In a cone crusher the stones are crushed with both SPB and IPB as the material moves down through the chamber. The relative amounts of IPB and SPB depends on factors like chamber design, crusher geometry, speed, css, eccentric throw, and others. SPB
Cone crushers were originally designed and developed by around 1920 and therefore are often described as cone crushers. As the mechanisms of crushing in these crushers are similar to gyratory crushers their designs are similar, but in this case the spindle is supported at the bottom of the gyrating cone instead of being suspended as in larger gyratory crushers.
The unique working principle of cone crusher enables it to be useful for primary crushing, secondary crushing and final crushing as well. With the higher production and higher quality, it is becoming more and more popular among construction companies.
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The Principle. Many cone crusher manufacturers use the Principle to produce more powerful and efficient crushers. Based on this principle, each rotation of the mantle is timed in a way so that the thrust of the mantle meets the feed material at the point of maximum impact.
Cone crusher and gyratory crusher work on the same principle. Both have the same operation. If cone crusher differs then it is only from crushing chamber. Cone crusher has a less steep crushing chamber and more parallel zone between crushing zones. It breaks the rocks by squeezing it between the gyrating spindles.