model | HC895 |
Max feed size | 120 mm |
CSS Range | 8 - 20 mm |
Capacity(by hour) | 200 - 1250 t/h |
Motor power | 750 kW |
Dimensions | 6450×3705×5320 mm |
Weight | 79 t |
*Note: The processing capacity of the HC895 cone crusher may vary with different materials and feeding sizes.
In the production site it can be seen that with a relatively high degree of automation the production line almost does not need too much manpower and the discharge size can also be adjusted with relatively high crushing efficiency.
Investment advantage: heavy hammer crusher replaces the traditional combination of jaw crusher and impact crusher. It is thus featured by small investment and fast recovery of cost.
This whole aggregates production line adopts modular assembly mode. Each steel structure is assembled in the workshop before its delivery to the production site which saves a lot of time required for assembly.
1. Maximum Feed Size: 120mm, meeting the crushing needs of specific materials.
2. Discharge Opening Adjustment Range: 8 - 20mm, precisely adjust the discharge particle size.
3. Power: 750kW, with strong power to ensure the stable operation of the equipment.
4. Production Capacity: 200 - 1250t/h, ensuring production capacity under different working conditions.
5. Weight: 79 tons, the solid structure ensures stable operation.
6. Overall Dimensions: 6450*3705*5320mm, the design is suitable for operation on large - scale sites.
1. Intelligent Control System Upgrade: Introduce an advanced intelligent control system, integrating sensor technology and automated control algorithms. It can real - time monitor equipment operation parameters, such as current, temperature, vibration, etc., and automatically adjust the working state of the crusher according to material properties and production requirements, realizing intelligent and automated production.
2. Optimized Design of New - type Crushing Chamber: Develop a new - type crushing chamber, adopting a unique curve and structure design. It not only improves the crushing efficiency and product particle size uniformity but also reduces energy consumption. Through simulation analysis and actual testing, the shape and angle of the crushing chamber are optimized to make the movement trajectory of materials in the crushing chamber more reasonable and the force more uniform.
3. Application of High - efficiency and Energy - saving Technologies: Adopt a high - efficiency and energy - saving transmission system and hydraulic system, optimize power transmission and energy utilization. Reduce energy losses during equipment operation and improve energy utilization efficiency. For example, select high - efficiency and energy - saving motors and energy - saving hydraulic components to reduce unnecessary energy losses.
4. Innovative Application of Wear - resistant Materials: Adopt new - type wear - resistant materials for key components, such as the crushing cone and liner. This material has higher hardness and wear resistance, which can effectively extend the service life of components, reduce replacement times, and lower maintenance costs. At the same time, the application of new - type wear - resistant materials also improves the adaptability of the equipment under harsh working conditions.
We are present worldwide and always here to help.
Get in touch today!