The precise control of the machining process of the electro-hydraulic servo CNC bending machine is achieved through a series of advanced technologies and operations.
Firstly, the electro-hydraulic servo CNC bending machine uses CAD software to draw the processing graphics of the sheet metal, and inputs the required processing data into the computer numerical control system. These processing data include key parameters such as the size, bending angle, and bending radius of the sheet metal.
Secondly, the operation panel on the equipment control cabinet allows operators to input and adjust these parameters. Once the parameters are set, the control system will calculate the motion trajectory of the robotic arm based on these parameters. This calculation process is very precise, ensuring that the robotic arm can move along the predetermined path.
Next, the hydraulic system controls the expansion and contraction of the oil cylinder based on the signals sent by the control system. Due to the use of electro-hydraulic servo system control, the hydraulic system can accurately control the speed and position of the oil cylinder, thereby achieving precise motion of the robotic arm.
During the machining process, the electro-hydraulic servo CNC bending machine also monitors the machining status in real time and fine tunes the machining process through a feedback mechanism. This real-time feedback and fine-tuning ability ensures the stability and accuracy of the machining process.
In summary, the electro-hydraulic servo CNC bending machine achieves precise control of the machining process through advanced control systems, precise parameter settings, precise control of hydraulic systems, and real-time feedback and fine-tuning mechanisms. This precise control not only improves product quality and consistency, but also reduces scrap rates and improves production efficiency.
How to achieve precise control of the machining process for the electro-hydraulic servo CNC bending machine of Manhart (Guangdong) CNC Machine Tool Co., Ltd?
14
Th5