Sep 29, 2021 Leave a message

Micro nano powder packaging machine introduces microcomputer technology into packaging machinery

Micro nano powder packaging machine applicable materials:

Silicon dioxide (white carbon black, the white carbon black, fumed silica), nanometer light calcium, light calcium, calcium modified light, activation of coarse whiting, coarse whiting, coal calcined kaolin, washed kaolin and modified washed kaolin, talc, pyrophyllite, bauxite, calcium stearate, coarse graphite, graphite, activated clay, carbon black, calcium hydrogen phosphate, calcium phosphate, nano zinc oxide, magnesium hydroxide, Iron red powder dyes, dyes, diatomite, refractory materials, nano titanium dioxide, silica fume powder, etc.

Product features:

1. Multi-stage frequency conversion design, high packing accuracy.

2. Core rotating parts are made of casting, wall thickness of more than 10mm, durable without deformation, excellent stability.

3. Explosion-proof control system can be equipped to meet the packaging requirements of conductive materials.

4. Dust-free operation, low noise, no overflow, reduce powder consumption.

5. Imported electronic weighing system, automatic metering, automatic blanking, automatic shutdown.

6. The ex-factory products have gone through three times of independent inspection, with more than 50 main inspection standards, strictly ensuring the ex-factory quality.

7. Mature technology, low failure rate, 15 years of market use.

When the quantitative packaging machine enters the automatic operation state, the weighing control system opens the feeding door and begins to add material, the feeding device is fast, medium and slow three level feeding mode; When the material weight reaches the fast feeding set value, stop the fast feeding, keep the medium feeding; When the material weight reaches the fast feeding set value, stop the medium feeding, keep the slow feeding; When the material weight reaches the final set value, close the feeding door and complete the dynamic weighing process; At this time, the system detects whether the bag clamping device is in a predetermined state. When the bag has been clamped, the system sends a control signal to open the unloading door of the weighing bucket, and the material enters the bag. After the material is put out, the unloading door of the weighing bucket is automatically closed. After unloading the material, loosen the bag clamping device, and the bag automatically falls down. After the bag falls down, it is stitched and transported to the next station. The cycle repeats itself.


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