Detailed Introduction
Fully closed-loop gantry machining center
Fully closed loop generally refers to grating feedback. XYZ axis equipped with grating.
The Z-axis spindle ram adopts a hybrid method of 65 heavy-duty wire gauge and widened hard gauge, which not only increases the wear resistance of the guide rail but also increases the rigidity of the machine tool.
The fully closed-loop gantry machining center refers to a machining center that realizes information and control data interaction between machine tools, control systems, scheduling systems, sensors, actuators, tools and other links to achieve information sharing, data exchange and collaborative work. a state. In this state, the machining center can automatically diagnose and deal with problems that arise during processing, adjust processing parameters, improve processing efficiency and quality, and realize process automation and informatization.
Characteristics of fully closed-loop gantry machining center
1. Global nature: The fully closed-loop environment of the machining center refers to all links that occur in the entire production process, rather than just limited to the information and data interaction of a certain piece of equipment or a certain link.
2. High consistency: All information and data in the fully closed loop of the machining center follow the same standards and have high consistency and interchangeability.
3. Real-time: The fully closed-loop machining center can respond to various changes in a short time, and can self-adjust and correct at an appropriate speed, thereby protecting the real-time nature of the production process.
4. Diversity: The fully closed-loop machining center supports the processing of a variety of workpieces and can adapt to different industrial industries, different processes and processing requirements.
Advantages of fully closed-loop gantry machining center
1. Improve production efficiency: The realization of a fully closed-loop machining center can automatically adjust processing parameters, diagnose and handle processing faults, thereby improving production efficiency and stability.
2. Good precision and stable quality: The fully closed-loop machining center can achieve appropriate speed response, accurate control and self-adjustment, thereby improving processing accuracy, reducing errors and losses, and improving product quality stability.
3. Information sharing and collaborative work: The fully closed-loop machining center can realize information sharing and data interoperability among various links such as machine tools, control systems, scheduling systems, sensors, actuators, and tools, achieve collaborative work, and improve processing efficiency and quality.
4. Traceability: The fully closed-loop processing center can record, track, and store various data and information during the processing process, providing excellent data support for traceability of product quality.
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