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Home>Specifications and models>Cone Crusher

Product data

ModelPYF1950
Cavity TypeCMFEF
Maximum feed size (mm)26720314095
Discharge opening adjustment range (mm)22-6416-2513-2210-19
Processing Capacity (t/h)330-725230-330185-340180-335
Motor power (kw)280-315
Machine weight (t)59.6

*Note: The processing capacity of the PYF1950 cone crusher may vary with different materials and feeding sizes.

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Our range cone crushers

PYF600 Cone Crusher

PYF600 Cone CrusherPYF600

Nominal capacity18 - 76 t/h

Max. feed size95 mm

Motor power30 - 37 kW

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PYF1000 Cone Crusher

PYF1000 Cone CrusherPYF1000

Nominal capacity50 - 235 t/h

Max. feed size160 mm

Motor power90 - 110 kW

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PYF1950 Cone Crusher

PYF1950 Cone CrusherPYF1950

Nominal capacity180 - 725 t/h

Max. feed size267 mm

Motor power280 - 315 kW

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Case stories

200TPH Stone Crushing Plant in Jiangxi

The 200t/h stone production line configuration is PCZ1510 heavy hammer crusher ZG0938 vibrating feeder 2YK1560 vibrating screen*2 sets.

800TPH Gravel Production Line in Guangan

As a centralized area of limestone Guangan has been established many gravel production lines and concentrate many huge stone production lines.

3000TPH Aggregates Production Line of Hengqiang Mining

Through primary crusher the unqualified aggregates will be returned to the crusher for a repeated crushing so as to obtain the finished material with sound grain shape. This gravel production line will be reformed by adding bag filter.

Additional product information

Professional Analysis of PYF1950 Cone Crusher

The PYF1950 cone crusher is a highly representative piece of equipment in the industrial crushing field, possessing numerous outstanding features and being widely adaptable to various production requirements.

I. Overview of Working Principle

Its core operation is based on the principle of compressive crushing. Materials enter the crushing chamber through the feed inlet. Inside the chamber, the mantle and concave liner work in coordination. The mantle makes a gyratory motion under the drive of the eccentric sleeve, causing the materials to be continuously compressed and ground between the two until they are crushed to the desired particle size and finally discharged through the discharge opening. This working method can effectively ensure the uniformity and high efficiency of crushing.

II. Applications of Different Cavity Types

C Cavity:

With a maximum feed size of up to 267 mm, it can handle large ores, rocks and other materials. In the initial stage of mining, it can quickly crush large raw ores. Its discharge opening adjustment range is 22 - 64 mm, and the processing capacity is 330 - 725 t/h. It can flexibly adjust the discharge particle size according to the requirements of subsequent processing procedures, providing suitable raw materials for subsequent processes such as ore dressing and greatly improving mining efficiency.

M Cavity:

The maximum feed size is 203 mm, which is suitable for large-scale production of construction aggregates. For common building stones, it can crush them accurately. The discharge opening adjustment range is 16 - 25 mm, combined with a processing capacity of 230 - 330 t/h. The produced aggregates have a uniform particle size and can meet the quality requirements of concrete aggregates in construction projects ranging from high-rise buildings to ordinary residences, ensuring the stability of the building structure.

F Cavity:

When facing projects with stringent requirements for aggregate quality, such as bridges and super high-rise buildings, the F cavity plays a crucial role. The maximum feed size is 140 mm, and the discharge opening can be finely adjusted within 13 - 22 mm. The processing capacity is 185 - 340 t/h. The fine aggregates produced can optimize the performance of concrete, enhancing its fluidity and strength and ensuring the high quality of key parts of the project.

EF Cavity:

It focuses on the production of special materials. The maximum feed size is 95 mm, and the discharge opening can be precisely controlled within 10 - 19 mm. The processing capacity is 180 - 335 t/h. In industries such as glass and high-end ceramics, it can provide raw materials with high purity, fine and uniform particle size, meeting the strict standards of special processes.

III. Power and Stability

Equipped with a motor of 280 - 315 kw, it provides strong power support for the operation of the equipment, ensuring stable and efficient operation when crushing materials of various hardnesses. The whole machine weighs 59.6 t. The thick and heavy machine body structure has been optimized in design. During operation, it can effectively resist vibration, ensuring the equipment to operate smoothly for a long time, reducing the risk of faults caused by shaking and displacement, and improving the overall reliability.

IV. Key Points of Equipment Maintenance

Key wearing parts such as the mantle and concave liner, due to direct contact and friction with materials, need to be regularly inspected for wear conditions and repaired or replaced in a timely manner according to the degree of wear. Bearings should be well lubricated, and their temperature and vibration should be monitored in real time. Once any abnormality occurs, the cause should be immediately investigated. In addition, components such as liners and seals should also be regularly inspected. Worn liners will affect the crushing effect, and failed seals may lead to dust intrusion, affecting the internal operating environment of the equipment. Any problems found should be dealt with in a timely manner to ensure the continuous normal operation of the equipment.

V. Conclusion

The PYF1950 cone crusher, with its advanced design, diverse cavity types, stable performance and reasonable maintenance requirements, demonstrates outstanding value in the industrial crushing field, providing reliable solutions for material processing in many industries and helping enterprises achieve efficient production.

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PYF1950 Cone Crusher Technical documentation PYF1950 Cone Crusher Technical documentation
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