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| SCREEN SIZE | FEED SIZE | OUTPUT PARTICLE SIZE | PARTICLE SIZE DISTRIBUTION | CAPACITY / HOUR |
|---|---|---|---|---|
| 500 Microns (0.5 mm) | 0–20 mm | 0–250 Microns | 0–100 Microns: 70–80%0–250 Microns: 20–30% | 3–4 t/h |
| 800 Microns (0.8 mm) | 0–20 mm | 0–500 Microns | 0–100 Microns: 60%100–250 Microns: 30%250–500 Microns: 20% | 5–7 t/h |
| 1000 Microns (1 mm) | 0–20 mm | 0–800 Microns | 0–100 Microns: 30%100–800 Microns: 70% | 7–8 t/h |
| 2000 Microns (2 mm) | 0–20 mm | 0–1500 Microns | 0–800 Microns: 70%800–1500 Microns: 30% | 8–10 t/h |
| 3000 Microns (3 mm) | 0–20 mm | 0–2 mm | 1 mm: 50%2 mm: 50% | 12 t/h |
The values provided were obtained from tests conducted on calcite.
Capacity values will increase as the feed particle size decreases.
Capacity will increase when the mill is operated without screens.
The values were obtained from tests carried out at a constant rotational speed. Different output particle sizes can be achieved by changing the mill speed through a frequency control device.
APPLICATIONS:
It is used for the micronized grinding and granulation of minerals and chemical substances. Efficient grinding is achieved for minerals such as calcite, gypsum, lime, limestone, dolomite, borax, and similar materials. Special production can be carried out in compliance with food industry standards for chemicals, salt, spices, animal feed, and other food products.
MANUFACTURING
The PD 700 Pin Mill features a monoblock cast body and motor assembly. All components of the machine are machined on CNC equipment. Wear-prone spare parts are continuously kept in stock. The grinding pins are manufactured from alloy steel castings and are heat-treated after processing to provide high wear resistance. Imported stainless steel perforated screens are used. Thanks to the replaceable screens inside the mill, final products with different particle sizes can be obtained. The table shows the final output particle sizes.
Storage and Transfer of Ground Products
The entire final product can be directly connected to a large silo for storage.
A blower can be used to transfer the final product to a location away from the machine.
If the final product needs to be classified, it can be separated into different particle sizes by means of Algaier-type screens or a separator, while the remaining material can be returned to the mill for further grinding.
| SCREEN SIZE | FEED SIZE | OUTPUT PARTICLE SIZE | PARTICLE SIZE DISTRIBUTION | CAPACITY / HOUR |
|---|---|---|---|---|
| 500 Microns (0.5 mm) | 0–20 mm | 0–250 Microns | 0–100 Microns: 70–80%0–250 Microns: 20–30% | 100–250 kg/h |
| 800 Microns (0.8 mm) | 0–20 mm | 0–500 Microns | 0–100 Microns: 60%100–250 Microns: 30%250–500 Microns: 20% | 400–500 kg/h |
| 1000 Microns (1 mm) | 0–20 mm | 0–800 Microns | 0–100 Microns: 30%100–800 Microns: 70% | 500–700 kg/h |
| 2000 Microns (2 mm) | 0–20 mm | 0–1500 Microns | 0–800 Microns: 70%800–1500 Microns: 30% | 800–1000 kg/h |
| 3000 Microns (3 mm) | 0–20 mm | 0–2 mm | 1–1 mm: 50%1–2 mm: 50% | 1–1.5 t/h |
The values provided were obtained from tests conducted on calcite.
Capacity values will increase as the feed particle size decreases.
Capacity will increase when the mill is operated without screens.
The values were obtained from tests carried out at a constant rotational speed. Different output particle sizes can be achieved by adjusting the mill speed through a frequency control device.
| SCREEN SIZE (HOLE DIAMETER) | FEED SIZE | OUTPUT PARTICLE SIZE | PARTICLE SIZE DISTRIBUTION | CAPACITY / HOUR |
|---|---|---|---|---|
| 500 Microns (0.5 mm) | 0–20 mm | 0–250 Microns | 0–100 Microns: 70–80%0–250 Microns: 20–30% | 1–1.5 t/h |
| 800 Microns (0.8 mm) | 0–20 mm | 0–500 Microns | 0–100 Microns: 60%100–250 Microns: 30%250–500 Microns: 20% | 2 t/h |
| 1000 Microns (1 mm) | 0–20 mm | 0–800 Microns | 0–100 Microns: 30%0–800 Microns: 70% | 3 t/h |
| 2000 Microns (2 mm) | 0–20 mm | 0–1500 Microns | 0–800 Microns: 70%800–1500 Microns: 30% | 4 t/h |
| 3000 Microns (3 mm) | 0–20 mm | 0–2 mm | 1 mm: 50%2 mm: 50% | 5 t/h |