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Dynamic automatic batching machine
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Product details
Dynamic batching machine description: The dynamic batching machine is suitable for on-site continuous batching requirements, such as fertilizer batching and coking batching. These sites have high requirements for the continuity of ingredients, and generally do not allow intermediate ingredient stops. They have strict requirements for the ratio of various materials. The dynamic batching system usually uses electronic belt scales or nuclear scales as measuring equipment, and the host is equipped with PID regulation and alarm functions, which can achieve automatic control of individual warehouses.

2、 Application and characteristics of dynamic batching machine:
In various industrial production processes, it is necessary to quantitatively feed a certain material or multiple materials to ensure a stable production process or accurate material comparison. This is of great significance for the smooth completion of the production process and precise control of product quality.
The DCS series weighing feeder is designed for continuous weighing and batching in industries such as cement, chemical, and metallurgy. The feeder is equipped with electronic devices and variable frequency speed control devices, which can accurately weigh and adjust the speed of bulk materials during operation to control the feeding amount.
3、 Equipment composition of dynamic batching machine:
1. Belt feeder, including conveyor bracket, skirt ring belt, motor, reducer, and frequency converter.
2. Electronic weighing device, including feeder controller, weighing sensor, adjustment sensor, and weighing rack.
3. Electrical control system, including frequency converter control cabinet and instrument control cabinet.
4. Clean the scraper.
4、 Working principle of dynamic batching machine:
The tape/spiral feeder checks the quality of the material passing through it through a weighing frame to determine the mass of the material on the tape; A digital speed sensor located at the tail continuously measures the operating speed of the feeder, and the pulse output of the speed sensor is proportional to the speed of the feeder; The speed signal and weight signal are fed into the feeder controller, which is processed by a German microprocessor to generate and display cumulative/instantaneous flow rate. The flow rate is compared with the set flow rate, and the frequency converter is controlled by the output signal of the control instrument to achieve the requirement of quantitative feeding.
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