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CONE CRUSHER

Secondary and Tertiary –

CG Series

CONE CRUSHERS  – CG SERIES

Nesans CG series cone crusher is a heavy duty, easy to maintain, higher crushing force with optimal energy consumption crusher predominantly used at the secondary and the tertiary stage of crushing. Higher reduction ratio enables CG series cone crusher to operate at tertiary and quaternary stages of crushing. Varying materials of varying hardness ranging from Iron ore to granite can be easily crushed with CG series crushers.

Dominant crushing power with superior product gradation with diminished operating costs

Nesans CG series cone crushers are well suitable for secondary, tertiary and quaternary stage of operation. Exclusively designed to accommodate a wide variety of feed materials with varying range of hardness and abrasiveness, Nesans CG Series crushers are robust machines giving out enhanced performance over a long time with reduced downtime. The knowledge we gain from our experience, research and customer feedback is recycled back into our design and production methodologies for a better outcome.

Our CG series cone crusher combine small space footprint to that of a high reduction efficiency, producing good quality shape. Excellence in quality and performance is assured with our CG series cone crushers.

Cone Crusher

HOW CG SERIES CONE CRUSHERS WORK ?

CG series cone crushers have overhead receiving hoppers onto which the feeding conveyors loads the material. The crusher produces maximum output in terms of production capacity when It is choke fed. The material from the feeding conveyors falls into the spider protection cap and reaches the top section of the crushing chamber.

The crushing chamber differs for a coarse cone crusher used in the secondary stage to that of a fine cone crusher used in the tertiary stage. The coarse crushing chamber is deep and narrow whereas the fine crushing chamber is shallow and wide.

The crusher is fitted with a hydraulic CSS adjustment system through which the setting can be adjusted even when the crusher is under operation. Once the material reaches the top segment of the crushing chamber, it is pushed below by the overlying material and by gravity.

The high crushing force created by the gyrating movement of the shaft and the mantle crushes the material into individual small particles. The gyrating and eccentric movement of the mantle opens up the gap between the concave and the mantle through which the material discharges into the output conveyor.

EASY HANDLING AND MAINTENANCE

Much attention has been paid to making our crushers as easy to operate and maintain as possible. All service and inspection is carried out from above, which makes the work easier and the maintenance costs lower.

Premium dust seals made provides robust sealing against dust and other particles from entering the main shaft assembly, thereby reducing maintenance and increasing the uptime. Our automatic control system enables customers to make informed decisions about the performance of the crusher and also to quickly plan out changes in the communition circuit.

Cone Crusher CG150 front view

FEATURES AND ADVANTAGES

Long life from the wear liners by material specific manganese grade
Automatic overload protection system
Add-on A-Z Automatic control system
Silent operation and long life thanks to the hardened specially made bevel gears
Option to adjust the product curve and capacity
Easy adjustment of gear backlash
Robust construction of the pinion – countershaft assembly. The pinion and the countershaft can be removed without taking the crusher apart
Versatile and cost effective installation
Reduced environmental foot print
Efficient and stable performance
Technical Data

Models

CAPACITY : 90 - 125 TPH

CAPACITY : 65 - 110 TPH

CAPACITY : 150 - 200 TPH

CAPACITY : 90 - 130 TPH

CAPACITY : 90 - 125 TPH

CAPACITY : 65 - 110 TPH

CAPACITY : 150 - 200 TPH

CAPACITY : 90 - 130 TPH

CG150

CG150F

CG250

CG250F

Applications

Download our CG Series Brochure

FAQ
What is a Cone Crusher ?
What are the spares in a Cone Crusher ?
How does the Cone differ in working from a Jaw ?
How to adjust CSS in a Cone Crusher ?
What does different cavity mean in a Cone Crusher ?
What is the reduction ratio of the Cone Crusher ?
What is difference between Fine Cone and a VSI ?
How do we achieve better shaping in Cone Crushers ?

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