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    • 111. 发明专利
    • SELECTOR USING OSCILLATION/WIND FORCE
    • JPH0871507A
    • 1996-03-19
    • JP21030494
    • 1994-09-05
    • HITACHI SHIPBUILDING ENG CO
    • KAMIO KENICHIHAYASHI TAKESHINAKADA SHINICHIKODAMA MAREMOTO
    • B07B4/08B07B9/00B07B11/02B07B11/06
    • PURPOSE: To reduce a pressure loss and thereby enhance a selective performance by providing an air feed and an air discharge port on both corresponding end wall parts of a box-like form to both end parts of the deposition surface of an oscillator and causing an air for selection to flow toward an air discharge port side from an, air feed port side which are formed at mutually opposed positions. CONSTITUTION: If a drive shaft element 22 is rotated by an electric motor for an oscillator 12, oscillation is given to the upstream side of an, oscillator 11 through an eccentric disc 23 and a sieve plate 15 is caused to oscillate. In addition, if an object to be selected is dropped onto the oscillator 11 from a charging port 5 in such a state that an air is aspirated from a discharging port 4 using an air discharger, the object first hits a receiving plate 14 and moves to the surface of the sieve plate 15 downstream. In this case, a light-weight object which bounds up on the oscillator 11 is aspirated into a discharging port 4 side by an air sucked through a feed port 3. A small, dia. object passing through the sieve mesh of the sieve plate 15 is recovered through a mail object delivery port 5a. On the other hand, a large dia. object passing through over the sieve plate 15 is recovered through a large object delivery port 6b.
    • 119. 发明专利
    • DRY-SORTING METHOD
    • JPS6463078A
    • 1989-03-09
    • JP21976387
    • 1987-09-02
    • TANAKA ZENNOSUKE
    • TANAKA ZENNOSUKE
    • B07B4/02B07B11/02
    • PURPOSE: To improve classification efficiency by arraying trays consisting of perforated plates having a pore diameter of 5 to 25 times the average particle size of granular materials to be treated to multiple stages in series and blowing air into a classifying device from its bottom, thereby fluidizing the granular materials. CONSTITUTION: The granular material are continuously supplied from a supply device 6 by a compressor 7 and the a ir is blown up from the bottom 8 of the classifying device by using a fan 1. A valve 2 is so controlled that the linear velocity of the air stream in the lowermost stage chamber 18 attains 0.5 to 0.9 times the final velocity of the equil. particles in the respective stages. The linear velocity of the air stream in the lowermost stage chamber 19 is controlled by discharging part of the air from the discharge ports 9 disposed at the side walls of the respective stages. Probes 10 are inserted into the trays of the respective stages and the information from the probes 10 are inputted to a controller 11 and commands are transmitted to valves 12. As a result, classification is continuously and efficiency executed.