Vibrating Screen

  • Feeding size: ≤400 mm
  • Production capacity: 25-900 m³/h
  • Application materials: River pebbles, granite, basalt, iron ore, limestone, calcite, quartzite, diabase, etc.
  • Applied range: Sand and gravel yards, concrete sand making, dry-mixed mortar, manufactured sand, desulfurization in power plants, quartz sand, etc.

Description

Structure Drawing

Advantages

Greater amplitude and higher efficiency
The exciter adopts an external block eccentric structure. Compared with the shaft eccentric vibrator, it increases the excitation force, reduces the weight, has a larger amplitude and higher screening efficiency. The exciter can meet the requirements of different excitation forces and adapt to different amplitude requirements by adjusting the number of secondary eccentric blocks.
Optimize the design and ensure smooth operation
Use finite element analysis technology to conduct optimization calculations on the screen frame. The motor and the exciter are connected by a flexible coupling, which eliminates the transmission of axial force during torque transmission, thus ensuring smoother operation.
It is convenient for maintenance and flexible to install
It adopts a synchronous toothed belt structure. Compared with gear synchronizers, it is lighter in weight and easier to maintain. The exciters are connected by universal joints, making installation and replacement flexible.
The force is uniform and the strength is high
The side plate is made of an integral bent part, which is less likely to cause welding cracks. The side plates are connected to the crossbeams and the front and rear cross braces by ring groove rivets, ensuring uniform force distribution and high strength throughout.

Parameter

ModelNumber of sieve layersScreen area(m³)Screen size(mm)Maximum feed size(mm)Processing capacity(m³/h)Vibration frequency(r/min)Double amplitude(mm)Motor Power(kw)Dimensions(mm)(Length × width × height)(L×W×H)weight(Motor free) (t)Sieve angle(°)Screen size(mm)
YK123714.42-5020025-1609708113857×2386×24194.815-201200×3700
2YK123724.42-5020025-1609708113857×2386×24194.915-201200×3700
3YK123734.42-5040030-1809708114057×2386×29205.215-201200×3700
4YK123744.42-5040030-1809708114257×2386×29205.315-201200×3700
YK154817.22-5020045-2509708154904×2713×28545.915-201500×4800
2YK154827.22-5020045-2509708154904×2713×28546.315-201500×4800
3YK154837.22-5040045-2809708155104×2713×31066.515-201500×4800
4YK154847.22-5040045-280970818.55304×2713×33566.615-201500×4800
YK184818.62-5020055-3309708154904×3041×28546.215-201800×4800
2YK184828.62-5020055-3309708154904×3041×28546.915-201830×4800
3YK184838.62-5040055-3509708225104×3041×31067.215-201800×4800
4YK184848.62-5040055-3509708225304×3041×33567.515-201800×4800
YK1860110.82-5020065-3509708226166×3041×25846.415-201800×6000
2YK1860210.82-5020065-3509708226166×3041×25847.115-201800×6000
3YK1860310.82-5040065-3809708226366×3041×31067.415-201800×6000
4YK1860410.82-5040065-3809708306566×3041×33567.715-201800×6000
YK2160112.62-5020080-7209708306166×3444×28549.915-202100×6000
2YK2160212.62-5020080-7209708306166×3444×285411.215-202100×6000
3YK2160312.62-5040090-7509708376366×3444×310612.415-202100×6000
4YK2160412.62-5040090-7509708456566×3444×335615.115-202100×6000
YK2460114.42-50200150-8109708306166×3916×383912.215-202400×6000
2YK2460214.42-50200150-8109708306166×3916×383913.515-202400×6000
3YK2460314.42-50400180-9009708376366×3916×413913.615-202400×6000
4YK2460414.42-50400180-9009708456566×3916×443914.415-202400×6000

Note: Any change of technical data shall not be advised additionally.

Working principle

The YK series vibrating screen is mainly composed of the motor drive section, intermediate shaft assembly, flexible coupling, exciter assembly, screen frame assembly and other parts.

The YK series vibrating screen uses eccentric blocks as the excitation source to drive the screen body to perform circular vibration. Its working principle is as follows: The screen frame is elastically supported on the base (or foundation), the eccentric blocks are installed on the shaft, and the shaft is installed on the side plate of the screen frame through bearings and bearing housings. When the main shaft rotates, it drives the eccentric blocks to rotate, and the inertial force generated by the eccentric blocks forces the screen frame to vibrate. As the motor operates continuously, the screen machine moves along an approximately circular trajectory to achieve the screening operation.