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Symons cone crusher

Symons cone crusher technical parameter chart can be developed for use as an application tool to properly utilize the Symons cone crusher's capabilities.
The Symons cone crusher is one component of the production line. As such, its performance is in part dependent on the proper selection and operation of feeders, conveyors, screens, supporting structure, electric motors, drive component and surge bins.

Where used, attention to the following factors will enhance Symons cone crusher capacity and performance.

1. Proper selection of crushing chamber for material to be crushed.
2. A feed grading containing proper distribution of the particle size.
3. Controlled feed rate.
4. Proper feed distribution 360° around crushing chamber.
5. Discharge conveyor sized to carry maximum crusher capacity.
6. Properly sized scalping and closed circuit screens.
7. Automation controls.
8. Adequate crusher discharge area.

Features:

1. Many types of cavity. The series of S cone crusher owns special design, and the customer could select type of the cavity which has high efficiency, uniform granularity, good shape, uniform abrasion and long use life of bowl liner and mantle.
2. Dry oil seal prevents the dust. The series of S cone crusher owns special seal structure, so it has credible seal effect, and prolongs the cycle of the lube and use life.
3. Special material is used to manufacture key assemblies to support large crush power.
4. Large capacity. Compared with other type of the crusher, the series of S cone crusher has longer crush arm, larger stroke, larger crush power. It can crush the materiel more efficiently.
5. Every stroke crushes more materiel.
6. The crushing cone has long distance to bowl liner in every stroke, so the crusher allows more materiel to get into the cavity and produces larger capacity, and the materiel passes through the cavity more quickly.
7. Low cost of daily run and maintenance. Right manufacture materiel and structure are chosen to prolong the use life; the long crush arm reduces the load of slip bearing, gear, and shell; the granularity of the product is uniform which reduces the cycle load; the system of cleaning cavity with hydraulic pressure is convenient.

After the material has slid down a short distance, the larger lumps or masses of the material are crushed into smaller masses by the impact created when these lumps are caught between the crushing head wall and the inner wall of the mantle jacket, as the head approaches a portion of the mantle wall.
When the head retracts after having delivered the impact, the material continues to slip down and spread out on the flaring wall of the head along a course bounded by the adjacent head and mantle walls, until another impact is delivered by the head. After each succeeding impact the crushed material becomes smaller and slides along and spreads out into an area of the tapered cavity having a smaller spacing between its walls.
The final size of the crushed product is determined by the spacing between the walls at the lower end of the crushing cavity, when the head is in its position closest to the mantle.
The size of the crushed product can be regulated by raising or lowering the mantle by means of the sprocket nuts, thereby increasing or decreasing the cross section of the crushing cavity.

PYS Symons Cone Crusher Technical Data

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