation.

Designed to address the characteristics of space missions—fixed schedules, high downtime costs, and high-value loads—the Aerospace Overhead Cranes can be customized based on facility span, headroom, workpiece weight, and assembly precision, while ensuring reliable operation, low-speed positioning, and safety redundancy.

The Aerospace Overhead Cranes stable starting and braking processes minimize impact on components, helping customers improve lifting efficiency at critical production stages and enhance mission support capabilities.

Aerospace Overhead Cranes Features

Mission-Critical Design: Work classes are selected based on production cycles and equipment usage frequency to meet the hoisting demands of continuous production and critical launch missions.

Low-Speed Fine-Motion Positioning: The crane operates at low speeds when approaching assembly stations, reducing the need for repeated adjustments and improving component alignment efficiency.

Smooth Lifting and Braking: Minimizes the impact caused by sudden acceleration and emergency stops on precision components and lifting attachment points.

Multi-level safety protection: Configurable overload protection, hoisting limit switches, travel limit switches, emergency stop, and anti-collision protection.

Adaptable to existing facilities: Unit dimensions can be optimized based on rail height, roof truss load-bearing capacity, and equipment layout to reduce facility retrofitting costs.

Clear maintenance schedule: Key components are easy to inspect and replace, supporting preventive maintenance and reducing the risk of downtime during critical production phases.

Smart Aerospace Overhead Crane Solution | Henan Mine Crane

Downward-Rotating Overhead Crane

Downward-Rotating Overhead Crane Industries : Aerospace manufacturing, rocket casing production, composite component handling, assembly of long workpieces

Downward-Rotating Overhead Crane Description: The downward-rotating overhead crane is a high-precision material-handling system designed for large, long, and irregularly shaped components in the aerospace industry.

The Downward-Rotating Overhead Crane employs closed-loop vector control via a PLC and variable frequency drive, enabling smooth hoisting, low-speed travel, and precise positioning, thereby reducing swaying, collisions, and surface damage to rocket casings, composite cylinders, and other high-value components during handling.

The automatically telescoping and rotating lifting device can adjust its position according to the workpiece’s length and assembly orientation, reducing safety risks associated with manual assistance during rotation and repeated hook drops by the Downward-Rotating Overhead Crane.

Downward-Rotating Overhead Crane Features

Closed-loop vector control: Ensures smoother hoisting, travel, and rotation movements, meeting the requirements of aerospace components for low-speed operation and precise positioning.

Automatic telescoping and rotating lifting device: The servo-controlled lifting device automatically adjusts its length and angle to accommodate long cylindrical, beam-shaped, and irregularly shaped workpieces of various specifications.

Anti-sway control: Reduces swaying during the start, stop, and turning of heavy loads, preventing collisions between precision components and equipment, walls, or personnel.

Autonomous obstacle avoidance: High-precision sensors detect obstacles within the work area, reducing risks caused by operator error and blind spots during lifting operations.

Multiple control modes: Supports remote, manual, and tablet controls, allowing flexible switching based on assembly, maintenance, and emergency operation needs.

Full Lifecycle Monitoring: Remotely view equipment status, operating logs, and fault information to facilitate maintenance scheduling and reduce unplanned downtime.

Fart Delivery & Service

Eiciant manulacturing andeglobelsericeresp
5100+
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3500+
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1.62m
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