How Does The Mixing Shaft Of The Stainless Steel Mixing Tank Work?

Jun 19, 2019 Leave a message

The device can be equipped with heating or cooling devices according to the process of the user's product to meet different process and production needs. The stirring shaft of the stainless steel mixing tank is usually driven by an electric motor. Since the rotating speed of the stirring equipment is generally low, the motor is mostly used in combination with the transmission, and sometimes the frequency converter is used for direct speed regulation.

Transmissions for stainless steel stirred tanks to include motors, transmissions, couplings, bearings, and racks, etc. The agitation drive mechanism usually adopts a combination of an electric motor and a transmission or a motor with a frequency converter to achieve the required rotation speed.

The power output from the stainless steel stirred tank motor is transmitted to the agitator through the agitator shaft, so the agitator shaft must have sufficient strength. At the same time, the agitator shaft must be connected to the agitator and through the shaft sealing device as well as bearings, couplings, and other parts, so the agitator shaft should also have a reasonable structure, high machining accuracy, and tolerance. According to the support situation, the agitator shaft can be divided into a cantilever type and a single span type.

The cantilever type stirring shaft does not have an intermediate bearing or a bottom bearing inside the mixing device, so the maintenance and repair are convenient, especially the biological, food or medicine mixing equipment with high cleanliness requirements, and the components in the equipment are reduced, so it is preferred.

In order to eliminate the swirling phenomenon of the liquid in the stirring container, the stirred liquid is tumbling up and down to achieve uniform mixing, and it is usually necessary to add a baffle in the stirring container.

In the agitated vessel, the fluid can flow to the agitator in various directions, the length of the fluid varies, and the flow guide can be used to determine the flow rate and direction for determining the flow condition.


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