Cheap price High Efficiency Frequency Dehydrating Linear Vibrating Screen – 3-deck FY-HVS-1320 High Frequency Screen – Fangyuan
Cheap price High Efficiency Frequency Dehydrating Linear Vibrating Screen – 3-deck FY-HVS-1320 High Frequency Screen – Fangyuan Detail:
Fangyuan FY-HVS Series Multi-deck High Frequency Screen is a wet fine material screening equipment. Its features are as following:
● The main parts of screen are riveted with rivets, ensuring the reliability and stability of long-term operation, reducing maintenance times and the labor amounts.
● The surfaces are sprayed with polyurea, increasing the wear resistance and corrosion protection, extending the service life of the equipment.
● Matched with the fine screen mesh( Fangyuan’s innovation),the screen has 5 feeding ways, enlarging the handling capacity and the screening efficiency.
Application range
■ Coarse slime separation
■ Removal of pyrite from fine coal
■ Removal of lignite/peat from sand
■ Removal of high specific gravity impurities from sand
■ Ore classification
■ Separation of fine-grained minerals such as tin, lead, zinc, titanium, etc.
Product detail pictures:
Related Product Guide:
Good quality comes initial; company is foremost; small business is cooperation" is our business philosophy which is frequently observed and pursued by our business for Cheap price High Efficiency Frequency Dehydrating Linear Vibrating Screen – 3-deck FY-HVS-1320 High Frequency Screen – Fangyuan , The product will supply to all over the world, such as: Senegal, Johor, Namibia, We only supply quality products and we believe this is the only way to keep business continue. We can supply custom service too such as Logo, custom size, or custom products etc that can according to customer's requirement.
By Vanessa from Bangladesh - 2017.04.08 14:55
The customer service reprersentative explained very detailed, service attitude is very good, reply is very timely and comprehensive, a happy communication! We hope to have a opportunity to cooperate.
By Penny from Vietnam - 2017.01.11 17:15