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Product data

ModelCavity TypeEccentricityMaximum Motor Installation Power (kW)Throughput under Closed - side Discharge Opening (CSS) (t/h)
8mm10mm15mm20mm25mm30mm35mm20mm
GPY400Fine36280
150-180200-240260-285290-320330-365370-400410-440
42

260-290320-350355-385390-420430-460470-500

*Note: The processing capacity of the GPY400 cone crusher may vary with different materials and feeding sizes.

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Additional product information

GPY400 Fine Crushing Cone Crusher: A Powerful Solution

1. Main Technical Parameters

Feed Size: Generally, it is ≤220mm. However, there may be slight differences in feed size among equipment produced by different manufacturers. For example, some manufacturers' equipment may have a feed size of ≤450mm. But overall, as a fine crushing cone crusher, the GPY400 has a relatively small feed size, which is suitable for further fine crushing of materials that have undergone coarse crushing.

Discharge Size: Usually, it is 10 - 40mm, which can meet the particle size requirements of fine materials in most industries such as construction, hydropower, transportation, chemical, and building materials. The produced finished products have a relatively uniform particle size, which is beneficial for subsequent production and processing.

Production Capacity: The hourly production capacity ranges from 150 - 500t/h. Different cavity configurations will result in different production capacities. For example, when the eccentricity is 36mm, the production capacity corresponding to a 10mm discharge opening is 150 - 180t/h; when the eccentricity is 42mm, the production capacity corresponding to a 15mm discharge opening is 260 - 290t/h.

2. Structural Features

Single Cylinder Hydraulic Design: The GPY400 adopts a single cylinder hydraulic structure, which makes the equipment adjustment more convenient and faster. Through the hydraulic system, the size of the discharge opening can be easily adjusted. Even during the operation of the equipment, it can be precisely adjusted at any time according to the production requirements, thereby effectively controlling the particle size of the product and improving the flexibility and controllability of production.

Optimized Crushing Cavity: Its crushing cavity adopts an advanced design concept and is constructed based on the laminating crushing principle. Materials can achieve multi-level extrusion and grinding in the crushing cavity, resulting in better crushing effect. It not only improves production efficiency but also reduces energy consumption. At the same time, the crushed product has a more uniform particle size and a more ideal shape, meeting the requirements of modern industry for energy conservation, emission reduction, and product quality.

3. Application Fields

Mining Industry: In both metal and non-metal mines, the GPY400 fine crushing cone crusher can further crush ores into a particle size suitable for beneficiation processes or direct industrial production. For example, in metal mines such as copper and gold mines, it can perform medium and fine crushing of coarsely crushed ores to improve beneficiation recovery rate; in non-metal mines such as limestone and granite mines, it can produce different specifications of building stones and industrial raw materials to meet the needs of the construction and chemical industries.

Building Materials Production: It is one of the important equipment for producing high-quality building aggregates. In the production of concrete aggregates and asphalt concrete aggregates, the GPY400 can crush stones into a suitable particle size and an ideal shape, thereby improving the strength and durability of concrete and enhancing the skid resistance, wear resistance, and stability of asphalt concrete. It is widely used in infrastructure construction projects such as highways, urban roads, and airport runways.

Other Industrial Fields: In the chemical industry, it can be used to crush various ore raw materials to provide materials with a suitable particle size for chemical reactions and promote the progress of chemical reactions; in the power industry, it can crush fuels such as coal to optimize the particle size distribution of fuels, improve combustion efficiency, and reduce energy consumption and pollutant emissions.

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