XCA4000
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XCA4000 ultra‑large all‑terrain crane effectively solves core bottlenecks of modern high‑power wind‑power construction: high‑altitude lifting‑performance attenuation, insufficient under‑hook clearance and low transition efficiency of large‑tonnage hoisting equipment. Its 86 m six‑section U‑shaped main boom cooperates with adjustable wind‑power jib, delivering hundreds of working‑condition combinations to cover 12‑15 MW wind‑turbine hoisting requirements at 170‑190 m hub height. The self‑traction cable‑wind system cancels manual rope‑pulling operation during blade installation, improving on‑site safety and assembly precision. High‑performance flexible boom control optimizes arm stress distribution under ultra‑high‑altitude heavy‑load status, cutting single‑unit wind‑turbine installation time by 20‑30%. The 11‑axle multi‑mode steering chassis with 8 driving axles achieves max travelling speed of 70 km/h and 39% gradeability, realizing self‑propelled heavy‑load transfer above 400 tons without full disassembly‑assembly, adapting complex mountain wind‑farm roads with sharp curves and steep slopes. Multi‑span outrigger system and large‑capacity combined counterweight provide powerful anti‑overturning moment for extreme hoisting conditions. Intelligent active safety control system based on boom attitude breaks limitation of conventional load‑moment limiter, with multi‑point real‑time sensor monitoring, overload interlock and fault self‑diagnosis. Full‑function wireless remote‑control handles superlift, counterweight shifting and outrigger expansion operations. Heavy‑duty winch, planetary reducers and normally‑closed brakes guarantee stable ultra‑heavy‑load hoisting. Spacious panoramic shock‑absorbing operator cabin provides ergonomic long‑time operation environment for super‑heavy‑duty jobs.
World‑class Ultra‑heavy Lifting Performance:
Rated 4000‑ton lifting capacity; achieves 230 t lifting capacity at 190 m height, max combined working height up to 205 m, fully satisfies installation demands for 12‑15 MW large‑scale on‑shore wind turbines.
Wind‑power‑optimized Self‑traction Cable‑wind System:
Cancels manual rope‑guiding work for blade assembly; enhances hoisting stability and site safety for large wind‑blade installation.
High‑efficiency Flexible Boom Technology:
Suppresses high‑altitude performance attenuation, optimizes boom stress distribution; reduces single wind‑turbine installation cycle by 20‑30% and improves overall project progress.
Powerful 11‑axle Chassis Mobility:
11‑axle all‑steering & 8‑drive chassis; max travel speed 70 km/h, 39% gradeability, excellent trafficability for mountainous, curved and slope wind‑farm job‑sites.
Outstanding Heavy‑load Self‑propelled Transfer:
Supports over 400‑ton self‑driving transit, drastically reduces massive disassembly‑assembly workload compared with crawler cranes and shortens cross‑site relocation time.
Boom‑attitude‑based Active Safety Control:
Beyond traditional load‑moment limiter function; multi‑sensor real‑time monitoring, whole‑process risk early‑warning and interlock protection for ultra‑high‑altitude heavy‑load hoisting.
Full‑function Wireless Operation:
Wireless remote‑control for superlift, counterweight displacement and outriggers, lowering manual‑labor intensity and improving operation convenience.
Heavy‑duty Reliable Core Components:
High‑strength boom material, planetary reducers, normally‑closed brake winch system, ensuring long‑term stable operation under cyclic ultra‑heavy‑load conditions.
Item | Specification |
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Model | XCA4000 |
Type | All‑Terrain Crane |
Rated Lifting Capacity | 4000 Ton |
Main Boom | 6‑section U‑shaped telescopic boom, 86 m |
Optional Wind‑power Jib | 50‑110 m dedicated lattice jib |
Max Combined Working Height(Main Boom+Jib) | 205 m |
Key Wind‑power Working Condition | 230 t @190 m lifting height |
Engine Rated Power | 566 kW |
Chassis | 11‑axle, all‑steering, 8‑drive multi‑mode steering chassis |
Max Travelling Speed | 70 km/h |
Max Gradeability | 39 % |
Max Self‑propelled Transfer Weight | Over 400 t |
Core Feature | Flexible boom tech, self‑traction cable‑wind system boom‑attitude active safety control, heavy‑load self‑haul transfer |
Control System | Intelligent active safety monitoring, full‑function wireless remote control |
‑ On‑shore wind‑farm installation & maintenance for 8‑15MW large wind turbines
‑ Petrochemical plant super‑large heavy‑equipment installation and overhaul
‑ Large‑scale energy project heavy steel‑structure hoisting
‑ Power station and energy base super‑heavy component lifting
‑ Large‑scale national‑level infrastructure ultra‑heavy‑duty hoisting
‑ Heavy‑duty equipment relocation for complex mountain energy projects
‑ Large‑scale complex emergency rescue hoisting assignments
A: XCA4000, XCMG world‑first 11‑axle 4000‑ton ultra‑large all‑terrain crane, which can lift 230 tons at 190‑meter height for high‑power wind‑turbine construction.
A: It is specially optimized for 12‑15 MW large wind‑turbine projects. It is equipped with 86 m main boom, optional 50‑110 m wind‑power jib, self‑traction cable‑wind system, flexible anti‑attenuation boom technology, 11‑axle 8‑drive chassis with over 400‑ton heavy‑load self‑propelled transfer capacity, and boom‑attitude‑based active safety control system to guarantee ultra‑high‑altitude hoisting safety and efficiency.
A: We mainly supply brand‑new XCA4000 all‑terrain crane. Used units are available subject to stock; please send inquiry for stock status and quotation.
A: FOB, CIF, CFR terms are acceptable. Lead time depends on stock and production schedule, please submit your inquiry for latest delivery arrangement.
A: Complete operation‑maintenance manuals, remote technical consultation, spare‑parts supply and video‑based technical guidance. Overseas on‑site service is negotiable.
A: Yes. Dedicated wind‑power lattice jib, various counterweight combinations, multi‑spec hook blocks and other attachments can be selected according to your actual hoisting‑project requirements.
A: XCA4000 ultra‑large all‑terrain crane adopts 11‑axle multi‑drive all‑steering chassis, supporting self‑propelled heavy‑load transfer. It avoids full disassembly‑assembly work required by crawler cranes when relocating between wind‑turbine positions, greatly shortening construction cycle for mountain wind‑farm projects.