Mobile cone crushing plants have broad application prospects in the field of crushing operations due to their high flexibility, efficient crushing capacity, wide applicability, energy saving and environmental protection, intelligent control, and high cost-effectiveness.
The biggest advantage of the mobile cone crushing plant is its high degree of flexibility and portability. The equipment is usually mounted on a track or tire chassis and can easily traverse various terrains to reach the job site. This greatly reduces the cost and time of material transportation, enables crushing operations to be carried out at the source of raw materials, and greatly improves operating efficiency.
The cone crusher adopts a cone crushing cavity design, and the stone is crushed and broken by rotating the cone crushing cavity. This design enables the equipment to have efficient crushing capabilities, which can handle materials of various hardnesses and produce uniform crushed products that meet different standards and requirements for construction aggregates.
The mobile cone crushing station can process many types of materials, such as pebbles, iron ore, limestone, granite, coal gangue, concrete processing, construction waste, etc. Its wide range of applications enables the equipment to meet the crushing needs of different users and adjust the crushing type according to different conditions to achieve diversified crushing effects.
This equipment adopts advanced crushing technology and energy-saving design, which makes it have low energy consumption, low noise and low dust emission during operation, and meets environmental protection requirements. At the same time, the equipment has a sophisticated structure, low failure rate, and stable and reliable operation, greatly reducing maintenance and downtime.
Motor drive: The motor in the mobile cone crushing station drives the main shaft to rotate through transmission devices (such as pulleys and belts).
Eccentric sleeve and moving cone movement: The rotation of the main shaft causes the eccentric sleeve to rotate, and the moving cone connected to it rotates and swings under the action of the eccentric sleeve. This swing makes the moving cone sometimes approach the static cone and sometimes move away from the static cone, thus forming a changing crushing cavity between the two.
Material crushing: When the material enters the crushing cavity, it is squeezed and impacted multiple times between the moving cone and the static cone. Due to the rotation and swing of the moving cone, the material is subjected to forces from multiple directions in the crushing chamber and is broken and polished along its texture.
Discharging and screening: The material particles that meet the discharging requirements fall through the swing gap of the crushing wall and enter the next stage of the screening or conveying system. Larger material particles will continue to remain in the crushing cavity for further crushing until the required particle size is reached.
Model | SMC120SMHS | SMC180SMHS | SMC180SMH | SMC250SMHS | SMC250SMH | |
Transport size | ||||||
Length(mm) | 11200 | 11800 | 10000 | 12300 | 10816 | |
Width(mm) | 2743 | 2743 | 2480 | 2900 | 2743 | |
Height(mm) | 4200 | 4200 | 4160 | 4200 | 4160 | |
Alex weight(kg) | 15500 | 16300 | 14300 | 31100 | 22900 | |
King pin weight(kg) | 12900 | 14200 | 8100 | 17600 | 12800 | |
Cone crusher | ||||||
Model | SMH120 | SMC180 | SMC180 | SMC250 | SMC250 | |
Max Feed opening(mm) | 160 | 180 | 180 | 240 | 240 | |
setting range(mm) | 22-32 | 22-32 | 22-32 | 26-51 | 26-51 | |
Vibrating screen | ||||||
Model | 3YK1545 | 4YK1548 | ||||
Belt conveyor | ||||||
Model | B800X8 | B1000X8 | B1000X8 |
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