Cutting-Edge Gravity Grain Husk Separation Equipment Manufacturer with Innovation
Product Overview
To begin, the grains containing bran are fed into the inlet of a gravity bran separation sieve. This equipment utilizes the principles of gravity and sieve separation to effectively separate the grains from the bran. Inside the device, the grains enter the upper layer of the sieve through the inlet, while the bran falls into the lower layer through the sieve holes. Since the bran is relatively lighter, it moves downward with the vibrations or tilting of the equipment, eventually being separated. Meanwhile, the grains pass through the sieve apertures and exit through the outlet of the device. By adjusting the size of the sieve apertures, separation and screening of bran of different sizes can be achieved. The separated bran can be collected and processed through the outlet of the device.
Overall, the gravity bran separation sieve utilizes the forces of gravity and sieve separation to effectively separate grains from bran, thereby improving the quality and processing efficiency of the grains.

Efficient Separation: The screen effectively separates grain husks from grains based on gravity and size differences, ensuring efficient separation of unwanted bran or husk particles.

Gravity-Based Design: The equipment utilizes the force of gravity to facilitate the separation process, eliminating the need for additional power sources or complex mechanisms.

High-Quality Materials: The screen is constructed using durable and high-quality materials to withstand continuous use, ensuring long-lasting performance and reliability.

Easy Maintenance:The design of the screen facilitates easy cleaning and maintenance, allowing for convenient removal of accumulated bran or husk residue and ensuring smooth operation.

Enhanced Grain Purity:By effectively separating grain husks, the screen helps improve the purity and quality of grains, making them suitable for further processing or consumption.

Compact Design: Gravity grain husk separation screens are often designed to be compact and space-efficient, making them suitable for installation in various processing facilities, including small-scale or limited-space operations.
