IP Library Granted Patent US 9,033,155
Granted Patent B2
US 9,033,155 · App. 13/807,763 · Granted May 19, 2015

Screening device and method of screening

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Quick Facts
Patent No.
US 9,033,155
App. No.
13/807,763
Granted
May 19, 2015
Kind
B2
Abstract

A screening device ( 1 ) comprises a first compartment ( 3 ) for receiving solid particulate material, a second compartment ( 5 ) for receiving screened particulates from said first compartment ( 3 ), a perforated wall ( 7 ) separating the first ( 3 ) and second ( 5 ) compartments from each other for screening the solid particulate material into at least two particulate size-dependent fractions, and a gas permeable layer ( 21 ) for fluidization of particulates in said first compartment ( 3 ). The first compartment ( 3 ) is provided with a solid particulate material inlet ( 9 ) located at a first end ( 22 ) of screening device ( 1 ), and a particulate material outlet ( 11 ) located at a second end ( 24 ) of screening device ( 1 ), with perforated wall ( 7 ) extending from first end ( 22 ) to second end ( 24 ) of screening device ( 1 ), enabling simultaneous transport and screening of at least a portion of said solid particulate material.

Claims (21)

1. A screening device comprising:

a first compartment for receiving a solid particulate material to be screened;

a second compartment for receiving screened particulates from the first compartment;

a perforated wall for separating the first compartment and the second compartment from each other and for screening the solid particulate material into at least two particulate size-dependent fractions; and

a gas permeable layer of the first compartment for fluidization of solid particulate material and screened particulates to simultaneously transport the solid particulate material and screened particulates through the screening device along the perforated wall within the screening device,

wherein the second compartment includes a second gas permeable layer for fluidization of screened particulates therein.

2. The screening device according to claim 1 , wherein a ratio of a length to a widest width of the first compartment is at least 3:1.

3. The screening device according to claim 1 , wherein the gas permeable layer and the second pas permeable layer slope downwardly in a direction moving from a first end to a second end of the screening device.

4. A screening device comprising:

a first compartment for receiving a solid particulate material to be screened;

a second compartment for receiving screened particulates from the first compartment;

a perforated wall for separating the first compartment and the second compartment from each other and for screening the solid particulate material into at least two particulate size-dependent fractions; and

a gas permeable layer for fluidization of solid particulate material and screened particulates to simultaneously transport the solid particulate material and screened particulates through the screening device along the perforated wall within the screening device,

wherein a gas chamber is arranged below the gas permeable layer for a flow of fluidization gas to the first compartment and the second compartment, and the gas chamber comprises a first sub-chamber for a flow of fluidization gas to the first compartment, and a second sub-chamber fluidly separated from the first sub-chamber, for a flow of fluidization gas to the second compartment.

5. The screening device according to claim 1 , wherein perforations through the perforated wall are of a uniform size.

6. The screening device according to claim 1 , wherein an additional perforated wall with perforations therethrough separates the second compartment from a third compartment, with the additional perforated wall extending from a first end to a second end of the screening device, with perforations therethrough smaller in size than the perforations through the perforated wall separating the first compartment from the second compartment.

7. A method of separating solid particulate material into at least two particulate size-dependent fractions, said method comprising:

supplying pressurized gas to a first compartment of a screening device through a gas permeable layer of the first compartment for fluidization of at least a portion of a solid particulate material therein to simultaneously transport the solid particulate material through the screening device along a perforated wall with perforations therethrough and screen at least a portion of the solid particulate material through the perforations in the perforated wall, to obtain separated larger sized unscreened particulates in the first compartment and smaller sized screened particulates in a second compartment, and

supplying a pressurized gas to the second compartment of the screening device through a second gas permeable layer of the second compartment for fluidization of at least a portion of the smaller sized screened particulates in the second compartment.

8. Method according to claim 7 , wherein a level of solid particulate material in the first compartment is greater than a level of screened particulates in the second compartment, thereby generating a flow from the first compartment of smaller sized screened particulates to the second compartment.

9. Method according to claim 7 , wherein the solid particulate material in the first compartment is fluidized independently of the screened particulates in the second compartment.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2021
From: GENERAL ELECTRIC TECHNOLOGY GMBH
To: REEL ALESA AG
Reel/Frame 057217/0145 →
CHANGE OF NAME Recorded Aug 17, 2016
From: ALSTOM TECHNOLOGY LTD
To: GENERAL ELECTRIC TECHNOLOGY GMBH
Reel/Frame 039714/0578 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2013
From: SORHUUS, ANDERS KENNETH
To: ALSTOM TECHNOLOGY LTD
Reel/Frame 029959/0996 →