
Add to Cart
Vibrating screens are versatile mechanical devices used for separating and classifying materials based on their size. They are widely used in various industries, including mining, construction, recycling, and chemical processing. Vibrating screens operate on the principle of vibration, which enables efficient and effective screening of materials.
The working principle of vibrating screens involves the use of a vibrating motor or an eccentric shaft to generate vibrations. These vibrations cause the screen deck to move in a circular or linear motion, depending on the design. As the material is fed onto the screen, the vibrating motion separates the particles based on their size. Smaller particles pass through the screen openings, while larger particles are retained on the screen surface.
One of the key applications of vibrating screens is in the mining industry. They are used to separate and classify minerals and ores, ensuring that the desired particle size is achieved for further processing. In construction, vibrating screens are employed to separate aggregates based on their size, ensuring the quality and uniformity of the final product.
Vibrating screens are also widely used in recycling operations to separate different types of materials such as plastics, paper, and metals. By efficiently segregating materials, these screens aid in the recycling process and facilitate the recovery of valuable resources.
The running characteristics of vibrating screens include several important features. Firstly, they offer high screening efficiency due to the vibratory motion that helps in effectively separating materials. This leads to improved productivity and reduced downtime. Additionally, vibrating screens can be customized with various screen deck configurations and mesh sizes to accommodate different material types and sizes.
Furthermore, vibrating screens are known for their durability and robust construction, allowing them to withstand the harsh conditions of industrial environments. They are typically designed with heavy-duty components to handle large volumes of material and withstand the impact of the vibrating motion.
Vibrating screens also provide the advantage of easy maintenance. They are designed with quick-change screen panels that can be easily replaced when worn or damaged, minimizing downtime and ensuring continuous operation.
Model | Number of layers | Screen area (㎡) | Screen specification (mm) | Maximum feed size (mm) | Production capacity (t/h) | Vibration frequency (r/min) | Dual amplitude (mm) | Power (kw) | Installation inclination (°) | Weight (t) |
XCYK1230 | 1 | 3.6 | 1200*3000 | ≤150 | 8-80 | 960 | 8 | 5.5 | 20° | 2.2 |
2 | 940 | 2.8 | ||||||||
3 | 800 | 11 | 3.5 | |||||||
XCYK1548 | 2 | 7.2 | 1500*4800 | ≤150 | 35-180 | 970 | 8 | 11 | 20° | 5.2 |
3 | 15 | 6.2 | ||||||||
4 | 6.8 | |||||||||
XCYK1860 | 2 | 10.8 | 1800*6000 | ≤150 | 100-255 | 800 | 8 | 18.5 | 20° | 6.9 |
3 | 7.5 | |||||||||
4 | 740 | 22 | 8.2 | |||||||
XCYK2160 | 2 | 12.6 | 2100*6000 | ≤150 | 150-350 | 740 | 8 | 22 | 20° | 9.8 |
3 | 30 | 10.8 | ||||||||
4 | 37 | 12 | ||||||||
XCYK2460 | 2 | 14.4 | 2400*6000 | ≤150 | 150-450 | 740 | 8 | 37 | 20° | 10.8 |
3 | 150-600 | 45 | 12.8 | |||||||
4 | 15.2 |
Finished Product Loading
Our Certificate