I&T Solution |
Plan for a Vacuum-Adhesion Wall-Climbing Robot for Bridge Tower Work
(REF: S-1716) |
Trial Project |
|
Solution Feature |
- Advanced Vacuum Pressure Control Technology: The wall-climbing robot employs advanced vacuum pressure control technology, enabling stable adhesion and agile movement on rough and uneven wall surfaces.
- High Mobility and Load Capacity: The robot can achieve a maximum movement speed of over 0.25 meters per second and carry a net load of up to 5 kilograms, allowing it to perform tasks such as grinding and painting on wall surfaces.
- Wind Resistance: The robot's vacuum pressure control can counteract the interference of environmental wind speeds, functioning normally under wind speeds exceeding 30 kilometers per hour.
- Comprehensive Safety Features: The wall-climbing robot system is equipped with complete safety protection devices and measures, ensuring that the robot will not fall to the ground in the event of an accident.
- Remote Control and Backup Systems: The robot system features remote visual control, dual power safety backups, and spatial position recording, with all devices operating without occupying traffic lanes.
|
Trial Application and Expected Outcome |
- Survey and Analysis: Investigate and analyze the structural features of the bridge towers and the environmental characteristics at the base of the Shenzhen Bay Highway Bridge through design drawings and/or on-site observation.
- System Design: Develop an overall plan for the wall-climbing robot system based on the characteristics of the bridge. Design the wall-climbing robot, construction tools, and surrounding systems.
- Manufacturing and Testing: Fabricate the robot system and conduct functionality tests on the robot and construction tools to obtain key information on construction speed and quality.
- Delivery and Training: Deliver the robot system to the Hong Kong construction unit and provide guidance and training on the robot's usage, safety risks, and protective measures.
- On-Site Technical Support: Accompany the construction unit to the site, providing technical guidance to achieve the expected outcomes of unmanned high-altitude bridge tower construction without lane occupation.
|
Additional Solution Information |
附件1:方案說明(可公開).pdf
|
Info on I&T Solution Provider |
Solution Provider | : | Hangzhou Fuya Science and Technology Co., Ltd. | Address | : | Room 1109, 1st Building, 371 Mingxing Road, Xiaoshan District, Hangzhou, Zhejiang 311200, China | Contact Person | : | Xin LI |
Position | : | CEO | Tel | : | +86-15868873839 | Email | : |
vortexdoctor@zju.edu.cn |
|