Brand Name: YONJOU
Model Number: HM
Place of Origin: Zhejiang, China (Mainland)
1.Model: HM
2.Material: high chrome alloy or rubber or ceramic
3.Flow Rate: 10.8-5400m3/h
4.Head: 3-118m
5.ISO9001:2008
Gold Mining Slurry Pump
Various centrifugal pumps for pumping heavy slurry in agriculture,petrochem,manufacturing,energy and mining.
Pumps are designed and suitable for 3 main purposes:
1) Decrease electricity consumption and increase pump life
Our uniquely designed pumps limit slurry contact thus the efficiency is significantly higher and hence very big conventional slurry pumps can be replaced by a pump with a 20% of more smaller motor without affecting pumping performance. If energy bills and high cost of ownership is of concern, these pumps are the answer.
2) Lime and ash applications
Lime and ash pumping applications are particularly difficult for centrifugal slurry pumps because acceleration inside the pump causes the slurry to clump together into a solid clay degrading performance. We have a unique solution proven to work more efficiently and outlast conventional pumps.
3) High viscosity liquids
Superior throughput rates compared to gear and vane pumps using a unique new design. Great for bitumen, all emulsions and fats.
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Equivalent type for reference |
Type | Material quality | Clear water performance | |||||
Protect cover |
Impeller | Q | H | n | η | (NPSH)r | ||
Capacity | Head | Speed | Effciency | |||||
(m³/h) | (m) | (r/min) | (%) | (m) | ||||
4/3C-AH | TD75-100C | M | M | 86.4-198 | 9-52 | 1000-2200 | 71 | 4-6 |
4/3D-AH | TD75-100D | |||||||
4/3C-AH | TD75-100C | RU | RU | 79.2-180 | 5-34.5 | 800-1800 | 59 | 3-5 |
4/3D-AH | TD75-100D | |||||||
4/3C-AH | TD75-100C | M | M | 97.2-194.4 | 9-53 | 1000-2200 | 55 | |
4/3D-AH | TD75-100D | |||||||
4/3E-HH | TD75-100E | M | M | 126-252 | 12-97 | 600-1400 | 50 | 2-5 |
Note: 1. RU stands for rubber material, and M stands for wear-resistign alloy material. 2. Recommended flow range is 50%Q'≤Q≤110%Q'(Q'≈the corresponding flow at the highest efficiency point) 3. NPSH refers to the corresponding NPSH value of the recommended Q point at the maximum |