Details Introduction
Product Introduction
V-type mixers are used for uniform mixing of powders. They are suitable for mixing two or more dry powders or granular materials in industries such as pharmaceuticals, food, chemicals, metallurgy, and electronics. The unique structure of the V-type mixer's mixing cylinder uses mechanical transmission to cause the material inside the V-shaped cylinder to reciprocate and tumble, achieving uniform mixing. The mixing cylinder of a V-type mixer is generally made of stainless steel with polished inner and outer walls. Its structural design prevents material accumulation, and it features high speed, short mixing time, and easy cleaning.
Product Uses
It is suitable for mixing two or more dry powder or granular materials in industries such as pharmaceuticals, food, chemicals, metallurgy, and electronics.
Features
1. It has a high mixing efficiency for materials with similar particle size and density.
2. It is not easy to break the mixed particles.
3. Without mechanical extrusion and severe abrasion, it can maintain the integrity of material particles.
4. The inside and outside of the barrel are polished and designed with smooth transitions to avoid cross-contamination of materials.
5. The cylinder material can be selected from carbon steel, stainless steel, nylon, etc.
6. It has a built-in timer function.
Specification | Working volume (L) | Total volume (L) | Loading coefficient | Mixing power (KW) | Rotational speed (r/min) |
|---|---|---|---|---|---|
V-5 | 2 | 5 | 0.4 | 0.37 | 50 |
V-10 | 4 | 10 | 0.4 | 0.37 | 50 |
V-20 | 8 | 20 | 0.4 | 0.75 | 33 |
V-50 | 20 | 50 | 0.4 | 1.5 | 33 |
V-100 | 40 | 100 | 0.4 | 1.5 | 23 |
V-200 | 80 | 200 | 0.4 | 3 | 19 |
V-300 | 120 | 300 | 0.4 | 4 | 14 |
V-500 | 200 | 500 | 0.4 | 7.5 | 12 |
Working principle
The V-type mixer consists of two cylindrical containers welded together, with the shape of the containers being asymmetrical relative to the axis. Due to the rotational motion, powder particles continuously alternate, divide, and merge within the inclined cylinders; the material is randomly transferred from one zone to another, while the powder particles slide between each other, resulting in multiple spatial superpositions. The particles are constantly distributed on newly generated surfaces, thus repeatedly undergoing shearing and diffusion mixing.







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