Single-cylinder hydraulic cone crusher
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  • Single-cylinder hydraulic cone crusher

Single-cylinder hydraulic cone crusher

The single-cylinder hydraulic cone crusher is a high-performance, single-cylinder hydraulic cone crusher with an optimized design, integrating mechanical, hydraulic, electrical, and intelligent control technologies. By simply replacing the liners, the same machine can achieve multiple cavity configurations. The medium-crushing model features a stable and relatively large feed opening, enabling it to efficiently crush materials—from fine crushing to coarse crushing. It is widely used in fields such as metallurgy, construction, cement production, water conservancy, highways, railways, and mineral processing.
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  • Product Description
  • Product Advantages
  • Process flow
  • Technical Parameters
  • Product Introduction

    The single-cylinder hydraulic cone crusher is a high-performance, single-cylinder hydraulic cone crusher with an optimized design, integrating mechanical, hydraulic, electrical, and intelligent control technologies. By simply replacing the liners, the same machine can achieve multiple cavity configurations. The medium-crushing model features a stable and relatively large feed opening, enabling it to efficiently crush materials—from fine crushing all the way to coarse crushing. It is widely used in fields such as metallurgy, construction, cement production, water conservancy, highways, railways, and mineral processing.

    Working principle

    When the single-cylinder hydraulic cone crusher is operating, the electric motor drives the horizontal transmission shaft to rotate via a V-belt. The horizontal transmission shaft, in turn, rotates the eccentric sleeve through bevel gears. Under the urging of the eccentric sleeve, the moving cone performs a swinging motion. After the material enters the crushing chamber, it is continuously subjected to impact and compression between the crushing wall and the stationary lining wall, thereby being crushed. The crushed material is then discharged from the bottom of the machine.

    External dimensions

    Model A(MM) B(MM) C(MM)
    GP200 2140 1620 1950
    GP300 2870 2090 2260
    GP400 3190 2350 2530
    GP500 3490 2780 3100
    GP600 3890 3110 3500
    GP900 4563 3535 3900

    Product Features

    1. Wide range of applications: It can crush relatively hard raw materials, and products of the same specification can be adapted to various cavity shapes by simply changing the lining plates, making it suitable for a wide variety of applications.

    2. Optimized product adjustment: By employing a reasonable eccentricity, a specially designed crushing cavity geometry, and a tuned stroke combined with laminated crushing, the equipment can produce high-quality finished products.
    Higher yield and better product particle shape have been achieved, increasing the proportion of fine particles while reducing the content of needle-like and flaky particles, thus meeting the demand for high-quality materials.

    3. Rational structural design: The equipment boasts enhanced safety and stability, longer service life, and greater ease of use. The conveying components are equipped with high-quality bearings that offer extended longevity. Positive-pressure dust removal ensures the cleanliness of the hydraulic system, while the dilute-oil lubrication system provides dual protection for the bearings, thereby reducing failure rates and lowering maintenance costs.

    4. Intelligent Control System: Simple operation and maintenance, real-time monitoring of equipment operating conditions to ensure the equipment always remains in optimal condition. The hydraulic system’s discharge port can be adjusted via button control, allowing adjustments to be made during the production process for even more intuitive operation.

    5. Optimized liner design: Lower steel consumption per unit, and higher operational efficiency during laminated crushing and when the feed is fully loaded.

    GP Fine Crushing Series Parameters

    Model Cavity type Feed inlet (MM) Larger feed particle size (mm) Smaller discharge – stroke Larger discharge – Stroke Motor power (kW) Production Capacity (T/H)
    GP200 A 150 120 12/15 39/37 200 35-135
    GP200 B 130 105 10/11 33/31 200 35-135
    GP200 C 100 80 7/9 33/30 200 35-135
    GP300 A 225 180 22/26 45/40 250 85-350
    GP300 B 150 120 19/23 45/40 250 85-350
    GP300 C 80 60 12/16 35/35 250 85-350
    GP400 A 225 180 25/30 50/45 280 140-490
    GP400 B 150 125 17/20 45/40 280 140-490
    GP400 C 80 60 10/13 40/35 280 140-490
    GP500 A 280 220 22/26/30 45/35/30 315 245-715
    GP500 B 150 125 19/22/26 45/35/30 315 245-715
    GP500 C 100 80 12/14/16 35/30/25 315 245-715
    GP600 A 280 220 25/30/35 50/45/40 355 350-765
    GP600 B 150 125 17/20/30 45/40/35 355 350-765
    GP600 C 100 80 10/13/22 40/35/30 355 350-765
    GP900 A 335 220 18/24/30 50/42/36 375 430-1250

    GP Fragmentation Series Parameters

    Model Cavity type Feed inlet (MM) Maximum feed particle size (mm) Minimum discharge – Stroke Maximum Discharge - Stroke Motor power (kW) Production Capacity (T/H)
    GP200 A 320 250 35/35 100/95 200 140-520
    GP200 B 250 210 35/35 100/95 200 140-520
    GP300 A 340 280 35/35 105/100 250 160-610
    GP300 B 250 210 35/35 105/100 250 160-610
    GP400 A 380 320 35/35 100/95 280 250-870
    GP400 B 280 240 35/35 100/95 280 250-870
    GP500 A 500 420 50/55/60 105/100 315 300-1400
    GP500 B 380 320 45/50/55 105/100 315 300-1400
    GP600 A 530 450 50/55/60 100/95/95 355 450-2000
    GP600 B 410 340 45/45/55 100/95/95 355 450-2000
    GP900 A 560 470 65/70/75 105/100/95 375 850-2500

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