high-speed blenderIt is formed by the high-speed rotation of a specially designed impeller with disc serrations in the material to create a turbulent zone. In this area, pigment particles are subjected to strong shear and impact effects, causing them to quickly disperse into the paint slurry. But at this time, without generating high pressure, pigment particles cannot be well dispersed and collected. A laminar flow is formed outside this area, divided into upper and lower streams, allowing the paint slurry to circulate and stir thoroughly and mix evenly.
The high-speed mixer adopts various specifications of motors such as electromagnetic speed regulation, variable frequency speed regulation, and three speed regulation, which operate stably and powerfully, suitable for various viscosities. There are two lifting forms, hydraulic and mechanical, which can rotate freely and adapt to various positions; Ordinary and explosion-proof configurations, safe and reliable, easy to operate and maintain; Strong production continuity, rapid dispersion and dissolution of materials, good dispersion effect, high production efficiency, smooth operation, and easy installation. There are different powers and models for viscosity and processing capacity of different materials.
Equipped with thermochromic, fluorescent, color changing, rust proof, or other new properties, modern coatings and inks may contain new raw materials with * combinations, but fundamentally they still rely on well mixed and stirred formulations. The use of different degrees of mixing and dispersion by a high-speed mixer on a product can affect its color, gloss, conductivity, stability, adhesion, curing rate, weather resistance, and other performance characteristics. Therefore, good business acumen is needed to optimize the mixing process. Even traditional products and sophisticated processes can benefit from a re strategic evaluation of mixing operations.
Various dispersing tools are used in the production process of coatings and inks. Some of these technologies are relatively new solutions to ancient manufacturing problems. The selection of a mixer should be based on many factors, including viscosity curve, shear requirements, addition sequence, and production volume.
This machine adopts various specifications such as electromagnetic speed regulation, variable frequency speed regulation, and three speed regulation, with stable and powerful operation, suitable for various viscosities; There are two lifting modes, hydraulic and mechanical, which can rotate freely and adapt to various positions; Ordinary and explosion-proof configurations, safe and reliable, easy to operate and maintain; Strong production continuity, rapid dispersion and dissolution of materials, good dispersion effect, high production efficiency, smooth operation, and easy installation. High speed mixers have different powers and models based on the viscosity and processing capacity of different materials.
Precautions for high-speed mixers:
1. During the operation of the high-speed disperser, the operator is not allowed to leave the post and there is no one operating it. If the operator has any problems, they must find someone to take care of them to prevent various accidents from happening.
2. It is strictly prohibited to idle the spindle to prevent equipment accidents caused by spindle bending. Keep starting and stopping slowly.
3. During the dispersed mixing process, it is strictly prohibited for any objects to fall into the tank or foreign objects. The vehicle must be stopped immediately to remove them, and it is not allowed to drive to remove foreign objects to avoid personal accidents.
4. During the dispersion operation of the high-speed mixer, be careful not to let the lifting and stirring spindle touch the bottom of the cylinder or cause the disperser to approach the liquid level, resulting in material splashing or equipment damage.
5. During the process of dispersing, often touch the motor casing with your hand to observe the motor heating and abnormal noise.
6. When the high-speed disperser stops operating, the spindle must be lowered to the lowest position to prevent collision and damage to the equipment, ensuring safety.