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READ MOREOur company's ZK series linear vibrating screens have proven themselves through years of production, boasting a range of advantages: high throughput, reasonable technical parameters, high structural strength and rigidity, serialized and universal design, a high degree of standardization, smooth and reliable operation, low noise, and easy maintenance. This series offers 20 specifications and models, with screen areas ranging from 2.25 to 18 m² and screen angles ranging from -10° to 5°. For feed sizes less than 250 mm, they can screen 4.5 to 756 tons of material per hour.
Applications
Suitable for industries such as coal, metallurgy, mining, power generation, building materials, water conservancy projects, and the chemical industry.
Product Introduction
Linear vibrating screens utilize a vibrating motor as a vibration source, causing material to be thrown up on the screen while simultaneously moving forward in a linear motion. Material enters the screen's inlet evenly from the feeder, passes through multiple layers of screens, and is separated into oversize and undersize fractions of varying sizes, which are then discharged from their respective outlets.
Key Advantages
● Uses an eccentric block as the excitation force, resulting in strong excitation force.
● The screen beam and screen box are connected with high-strength bolts, eliminating welding.
● Simple structure, easy and quick maintenance.
● Uses a tire coupling for flexible connection and smooth operation.
Operating Principle
The ZK series linear vibrating screen is driven by dual motors. When the two motors rotate synchronously and in opposite directions, the excitation forces generated by their eccentric blocks cancel each other out in the direction parallel to the motor axes and add to form a net force perpendicular to the motor axes, resulting in a straight line motion path. The two motor shafts are tilted relative to the screen surface. Under the combined force of the excitation force and the natural vibration force of the material, the material is thrown up on the screen surface and moves forward in a linear motion, thus achieving the purpose of screening and grading.
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