1. Low-carbon: Saves 70% of steel usage, 95% of electricity consumption, and 30% of construction consumables. 2. Economic: Applicable to all building structures above 45 meters. The higher the floor, the more significant the economic benefits, with a comprehensive cost savings of 30% to 60% per building.
3. Practicality: It can be applied to various structural building bodies. 4. Safety: It adopts a fully automatic synchronous control system and a remote control system to proactively prevent unsafe conditions. Additionally, it employs a multi-set star wheel anti-fall device to prevent failures such as reset device malfunctions, ensuring that the protective frame is always in a safe state and effectively prevents falls.
5. Intelligentization: The system employs a microcomputer-based load control technology, capable of displaying the lifting status in real-time and automatically collecting load values from each lifting position. When the load at a particular position exceeds 15% of the design value, an audible and visual alarm will be triggered, indicating the alarming position. If the load exceeds 30% of the design value, the entire lifting equipment will automatically shut down until the fault is resolved. This effectively mitigates potential safety hazards caused by excessive overload or underload.
6. Mechanization:
Achieve the function of low assembly and high use. The assembly is completed at the bottom of the main building structure in one go, attached to the building, and continuously raised as the height of the floors increases. The entire operation process does not occupy other lifting machinery, greatly improving construction efficiency. Moreover, the on-site environment is more user-friendly, management and maintenance are easier, and the effect of civilized operation is more prominent.