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Product data

ModelPower (KW)Chamber TypeMaximum Feeding Size (mm)
E-SMG200160EC185
E-SMG200160C145
E-SMG200160M90
E-SMG200160F50

Tight Side Discharge Port (mm) & Corresponding Production Capacity (t/h)


681013161922253238
EC


68 - 10875 - 15080 - 16085 - 17090 - 180105 - 210115 - 210
C


65 - 13070 - 14275 - 15080 - 16085 - 17595 - 195108 - 150
M

65 - 8570 - 13075 - 14280 - 15086 - 16090 - 155102
F48 - 7850 - 8552 - 9060 - 9563 - 10568 - 10572 - 9575

*Note: The processing capacity of the E-SMG200 cone crusher may vary with different materials and feeding sizes.

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Our range cone crushers

E-SMG300S Cone Crusher

E-SMG300S Cone CrusherE-SMG300S

Nominal capacity195 - 600 t/h

Max. feed size450 mm

Motor power250 kW

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HPM200 Single Cylinder Hydraulic Cone Crusher

HPM200 Single Cylinder Hydraulic Cone CrusherHPM200

Nominal capacity81 - 250 t/h

Max. feed size145 mm

Motor power160 kW

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E-SMG100S Cone Crusher

E-SMG100S Cone CrusherE-SMG100S

Nominal capacity76 - 168 t/h

Max. feed size240 mm

Motor power90 kW

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Case stories

6000TPD Gravel Aggregates Plant in Pingtang Guizhou

Machine: ZGC1538 vibrating feeder + PCZ1615 heavy hammer crusher + 4*YKZ2460 vibrating screen + ZSJ 1218 dual rotor sand maker

3000TPH Gravel Aggregate Production Line of Dingli

Constructed according to national standard the whole production linemakes full use of local rich mining resource. The process adopts transfer silo layout and suitable belt conveyor system. Such production model can be widely promoted acros

1600TPH Bluestone Production Line in Sichuan

In the production site the material shape can be effectively controlled by each process that has better shape than natural sand. It has a bright future with meeting the demand of sand size gradation and crushing index.

Additional product information

E-SMG200 Single Cylinder Hydraulic Cone Crusher: Excellent Performance, Meeting Diverse Production Needs

The E-SMG200 single cylinder hydraulic cone crusher is crafted by Shanghai Sanme Co., Ltd., integrating advanced mechanical, hydraulic, electrical, automation and intelligent control technologies. It is designed for medium-scale mining, aggregate production and other industrial fields requiring moderate crushing capacity, ensuring efficient crushing operations while possessing good product quality control and operational stability.

II. Technical Parameter Analysis

1. Power and Cavity Type Features

This crusher is equipped with a 160KW power, providing sufficient power for stable operation. It has four different cavity types: EC, C, M and F to meet diverse production demands. The EC cavity type has a maximum feed size of 185mm, suitable for handling medium-sized block materials and often used in the further processing after the primary crushing in mining, effectively crushing materials to a more appropriate particle size for subsequent processing. The C cavity type with a maximum feed size of 145mm performs well in the intermediate crushing stage, further refining the previously crushed materials to make the particle size more uniform. The M cavity type with a maximum feed size of 90mm focuses on crushing operations with finer product particle size requirements, such as producing specific-specification construction sand or fine aggregates for industrial products. The F cavity type with a maximum feed size of 50mm can be used to produce finer products like high-quality decorative sand and fine chemical raw materials.

2. Relationship between Discharge Port and Production Capacity

From the data of the closed-side discharge port and the corresponding production capacity, different cavity types show corresponding changes in production capacity with the change of the discharge port size. Taking the EC cavity type as an example, when the discharge port is 22mm, the production capacity is 69 - 108t/h. As the discharge port gradually increases to 90mm, the production capacity can be increased to 115 - 210t/h. In the C cavity type, when the discharge port is 22mm, the production capacity is 66 - 131t/h, and the production capacity also changes correspondingly when the discharge port is enlarged. The M and F cavity types also have their own different production capacity change situations. This indicates that operators can flexibly adjust the size of the discharge port according to the actual product particle size and production volume requirements, optimizing production efficiency while ensuring product quality compliance. For example, in the production of construction sand, if the particle size requirement is relatively coarse, the discharge port can be appropriately enlarged. If finer decorative sand is needed, the discharge port should be reduced to obtain a finer product particle size.

III. Application Advantage Analysis

1. Efficient Crushing and High-Quality Product Output

The E-SMG200 can achieve efficient laminated crushing under choked feeding conditions thanks to its optimized cavity design. This crushing method not only improves crushing efficiency but also effectively improves the product shape, making the produced product have a more uniform particle size and more regular shape. Whether processing hard granite, limestone or other common ores or rocks, it can produce products that meet high-standard requirements. For example, in building material production, the produced sand and gravel aggregates can better meet the requirements of concrete mixing, improving the strength and durability of concrete and thus enhancing the quality of construction projects.

2. Operation Cost Control and Economic Benefit Improvement

The hydraulic adjustment of the discharge port makes the adjustment operation during the equipment operation extremely convenient. The discharge port can be adjusted in a timely and convenient manner, enabling the crusher to work under the choked feeding condition, which helps to reduce the wear of wearing parts and thus effectively reduce the operation cost. Compared with other similar equipment, the E-SMG200 can save a large amount of maintenance and replacement costs of wearing parts for enterprises in the long-term operation process, thereby enhancing the economic benefits of enterprises.

3. Flexible Adaptation to Different Production Stages

Since the main body structure of the crusher is the same, different crushing cavity types can be obtained by simply replacing the liner. This feature enables the E-SMG200 to flexibly adapt to the different stage requirements in medium-scale mining and aggregate production. In the initial stage of mining, a larger feed opening and a relatively coarse crushing cavity type can be used for coarse crushing operations. As the production process progresses, a smaller feed opening and a finer crushing cavity type can be replaced for intermediate or fine crushing operations without replacing the entire equipment, greatly improving the versatility and resource utilization rate of the equipment and reducing the equipment investment cost.

4. Convenience in Operation and Maintenance

The operation of the E-SMG200 is relatively simple, and operators who have received short-term training can master the operation process proficiently. Its high-quality hydraulic technology not only makes the operation smoother but also provides great convenience for maintenance. All maintenance and inspection work can be completed from the upper part of the crusher without complex disassembly and lifting operations. When the equipment fails or requires routine maintenance, maintenance personnel can quickly conduct inspections and repairs, reducing the downtime of the equipment and ensuring the continuity of production, providing strong support for the normal production and operation of enterprises.

In conclusion, the E-SMG200 single cylinder hydraulic cone crusher, with its moderate power, diverse cavity type selection, efficient crushing ability, good cost control and convenient operation and maintenance, plays an important role in medium-scale mining, aggregate production and related industrial fields and is an ideal equipment to meet medium-scale production needs.

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