model | HJC130 |
Feed opening | 1100 x 1300 mm |
Max feed size | 950 mm |
CSS Range | 160 - 280 mm |
Capacity(by hour) | 400 - 800 t/h |
Motor power | 185 kW |
*Note: The processing capacity of the HJC130 jaw crusher may vary with different materials and feeding sizes.
Equipment configuration: PCZ1615 heavy hammer crusher ZG1538 vibrating feeder 3YKZ1670 vibrating screen. Performance feature: as one of the major market of Xinxiang Dingli Jiangxi spreads over our customers production sites.
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.
Investment advantage: the single-line arrangement of crushing process facilitates the transportation. The combined screening of multi vibrating screens makes the material much cleaner.
The HJC130 Jaw Crusher is a flagship model in the HJC Series Jaw Crushers, known for its superior crushing capacity and flexible adjustment capabilities. This crusher can handle a maximum feed size of 950 mm, making it suitable for primary crushing of ultra-large rock and extremely hard ore materials.
The HJC130 Jaw Crusher features an inlet size of 1100 x 1300 mm, capable of accepting a wide range of material inputs, enhancing operational flexibility. The adjustable outlet range of 160 - 280 mm provides users with precise control options to ensure the final product meets specific application requirements.
This crusher has a production capacity of 400 - 800 t/h, suitable for ultra-large-scale operations. Equipped with a 185 kW motor, it ensures efficient power output while considering energy efficiency, achieving both economic and environmental goals.
In terms of design, the HJC130 Jaw Crusher features a heavy-duty moving jaw assembly including high-quality cast steel components, a heavy eccentric shaft, four large self-aligning roller bearings, and a labyrinth seal structure. These components work together to ensure reliable operation under extreme conditions.
Additionally, the vibration damping installation design effectively absorbs peak loads from equipment vibrations, reducing noise pollution and minimizing impact on the foundation, thus extending the equipment's service life.
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