Application Areas
Primarily used in industrial sectors such as metallurgy, mining, chemical industry, cement, construction, refractory materials, and ceramics.
Applicable Materials
Medium- and fine-crushing of various medium-hard ores and rocks, such as limestone, dolomite, and phosphate ore, makes this equipment the preferred choice for primary crushing of diverse types of rock.
Features of Jaw Crusher Products
1. Featuring superior motion characteristics and a unique cavity design, the jaw plates are interchangeable and can be flipped four times for extended use, ensuring uniform wear across the crushing surface. This approach enhances material utilization and significantly boosts service life. Additionally, this model outperforms comparable machines by processing 15% more material while reducing energy consumption by over 10%.
2. The unique crushing chamber design enhances the utilization rate of jaw plate materials.
3. The tooth peaks of the jaw plates in the crushing chamber—specifically, those of the moving and fixed jaw plates—are better suited for breaking harder materials.
4. A structurally designed with adjustable transmission angles allows for higher output at the same discharge opening.
5. The fixed jaw plate and the movable jaw plate are universal, effectively reducing the number of spare parts users need to keep on hand, while also making installation more convenient.
6. The discharge port features a dual-jack hydraulic adjustment system, making adjustments faster and more effortless.
7. The moving jaw section and the frame section feature a detachable design for convenient transportation.
Working Principle of Jaw Crushers
This machine primarily consists of components such as the frame, moving jaw assembly, eccentric shaft, jaw plates, and adjustment seat. During operation, the electric motor drives the eccentric shaft via a V-belt connected to pulleys, causing the moving jaw to follow a specific trajectory. As material enters the crushing chamber, it is subjected to compression,劈裂 (splitting), and bending forces between the two jaw plates, leading to size reduction. Finally, the crushed material is discharged through the discharge opening under its own weight.
Technical Specifications
| Specification Model | Feed inlet size (mm) | Maximum Feed Particle Size (mm) | Discharge port clearance CSS (mm) | Processing Capacity (t/h) | Motor power (kW) |
| C1008 | 1020×800 | 680 | 65-250 | 185–500 | 110 |
| C1210 | 1160×1050 | 850 | 75-275 | 270-810 | 132 |
| C1412 | 1400×1200 | 1000 | 95-300 | 390–950 | 185 |
| C1615 | 1610×1400 | 1120 | 120-300 | 470–1150 | 250 |
| C1815 | 1800×1500 | 1200 | 125–325 | 630–1300 | 355 |
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C-Series Jaw Crusher
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