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    • 1. 发明专利
    • COATING APPARATUS
    • JP2000117180A
    • 2000-04-25
    • JP33953199
    • 1999-11-30
    • BELOIT TECHNOLOGIES INC
    • BASSETT WILLIAM JGOECKS ROGER L
    • B05D1/26B05C1/08B05C3/18B05C5/02B05C11/04D21H23/32
    • PROBLEM TO BE SOLVED: To make it possible to feed a coating material in the direction of a cross machine by providing supporting beam extended in the direction of a cross machine, feeding a fluid into the supporting beam so as to maintain its temperature constant so as to suppress deformation of a supporting beam, caused by the heat in a coating apparatus and to prevent the bending deformation of the coating apparatus. SOLUTION: A supporting beam 52 is formed on a rigid rectangular formed- material, where the position of the supporting beam 52 is equal to or higher than that of a coating apparatus. The coating apparatus is separated from a packing roll when operation starts or a piece of paper is broken. An expansion air-pipe 50 is placed between the supporting beam 52 and the lower plate of the first fitting assembly 42 so that heat insulation can be realized between a coating head 28 and the supporting beam 52, and then a fluid for controlling temperature, preferably water, is fed by a pump, resulting in keeping the temperatures of the supporting beam 52 within a limited range and eliminating a temperature-gradient. Thus, a coating material is fed uniformly in the direction of a cross machine.
    • 4. 发明专利
    • REPULPING DEVICE
    • JPH11302989A
    • 1999-11-02
    • JP29327198
    • 1998-10-15
    • BELOIT TECHNOLOGIES INC
    • JOHN M ELERY
    • D21B1/14D21B1/34D21C7/12D21D5/28
    • PROBLEM TO BE SOLVED: To improve the control system of a repulping device having a container for pulp, a container for an aqueous slurry and a rotary blade for mixing the pulp with water to produce the aqueous slurry, thereby making it possible to continuously produce the aqueous slurry having a uniform slurry concentration without being affected by variations on processes. SOLUTION: When pulp is introduced from a supply device 2 into a container 6, the introduction of the pulp into the container is detected with a supply sensor. A control device 8 computes a water volume and a water flow rate to be fed into the container to obtain a prescribed slurry concentration in response to a pulp introduction signal, and subsequently outputs a signal exhibiting the water volume. A volume control means 62 controls the supply of water into the container in response to the computed water volume signal. The control device 8 further outputs a signal exhibiting the computed water flow rate. A flow rate control means 64 supplies the water into the container at the computed flow rate in response to the computed water volume signal and the computed flow rare signal. The water level sensor 110 of a slurry reservoir 14 monitors a slurry level in the slurry reservoir 14.
    • 7. 发明专利
    • SEPARATING DEVICE FOR GRANULAR MATERIAL AND ITS SEPARATION
    • JPH09173982A
    • 1997-07-08
    • JP33205896
    • 1996-12-12
    • BELOIT TECHNOLOGIES INC
    • JIYOUZEFU BII BIIRAGASU
    • B07B4/08B07B9/00B07B11/04B07B11/06D21B1/02
    • PROBLEM TO BE SOLVED: To separate the structural elements of a granular material from each other corresponding to a different attribute by dispersing a mixed granular material charged on a perforated member in an air flow moving upward in a duct, feeding a certain particle upward from the duct and discharging another particle through the perforated member from the bottom of the duct. SOLUTION: The mixed material 44 is charged from a hopper 58 on a porous screen formed from a grating 36 arranged along an inclined chute 60 in a separating section 24. The grating 36 has many narrow rod members arranged to be extended across the duct 22 between a material inlet 40 and a scrap outlet 42 in an adjacent material. The grating 36 is supported in cantilever by a mounting part 46 supporting the grating 36 elastically on a spring and a ferromagnetic member 50 is mounted to the grating 36, which is vibrated by a solenoid 52. Then, a certain material 44 is fluidized with air moving upward and is discharged from the separating section 24 through the duct 36 Another particle material 44 is discharged from the separating section 24 through the bottom 34 of the duct to be collected on a conveyer.