
Huixian, Henan

+86 191 0373 1073

Standards for the Mining Industry
Built to withstand the toughest conditions, our PF Impact Crushers feature a highly durable crushing chamber and optimized impact plates. It offers precise control over product size while significantly reducing operational costs through easy-access maintenance doors and long-lasting wear components.

The PF-Series Impact Crusher is engineered for high-efficiency secondary and tertiary crushing of medium-hard materials. Utilizing a robust rotor and high-speed impact force, it shatters material against durable impact plates, ensuring a superior cubical product shape while maximizing crushing throughput.
The adjustable clearance between the impact racks and the rotor blow bars allows for precise control over the final output size. Furthermore, its heavy-duty frame and high-chrome wear parts guarantee stable performance and extended service life under continuous, demanding industrial operations.
Designed for seamless integration into modern crushing circuits, the PF Impact Crusher works optimally with vibratory feeders, screens, and conveyors across mining, quarrying, and aggregate production lines.

The PF Impact Crusher operates using a highly efficient dynamic impact mechanism. Raw material enters the crushing chamber from the top and is immediately struck by heavy-duty blow bars mounted on a high-speed rotating rotor.
The intense kinetic energy propels the material violently against the rugged impact plates (aprons). The material shatters upon impact and rebounds back into the rotor’s path for continuous size reduction. The clearance between the impact plates and the rotor can be adjusted to precisely control the final output size.
This high-velocity impact process ensures that materials fracture along their natural cleavage planes, producing highly uniform, cubical aggregates that meet strict industry standards for construction and road building.
Material Feeding – Bulk material enters the primary crushing zone directly from the upper feed opening.
High-Speed Impact – The rapidly spinning rotor and blow bars strike the incoming material with massive force.
Secondary Collision – The accelerated material is thrown against the interior impact plates, shattering further.
Sizing Control – The adjustable gap between the impact racks and the rotor defines the maximum discharge size.
Continuous Discharge – Properly sized, well-shaped particles exit through the bottom for uninterrupted production.

Material Feeding → High-Speed Rotor Impact → Impact Plate Collision → Sizing & Discharge → Screening (Optional)
| Model | Rotor Size (mm) | Feed Opening Size (mm) | Max Feeding Size (mm) | Capacity (t/h) | Motor Power (kw) | Weight (t) | Overall Dimension (mm) |
|---|---|---|---|---|---|---|---|
| PF-1007 | Ф1000×700 | 400×730 | 250 | 15-60 | 37-55 | 9.5 | 2400×1560×2660 |
| PF-1010 | Ф1000×1050 | 400×1080 | 300 | 50-90 | 55-75 | 13.2 | 2440×2250×2630 |
| PF-1210 | Ф1250×1050 | 400×1080 | 300 | 70-130 | 110-132 | 16.5 | 2700×2340×2870 |
| PF-1214 | Ф1250×1400 | 400×1430 | 300 | 90-180 | 132-160 | 19.5 | 2700×2695×2900 |
| PF-1315 | Ф1320×1500 | 860×1520 | 350 | 120-250 | 160-200 | 24.8 | 2860×2800×3050 |
Customization Options: Our engineering team can accommodate specific operational requirements, including custom IEC/NEMA motor brands (ABB, Siemens), specialized high-chrome blow bars and impact plates, localized voltage standards, and advanced hydraulic gap adjustment and casing opening systems.
* Note: Final production parameters depend on the specific material’s compressive strength, bulk density, moisture content, and the required output gradation setting.
High Reduction Ratio & Efficiency: Delivers exceptional crushing power with a large reduction ratio, minimizing the need for multi-stage processing.
Superior Cubical Shape: Advanced impact mechanism ensures excellent product shape with minimal flakiness, ideal for high-grade construction aggregates.
Durable Wear Parts: Equipped with a heavy-duty rotor and premium high-chrome blow bars for maximum wear resistance and extended service life.
Easy Maintenance: Features a hydraulic casing opening system, allowing for quick inspection and effortless replacement of blow bars and impact plates.
Secondary and tertiary crushing in mining and quarrying operations
High-quality aggregate production for highways, railways, and construction
Crushing of medium-hard materials like limestone, concrete, and dolomite
Construction and demolition (C&D) waste recycling
Vibrating feeder for continuous and regulated material feeding
Belt conveyors for smooth and efficient discharge handling
Circular vibrating screen for accurate particle size classification
Optional dust collection system for strict environmental compliance
Configuration: Primary Jaw Crusher → Belt Conveyor → PF Impact Crusher → Vibrating Screen
Recommended for processing medium-hard stone, producing high-quality, perfectly cubical aggregates for construction and road building.
Configuration: Primary Crusher → PF Impact Crusher → Vibrating Screen → (Oversize Material Return)
Recommended for operations requiring strict output size control, maximizing the yield of specific aggregate grades without waste.
Configuration: Feeder → Pre-screen → PF Impact Crusher → Magnetic Separator → Screen
Configured specifically for concrete and demolition waste recycling, easily handling rebar while producing reusable recycled aggregates.
Hydraulic Maintenance System: Equipped with a hydraulic casing opening device, ensuring safe and easy access for internal inspections and rapid blow bar replacement.
Premium High-Chrome Wear Parts: Blow bars and impact plates are cast from specialized high-chrome alloys, offering superior wear resistance and extending maintenance cycles.
Heavy-Duty Rotor Design: Precision-balanced heavy-duty rotor minimizes vibration during high-speed operation, reducing mechanical fatigue and ensuring long-term stability.
Strict Quality Control: Manufactured under rigorous ISO quality standards, with every unit undergoing comprehensive factory load testing before shipment.
Provide your material specifications and production targets.
Our engineers will recommend the most suitable model and configuration within 24–48 hours.
Material Type • Feed Size • Required Capacity • Output Size