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Home>Specifications and models>Cone Crusher

Product data

modelPYB2200
Max feed size300 mm
CSS Range30 - 60 mm
Capacity(by hour)490 - 800 t/h
Motor power260/280 kW
Dimensions4622×3302×4470 mm
Weight80 t

*Note: The processing capacity of the PYB2200 cone crusher may vary with different materials and feeding sizes.

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Our range cone crushers

PYB1200 Cone Crusher

PYB1200 Cone CrusherPYB1200

Nominal capacity110 - 168 t/h

Max. feed size145 mm

Motor power110 kW

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PYB1200 Cone Crusher

PYB1200 Cone CrusherPYB1200

Nominal capacity110 - 168 t/h

Max. feed size145 mm

Motor power110 kW

Live Chat
PYB2200 Cone Crusher

PYB2200 Cone CrusherPYB2200

Nominal capacity590 - 1000 t/h

Max. feed size300 mm

Motor power280/260 kW

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Case stories

500TPH Stone Plant in Taiyuan Shanxi

It is seen at the production site that the stone with large diameter is entering into the crusher through the feed opening. As for the material with the particle size not exceeding 1.6m we adopt the crusher with large hourly capacity.

3500TPD Stone Crushing Project in Meishan Sichuan

It isnt enough with only a heavy hammer crusher in gravel production line but needs to add proper feeder and belt conveyor. Our technicians have much experience in configuring production line.

300TPH Stone Production Line in Guizhou

The main equipment in 300tph aggregates production line in Liping Kaili Guizhou is PCZ1512 heavy hammer crusher vibrating feeder 3YK1860 upper vibrating screen*2. Though we have less equipment it has high finished materials quality.

Additional product information

Introduction to PYB2200 Spring Cone Crusher

In industrial production, material crushing is of great significance. The PYB2200 spring cone crusher plays an important role in industries such as metallurgy, building materials, and mining with its unique technical parameters and excellent performance.

Technical Parameters

1. Feed Size: The maximum feed size is 300mm, which is suitable for materials after primary crushing. It provides high - quality raw materials for subsequent fine crushing and reduces pre - treatment.

2. Discharge Size: The discharge opening can be adjusted between 30 - 60mm, precisely controlling the particle size to meet the strict requirements of various industries.

3. Processing Capacity: It can process 490 - 800 tons per hour, meeting the high - intensity production needs of large - scale enterprises and ensuring the stable operation of the production line.

4. Motor Power: With a dual - power configuration of 260/280kW, it can be switched as needed, providing strong and stable power to ensure efficient crushing.

5. Weight and Dimensions: The whole machine weighs 80 tons, and its dimensions are 4622×3302×4470mm. It has a stable structure and is convenient for installation and layout in large - scale sites.

Operational Convenience

1. Remote Monitoring and Operation: Using Internet of Things technology, the operation of the equipment can be remotely monitored via mobile phones and computers. Parameters such as operating parameters and fault alarms can be seen. When there is a problem with the equipment, an alarm can be received in a timely manner, and the problem can be solved remotely without going to the site, saving time and manpower and improving management efficiency. For example, in the mining scenario, technicians can grasp the working status of the crusher in real - time in the office and respond to emergencies in a timely manner.

2. Automatic Lubrication System: The equipment is equipped with an automatic lubrication system. According to the set time and oil volume, it automatically lubricates key components such as the eccentric shaft sleeve and bearings. There is no need to manually add lubricating oil, avoiding equipment wear and failures caused by lubrication problems. The system can also monitor the oil quality and level. When there are problems, it will automatically alarm to remind of oil replacement or refueling, reducing the difficulty and workload of equipment maintenance. In continuous production operations, this system can ensure the continuous and stable operation of the equipment and reduce the downtime caused by maintenance.

3. Safety Protection and Tips: Safety is fully considered in the design. There are protective devices such as guardrails and emergency stop buttons to prevent accidents. At all operation stages of the equipment, there are sound and light prompts to guide correct operation and avoid equipment damage or safety accidents caused by misoperation. For example, before the equipment starts, a prompt sound will be issued to remind the surrounding personnel to pay attention to safety; if there is an abnormality during operation, the warning light will flash and an alarm will be issued, facilitating the operator to handle it in a timely manner.

Maintenance Convenience

The key components of the PYB2200 adopt a modular design, such as the crushing wall and the mantle. They are easy to disassemble and replace. When these components are worn and need to be replaced, maintenance personnel can complete the operation quickly, greatly shortening the downtime. Moreover, the equipment reserves a spacious maintenance space, and maintenance tools and personnel can easily enter the interior of the equipment to inspect and maintain each component, reducing the difficulty and cost of maintenance.

Expansion of Application Scenarios

In the metallurgical industry, when processing iron ore, the PYB2200 can further process the ore after primary crushing, providing raw materials with appropriate particle sizes for subsequent beneficiation processes and improving the quality of iron concentrate. In the building materials industry, it is used to produce construction aggregates. Its strong processing capacity and precise particle size control can meet the dual needs of large - scale construction projects for the quantity and quality of aggregates. In the mining industry, for the mining and processing of non - ferrous metal ores such as gold ore and copper ore, it can crush the ore after primary crushing to a particle size that meets the requirements of subsequent extraction processes, contributing to the efficient utilization of resources.

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