Technical parameters
Weight of Potsticker: 35g, 40g
Model: GQ-2-GT
Capacity: 80-120 pcs/min
Power supply: three-phase 380V 50Hz/60Hz
Power: 13.39Kw
Gas source: ≥ 0.6MPa
Size: 2920x2830x2365mm
Weight: 1360kg
Product overview
The machine is made of SUS304 stainless steel sheet metal, and the surface of the body is treated with random patterns
and sprayed with anti fingerprint paint technology, making the appearance of the whole machine show the beauty of
simple but not simple industrial design. The all SUS304 stainless steel frame provides higher anti-corrosion performance,
greatly extending the service life of the equipment and ensuring better cleanliness.
The main body of the product molding mold installation is a high-precision hollow rotating platform with independent
intellectual property rights, and a high inertia servo motor provides power for the hollow rotating platform.
Using servo motors for control, the central control rotating platform can flexibly set different dynamic stop ratios according
to product needs, greatly improving the basic performance of the equipment and achieving precise control for different products.
The filling mechanism no longer uses the traditional lever mechanism with cam transmission, but directly uses servo motors
with high-precision imported reduction motors. The weight and start stop time of the filling can be directly set on the
human-machine interface through parameter settings, ensuring continuous and accurate filling weight.
All independent reducers of the whole machine are imported high-precision reducers, greatly improving equipment accuracy
and service life. A new design concept is adopted, reducing parts by about 5%. Greatly reduces the need for maintenance parts
during equipment use.
The equipment controller no longer uses the traditional PLC control, but adopts advanced industrial computers. It has the advantages
of high reliability, real-time response processing, easy scalability, rich digital and analog input and output interfaces, and can adapt
to harsh industrial field environments.