The stacked high-frequency fine mesh vibrating screen is driven by two vibrators moving in opposite directions, causing the screen frame to move in a linear trajectory. The combined force of the two vibrators acts on the screen frame's center of gravity, ensuring consistent excitation force across all points of the screen frame. The slurry is fed into the distributor either from the top or bottom and is evenly distributed into multiple streams via feeding hoses. These streams are fed into multiple feeders, which evenly spread the slurry over the upper end of the screen surface. Due to continuous high-frequency, smallamplitude vibrations, the material on the inclined screen surface jumps continuously, dispersing, and fine particles pass through the screen holes to become the undersized product. Larger particles continue to jump forward on the inclined screen surface until they exit the screen, becoming the oversize product.
Primarily used in the fine particle wet classification operations of non-ferrous and non-metallic mineral processing industries. It can be designed for 1-5 layers based on site requirements.
| Model | Number of Screen Box Layers | Screen Surface Area (m²) | Power (kW) | Application |
| FG1014 | 1 | 1.4 | 2×0.55 | Wet Classification |
| FG1021 | 1 | 2.1 | 2×1.5 | |
| FG1028 | 1 | 2.8 | 2×1.5 | |
| FG1440 | 1 | 5.6 | 2.8 | |
| D3Z1014 | 3 | 4.2 | 4.4 | |
| D4Z1014 | 4 | 5.6 | 4.4 | |
| D5Z1014 | 5 | 7 | 4.4 | |
| D3Z1021 | 3 | 6.3 | 4.4 | |
| D4Z1021 | 4 | 8.4 | 4.4 | |
| D5Z1021 | 5 | 10.5 | 4.4 | |
| D3Z1216 | 3 | 5.76 | 4.4 | |
| D4Z1216 | 4 | 7.68 | 4.4 | |
| D5Z1216 | 5 | 9.6 | 4.4 | |
| D2Z1224 | 2 | 5.76 | 4.4 | |
| D3Z1224 | 3 | 8.64 | 4.4 | |
| D4Z1224 | 4 | 11.25 | 4.4 | |
| D5Z1224 | 5 | 14.4 | 6.8 | Wet Classification |

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