CZS Series Relaxation Sieve
The unique feature of the chi-tension sieve is the principle of dual vibration: a resonant system consisting of a basic vibration (linear vibration of the sieve body) and an additional vibration (floating sieve frame), which produces relative motion. In this process, the elastic polyurethane screen surface continuously expands and contracts at a frequency of 800 times per minute, resulting in a high acceleration (50g) and effectively prevents the clogging of the sieve hole.
In the dual mass near resonance state, the relative movement between the main vibrating screen frame and the floating screen frame makes the screen form a periodic trampoline relaxation movement, so that the material on the screen surface is fully layered and transparent, and the screen area can achieve a very high screening efficiency with a relatively small screen area, and ensure that the screen is not blocked.
Product Features:
1.The exciter adopts box type, eccentric block external, high efficiency gear transmission exciter, long life; This vibrator is interchangeable, easy to maintain, stable synchronization effect, high efficiency gear transmission exciter, low noise, only 78 ~ 80dB.
2.Ultra-high vibration intensity of the sieve surface: Because the sieve surface can be transmitted to the acceleration of 50G of the material, it can screen the difficult sieve material, and the sieve hole is not easy to block.
3.The sieve plate support beam adopts german Schenck-style seamless hollow box structure, material Q355B, bonded to the American imported Nainat rubber plate. It has the effect of anti-corrosion and wear resistance, and improves the life of the beam by more than 2 times.
4.The side plate of the sieve machine adopts ANGANG CCSDH36 boat plate, and the yield strength and tensile strength are 1.45 times and 1.4 times that of conventional vibrating screen materials, respectively.
5.Large throughput, extremely high screening efficiency: the respective advantages of banana sieve and relaxation sieve are organically combined. The material at the feeding end is fast, the material layer is thin, a large number of materials are sieved, and the processing capacity is high. The low inclination angle of the sieve surface at the discharge end and the slow material speed allow the remaining sieve contents to be thoroughly sieved to achieve a very high screening efficiency.