Customization: | Available |
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After-sales Service: | Yes |
Max. Lifting Height: | 10.8m |
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SPIDER CRANE
Structure
The spider crane features a modular boom system constructed with high-strength WGJ785 steel, consisting of four fully hydraulic telescopic sections and an optional three-meter jib extension. Its self-stabilizing X-type outriggers equipped with pressure sensors enable automatic leveling on slopes up to 5 degrees. The hybrid chassis combines steel track crawlers with a ground pressure of 0.35 kg/cm² and retractable rubber wheels, allowing quick transitions between indoor and outdoor environments.
Working Principle
Powered by a Yanmar 4TNV98T diesel engine and a Kawasaki K3V112DT hydraulic pump, the spider crane operates through a precise hydraulic system that drives boom movements, rotation, and travel functions. The intelligent control system includes a load moment indicator (LMI) that continuously monitors load weight with ±2% accuracy, working radius, and boom angle. Operators can utilize a 2.4 GHz frequency-hopping spread spectrum (FHSS) wireless remote control for precise positioning up to 100 meters, ensuring safe and efficient handling in complex environments.
Applications
Applications span urban construction projects such as glass facade installation in high-rise buildings and HVAC unit placement in commercial complexes, energy sector operations including wind turbine maintenance and solar panel array assembly, as well as marine engineering tasks like engine room component handling in shipyards and port container transfers. Its compact design and 360-degree continuous rotation capability make it ideal for confined spaces in metro station construction and historical building renovations.
Our spider crane (spider lift) demonstrates outstanding advantages in confined spaces, complex terrains, and precision lifting scenarios (both indoor and outdoor) thanks to its compact and flexible design, multi-leg stabilization system, and 360° full rotation capability. Its lightweight body allows easy access to areas where traditional cranes cannot operate, such as basements, rooftops, or historical buildings, while the hydraulic outrigger system distributes pressure to protect fragile surfaces. Remote operation and modular design further enhance safety and efficiency, while its low-noise, zero-emission features make it ideal for environmentally sensitive areas. As a result, it has become an intelligent lifting solution for modern engineering projects, combining adaptability, cost-effectiveness, and safety.