How does the limestone sand making machine work?

The main component of limestone is calcium carbonate (CaCO3). It is widely used in building materials and industrial raw materials. Limestone is directly processed into stone and fired into quicklime. Limestone is the main raw material of natural calcium carbonate for the production of glass. Lime and limestone are used in large quantities as building materials and are also important raw materials for many industries. Limestone is a kind of mine resource with wide distribution and large reserves. Natural limestone is processed by limestone sand making machine to make sand. It is especially suitable for construction sand and road construction sand. The stone sand making machine is familiar with various properties of limestone.

large sand making machine

Detail optimization display of limestone sand making machine

Optimized impact block processing effect is good

The stone sand making machine uses a diamond-shaped combined impact block (throwing head) to replace the original integral hammer and square combined impact block. Impact block alloys are “hard but not brittle, tough and tough” and have good high temperature performance.

High-quality alloy parts are stronger

The use of foreign high-quality alloys instead of domestic traditional manganese steel and cast alloy parts greatly improves the wear resistance of the impact block and the crushing capacity of the sand making machine.

Excellent configuration and long service life

The data shows that compared with other equipment, the service life of stone sand making machine is more than five times higher than that of the original product. The sand making efficiency is increased by more than 30%.

Working principle of limestone sand making machine

Limestone sand making machine, also known as stone sand making machine, is mainly due to the special working principle of its equipment, as follows:

The limestone material is evenly dropped into the feeding hopper, enters the high-speed rotating rotor through the central feeding hole, is fully accelerated, and is thrown through the launch port, collides with a part of the limestone material that falls freely after the rebound, and then hits the surrounding eddy currents together. The vortex-shaped material in the cavity is lined (or on the counterattack block), which is first bounced to the top of the crushing cavity, and then deflected to move downward. Outlet discharge.

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