HPT Multi-cylinder Hydraulic Cone Crusher

HPT Multi-cylinder Hydraulic Cone Crusher

HPT multi-cylinder hydraulic cone crusher is a breakthrough in structure based on the design principles of traditional multi-cylinder hydraulic cone crusher, such as fixed main shaft, eccentric sleeve rotating around main shaft, and lamination crushing. The optimized structure greatly improves performance and crushing capacity. At the same time, the hydraulic lubrication system of HPT cone crusher not only ensures stable operation, but also makes the system control more intelligent.

Product features: large crushing ratio, large processing capacity, and better particle size and shape of finished products.

Input size: 0-350mm
Capacity: 45-1200TPH
Materials: granite, diabase, basalt, cobblestone, limestone, dolomite, metallic ores and non-metallic ores, etc.

HPT hydraulic cone crusher adopts advanced PLC electrical system, which can continuously detect the crusher and alarm, and display various operating parameters. Operators have real-time visibility into the operating conditions of the crusher. The system not only simplifies the operation of the production line and saves labor costs, but also reduces operational risks and makes the production line safer.

HPT hydraulic cone crusher adopts the principle of lamination crushing. Not only can the crushing efficiency be improved, but also the wear of wearing parts is greatly reduced. The finished product is a cube. At the same time, the content of qualified fine particles is high enough. The finished product can better serve as a high-quality aggregate.

CNC machines have dozens of lines. The cutting, bending, planing, milling, painting and other processes of the steel plate are all CNC-controlled. High machining accuracy, especially for core parts.

Working Principle

When the HPT multi-cylinder hydraulic cone crusher is working, driven by the motor, the drive shaft rotates under the action of the pulley and the V-belt. Then, the drive shaft drives the eccentric sleeve to rotate around the axis. At the same time, the eccentric sleeve forces the moving cone to swing. This movement brings the movable and fixed cones closer to each other and away from the rolling wall. The material is continuously impacted, squeezed and broken in the crushing cavity between the crushing wall and the rolling wall. Finally, the fineness of the material reaches the discharge standard and is discharged from the machine.

Product Parameters

Model Cavities Feed opening (mm) Minimum discharging size (mm) Capacities (t/h) Maximum installed power (kW) Overall dimension (mm)
HPT100 C1(Extra Coarse) 140 19 75-140 90 1705×1510×1583
C2(Coarse) 100 13 60-110
M(Medium) 70 9 52-100
F1(Fine) 50 9 50-95
F2(Extra Fine) 20 6 45-90
HPT200 C2(Coarse) 185 19 145-250 160 2135×1750×1927
M(Medium) 125 16 135-235
F1(Fine) 95 13 115-220
F2(Extra Fine) 75 10 90-190
HPT300 C1(Extra Coarse) 230 25 220-440 250 2725×2110×2871
C2(Coarse) 210 19 190-380
M(Medium) 150 16 175-320
F1(Fine) 105 13 145-280
F2(Extra Fine) 80 10 110-240
HPT400 C1(Extra Coarse) 295 30 300-630 315 2775×2370×2295
C2(Coarse) 251 25 285-560
M(Medium) 196 20 250-490
F1(Fine) 110 13 180-345
F2(Extra Fine) 90 10 135-320
HPT500 C1(Extra Coarse) 330 38 425-790 400 2800×3480×4050
C2(Coarse) 290 30 370-700
M(Medium) 210 22 330-605
F1(Fine) 135 16 270-535
F2(Extra Fine) 95 13 220-430
HPT800 C1(Extra Coarse) 350 38 570-1200 630 3970×3345×4235
C2(Coarse) 299 32 520-1050
M(Medium) 265 25 475-950
F1(Fine) 220 16 370-800
F2(Extra Fine) 150 13 310-600



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