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) | ||
| 38 | 51 | 63 | ||||
| SMH350EC | 315 | 38-63 | 250~280 | 555 | 649 | 766 |
*Note: The processing capacity of the SMH350EC cone crusher may vary with different materials and feeding sizes.
This is an energy-saving and highly efficient stone production line. The equipment configured also as the main mining products for crushing and screening is very suitable to process local limestone.

This 600t/h production line has the basic configuration of PCZ1615 heavy hammer crusher PC1213 hammer crusher ZG1538 feeder 3YKZ2670 vibrating screen*2 sets 2YKZ2670 vibrating screen*2 sets.

As a centralized area of limestone Guangan has been established many gravel production lines and concentrate many huge stone production lines.
In the field of material crushing for mines and large - scale construction projects, the SMH350EC multi - cylinder hydraulic cone crusher has become an important equipment in the industry due to its advanced functional principles.
The SMH350EC adopts multi - cylinder hydraulic cone crushing technology. Its core principle is to apply pressure to the crushing cone through the hydraulic system, causing the crushing cone to perform a swing motion under the drive of the eccentric sleeve. When the material enters the crushing chamber, it is periodically squeezed, bent, and sheared between the crushing wall and the bowl liner to achieve crushing. This crushing method can effectively break large - sized materials into smaller particles and fully utilize energy during the crushing process, reducing unnecessary energy consumption.
The hydraulic system has excellent overload protection capabilities. When uncrushable foreign objects enter the crushing chamber, the hydraulic system can automatically sense and quickly respond. By releasing hydraulic oil, the crushing cone retreats appropriately, avoiding blockage of the crushing chamber and damage to key components. Once the foreign object passes, the hydraulic system can quickly return to normal working condition, ensuring the continuous operation of the crusher.
The size of the discharge port can be conveniently adjusted using the hydraulic system. Operators can precisely control the size of the discharge port according to production requirements, thereby producing products with different particle sizes. This convenient adjustment method improves production flexibility and can better meet the market's demand for stones of different specifications.
The crushing chamber of the SMH350EC is carefully designed and adopts the principle of laminated crushing. In the crushing chamber, the materials are not simply crushed by a single crushing force. Instead, after forming a layer, the particles in the layer are squeezed and rubbed against each other to achieve crushing. This laminated crushing method has many advantages. Firstly, it can increase the crushing ratio, enabling the materials to be crushed finer in a single crushing process. Secondly, it can produce finished products with better particle shapes, resulting in more cube - shaped aggregates. This is particularly important for the construction industry because cube - shaped aggregates can better interlock in concrete, improving the strength and stability of the concrete.
This model of crusher is designed to handle large quantities of materials produced by large - scale mining. Its powerful crushing capacity can ensure that a large amount of ores or rocks are processed in a short time, ensuring the efficient operation of the production process. It can play a huge role in both open - pit mines and large - scale building stone production bases.
During long - term operation, the SMH350EC exhibits extremely high stability. This is due to its robust structural design and reliable component manufacturing process. The key components can withstand long - term high - load operation, reducing the probability of equipment failure and ensuring that the production progress of large - scale projects is not affected by equipment problems.
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