Company Purpose:
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Introduction:
In the working principle, it has obvious difference with the ordinary vibrating sieve, the probability sieve USES the probability principle actively, thus completes the entire screening process with the very fast speed. The time of material screening is only 1/3 ~ 1/20 of that of flexible vibrating screen, and the processing capacity of unit screen surface area is 5 ~ 10 times larger than that of ordinary vibrating screen. Therefore, the screening carried out in the probability screen belongs to “rapid screening”.
The overall structure of probability screen is box structure.
Structure:
The overall structure is mainly composed of these parts: feed inlet with shunt device, support, overhaul cover with fast bolt, vibration spring, vibration motor, screen body and other accessories. The vibrating spring is connected to the vibration bracket to support the sieve body. The vibration motor and the installation bridge of the sieve body are arranged and installed. The repair cover with quick bolt is located on the upper side of the screen body, which makes it convenient and quick to open the cover to check the use of the screen.
Features & Advantages:
1. Vibration probability screen volume is small, light weight, screen hole is not easy to plug;
2. A screening machine can obtain several products of grain size at the same time.
3. However, due to the limitation of probabilistic screen structure, the configuration of a single device is more complicated when a variety of products are produced.
4. The main weakness is the low screening accuracy. The materials with different particle size are mixed with each other to some extent.
5. Based on this, the screening process on the probability screen is called approximate screening.
Technical Parameters:
Model |
Sieve surface |
Material granularity mm |
Drive motor |
vibration (1/min) |
double amplitude mm |
production capacity t/h |
screening efficiency |
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Screen surface number |
screen surface structure |
mesh size (mm) |
screen area ㎡ |
screen surface inclination (° ) |
YZO model |
Power(kw) |
||||||
GLS0615 |
2-8 |
Braid |
~50 |
0.9n |
5-30 |
≤50 |
YZ08-6 |
0.55×2 |
960 |
5-8 |
15-50 |
≥95% |
GLS0820 |
1.6n |
YZ010-6 |
0.75X2 |
15-50 |
||||||||
GLS1018 |
1.8n |
YZ016-6 |
1. 1 x2 |
30-120 |
||||||||
GLS1020 |
2.0n |
YZ016-6 |
1.1X2 |
30-120 |
||||||||
GLS1224 |
2.9n |
YZ020-6 |
1.5X2 |
30-120 |
||||||||
GLS1530 |
4.5n |
YZ040-6 |
3.0X2 |
30-160 |
||||||||
GLS1536 |
5.4n |
YZ040-6 |
3.0X2 |
30-160 |
||||||||
GLS1830 |
5.4n |
YZ040-6 |
3.0X2 |
30-180 |
||||||||
GLS1845 |
8.1n |
YZ040-6 |
3.0×2 |
30-180 |
||||||||
GLS2030 |
6.0n |
YZ050-6 |
3.7×2 |
50-200 |
||||||||
GLS2045 |
9.0n |
YZ050-6 |
3.7×2 |
50-200 |