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READ MOREOur YA series circular vibrating screens are divided into five categories based on screen specifications. Each category is further divided into light, heavy, single-deck, and double-deck options. Over 20 varieties are available, with a screening capacity of 150-1700 tons per hour. Screen apertures range from 6mm to 150mm, and feed sizes range from 50mm to 400mm. They offer high efficiency and fast screening speeds, meeting a variety of screening needs.
Applications
Coal, ore, coke, and other bulk materials
Product Introduction
The YA series circular vibrating screen is primarily suitable for industries such as coal, metallurgy, mining, power generation, building materials, water conservancy projects, light industry, and chemical industry. It is a highly efficient screening device for classifying bulk materials such as coal, ore, and coke.
Outstanding Advantages
● Ring-groove rivet connection, advanced structure, and durability
● Tire coupling provides flexible connection and smooth operation
● High-strength bolts are used between the screen beam and the screen box, resulting in a simple structure and easy and quick maintenance
● Eccentric blocks are used as the excitation force, providing strong excitation force, low power consumption, and low noise
Operating Principle
The YA series vibrating screen operates on the principle that the exciter is mounted on the side panels of the screen box and is driven by an electric motor via a belt drive, generating centrifugal inertia, which forces the screen box to vibrate periodically. The motion trajectory is approximately circular; when the material to be screened enters the screen surface, the vibration of the screen surface causes the material layer on the screen surface to loosen and jump off the screen surface. Small particles can pass through the material layer and fall down, while large particles cannot, causing the originally disordered particle group to separate, forming an arrangement rule in which small particles are at the bottom and large particles are at the top; fine particles reaching the screen surface that are smaller than the sieve holes pass through the sieve, realizing the separation of coarse and fine particles and completing the screening; at the same time, the particles stuck in the sieve holes will be vibrated out to ensure that the sieve holes are not blocked.
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