Sand Aggregate IndustryComprehensive Service Provider| Model | Maximum Feed Size (mm) | Discharge Port Range (mm) | Motor Power (kw) | Production Capacity (t/h) - Open - circuit, Closed - side Discharge Port (mm) | ||||
| 26 | 32 | 38 | 51 | 63 | ||||
| SMH350C | 230 | 26 - 63 | 250~280 | 366 | 430 | 468 | 629 | 657 |
*Note: The processing capacity of the SMH350C cone crusher may vary with different materials and feeding sizes.

The owner of this production line has over 20 years of experience in the construction of stone plan. By compared with many others it selects Dingli’s equipment since the aggregates produced have sound grain shape better quality.

This production line has improved a lot in the aspect of operation scale and environmental protection compared with many other small traditional production lines in the local place.

Featured by low investment and fast recovery of cost this production line can produce cubic stone with sound compression resistance far beyond customer expectation so it is warmly welcomed by the old and new customers.
In the material crushing industry, the SMH350C multi - cylinder hydraulic cone crusher performs well in medium - large - scale crushing operations due to its unique functional principles and design.
The SMH350C works based on the cone crushing principle. The electric motor drives the eccentric sleeve to rotate through the transmission shaft and bevel gear, which in turn causes the crushing cone to perform a swing motion. After the material enters the crushing chamber from the upper feed port, it is squeezed and crushed between the crushing cone and the bowl liner. As the crushing cone continuously swings, the material is gradually crushed to the required particle size and finally discharged from the lower discharge port.
The transmission system is reasonably designed and can efficiently transfer the power of the electric motor to the crushing cone. The transmission shaft and bevel gear are made of high - strength materials and are precisely machined, ensuring the stability and reliability of power transmission. This reliable transmission system reduces energy loss during power transmission and improves the overall energy utilization efficiency of the equipment.
The shape and size of the crushing chamber match the motion trajectory of the crushing cone. This design allows the material to be fully crushed in the crushing chamber. The swing amplitude and frequency of the crushing cone are optimized to ensure the crushing effect while reducing wear on the crushing chamber and itself, extending the service life of the equipment.
The hydraulic system has a chamber - cleaning function. When the crushing chamber is blocked due to materials (such as sudden power outage or equipment failure), by operating the hydraulic system, the crushing cone can be made to move up and down quickly to discharge the materials blocked in the crushing chamber, quickly and conveniently solving the problem of chamber cleaning and reducing equipment downtime.
The hydraulic system of the SMH350C also supports a certain degree of automated operation. For example, when adjusting the size of the discharge port or handling overload situations, the hydraulic system can automatically operate according to preset programs without frequent manual intervention. This not only improves production efficiency but also reduces the labor intensity of operators.
This model of crusher can precisely control the particle size of products. By reasonably adjusting the size of the discharge port and the motion parameters of the crushing cone, uniformly - sized stones can be produced. In the construction industry, for the production of different - sized aggregates for building structures such as bridges and houses, this precise particle size control ability can ensure that the product quality meets the engineering requirements.
The SMH350C is suitable for crushing a variety of medium - large - sized ores and rocks. Whether it is medium - hardness limestone or high - hardness granite, it can achieve efficient crushing by appropriately adjusting operating parameters. This wide material adaptability gives it broad application prospects in medium - large - scale mining and building material production fields.
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