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E-mail
1060309408@qq.com
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Phone
02161056666
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Address
No. 5, Lane 369, Chuangye Road, Kangqiao, Pudong, Shanghai
ABB (China) Co., Ltd
1060309408@qq.com
02161056666
No. 5, Lane 369, Chuangye Road, Kangqiao, Pudong, Shanghai
IRB 5510 has the same advanced features as IRB 5500. Compared to similar robots on the market, it has a compact appearance and occupies less space. As a multifunctional robot, the IRB 5510 is particularly suitable for tasks such as small workpiece spraying, flame treatment, and door opening applications.
Based on the driver and design principles of IRB 5500, the acceleration of robot operation is improved, which provides the possibility for IRB 5510 to be equipped with advanced features such as "StayOn". Previously, the IRB 5500 had successfully implemented this feature. IRB 5510 also achieves process optimization and provides shorter cycle times and precise path control, resulting in outstanding spray quality.
For industries where cycle time determines efficiency, such as automotive small parts processing and general industry, these features of IRB 5510 are particularly important. To meet the needs of general industrial customers, it has been simplified in terms of operability, robotic arm maintenance, and software support, while also helping to reduce operating costs and ensuring sufficient supply of spare parts.
The IRB 5510 is also equipped with ABB hollow wrist technology. This high-precision hollow wrist adopts a linear design, which can reduce the wear of spray paint pipes and air supply hoses, further improving the reliability of the robot.
In addition, the wrist of this type of robot can rotate 140 ° in any direction, making the IRB 5510 one of the most functional and easily programmable spraying robots in its class.
The IRB 5510 is also equipped with ABB *'s Integrated Processing System (IPS), which has closed-loop regulation capabilities as well as high-speed spray painting and airflow control functions. IPS can increase process response times and reduce paint and solvent waste. The synchronization of spraying and robotic arm movements can improve conversion efficiency and reduce overspray, thereby reducing paint waste and improving cost-effectiveness.