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  • Room 1126, International Trade Mansion, No.356 of Xiner Street, Hongqi District, Xinxiang City

  • info@cnremont.com

  • +8613523235160

  • South Africa Office
    Contact person: Mr.Sarel henderson
    Email: sarel.henderson@gmail.com
    Phone: 0027605592169

Tumbler Sifter Machinery

May 25, 2019

Swing screen features:

Up to 5 times the output per unit area; accurate to 6 levels of separation, screening efficiency up to 90% -99; using silicone rubber balls, ultrasonic and other efficient cleaning system system. The mesh holes will not be blocked. Closed dust removal, safe operation; acceleration is 4.5 times lower than vibrating screen. Screening parts have increased life and reduced maintenance; noise <75 dB. Optimize the balance of the balance and the dynamic load of the foundation is low.

Swing screen for the industry:

Chemicals, food and spices, plastics, mining, pharmaceuticals, wood and plywood, metallurgy, rubber, feed, fertilizer, sugar and salt, recycling industry

The design of the swing screen is a high-efficiency screening machine specially designed to meet the needs of large-volume, high-precision screening manufacturers. The simplest screening is to gaze at both hands with both eyes. The rocking screen is the mechanical simulation of this. It is currently the most effective simulation of the effective principle of artificial screening movement (screening accuracy, efficiency, screen life is 5-10 times that of conventional round screen), in line with all fine and ultra-fine range of powder and particulate materials It is especially suitable for materials that are difficult to handle.

The principle of the swing sieve structure:

. The basic rotary motion is similar to manual screening. The eccentricity is adjustable from 25 to 40 mm. Low speed V-belt drive adjustable from 120 to 360 rpm

. The residence time of each product can be adjusted by the radial and chamfer angles of the rocking screen towards the drive axis.

. So build a level and throw a three-dimensional rollover motion. The material is uniformly dispersed from the center to the outer edge on the entire screen surface, thereby propagating in the axial direction by a spiral motion. The fine particles complete the entire screening process.

. The horizontal and vertical accelerations increase with the movement of the particles, and the particles close to the mesh size are successfully separated; the larger particles are transported to the exit. The outlet is controlled by an adjustable guide that is another factor in controlling the residence time of the material.


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