Method for operating a delivery apparatus, and delivery apparatus
US-2021107746-A1 · Apr 15, 2021 · US
US11261040B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11261040-B2 |
| Application number | US-201917278614-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 17, 2019 |
| Priority date | Sep 18, 2018 |
| Publication date | Mar 1, 2022 |
| Grant date | Mar 1, 2022 |
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A conveyor for pulverized material comprises in combination a conduit, a screw rotatably mounted within the conduit having an material inlet end and material discharge end, means for rotating the screw, means for supplying material to the screw at the material inlet end, whereby the material will be compacted as it is advanced by the screw to the material discharge end, and means for admitting a gas under pressure to the compacted material at the material discharge end to render it fluent. In a portion of the screw a material seal is formed by the compacted material being advanced by the screw, wherein there are material pockets formed between adjacent screw flights, wherein the pocket size volume is at its maximum nearest the material inlet end and at its minimum nearest the material outlet end, with at least twice as many pockets of minimum size as of maximum size.
Opening claim text (preview).
What is claimed is: 1. A conveyor for pulverized material comprising the combination of a conduit, a screw rotatably mounted within the conduit having an material inlet end and material discharge end, means for rotating the screw, means for supplying material to the screw at the material inlet end, whereby the material will be compacted as it is advanced by the screw to the material discharge end, means for admitting a gas under pressure to the compacted material at the material discharge end to render it fluent whereby the material will be conveyed through a conduit connected to the material discharge end of the screw by the pressure thus applied, wherein in a portion of the screw there a material seal is formed by the compacted material advanced by the screw thus preventing gas from traveling from the material discharge to the material inlet, and wherein in the material seal forming portion of the screw there are material pockets formed between adjacent screw flights, wherein the material pocket closest to the material inlet has the maximum volume of any material pocket, with the material pockets having the minimum volume being in the material seal forming portion of the screw nearest the material discharge end, and wherein there are at least two of such minimum volume pockets located in the material seal forming portion of the screw nearest the discharge end, with each pocket having a volume of about 50% to about 85% of the volume of the maximum size pocket. 2. The conveyor of claim 1 wherein there are at least three minimum sized pockets. 3. The conveyor of claim 2 wherein each minimum size pocket has a volume of about 52% to about 77% of the volume of the maximum size pocket. 4. The conveyor of claim 1 wherein there is at least one pocket located in material seal forming portion of the screw intermediate the minimum volume pockets and the maximum volume pockets, said at least one intermediately located pocket having a volume greater than the volume of any of the minimum volume pockets but less than the volume of the maximum volume pocket.
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