IP Library Granted Patent US 12,123,650
Granted Patent B2
US 12,123,650 · App. 17/768,803 · Granted Oct 22, 2024

Cooler and a method for cooling bulk material

Inventors: Stefanie Richter (Oelde, DE); Ludwig Koenning (Ahlen, DE); Jochen Altfeld (Münster, DE)
Assignees: thyssenkrupp Polysius GmbH; thyssenkrupp AG
F27D15/0213C04B7/47C04B7/48F27D2015/026
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Quick Facts
Patent No.
US 12,123,650
App. No.
17/768,803
Granted
Oct 22, 2024
Kind
B2
Abstract

A method can be used to cool bulk material in a fine material cooler. The method may involve admitting bulk material to be cooled into the fine material cooler through a material inlet, conveying the coarse material with a first mechanical or pneumatic conveying unit, and conveying the fine material with a second conveying unit in a conveying direction through the fine material cooler to a material outlet. The bulk material may have a fine material proportion of 70% to 95% and a coarse material proportion of 5% to 30%. The fine material may have a grain size of 10-5 mm to 4 mm, and the coarse material may have a grain size of 4 mm to 100 mm.

Claims (28)

1. A method for cooling bulk material in a fine material cooler, the method comprising:

admitting bulk material to be cooled into the fine material cooler through a material inlet, wherein the bulk material has a fine material proportion of 70% to 95% and a coarse material proportion of 5% to 30%, wherein the fine material has a grain size of 10 −5 mm to 4 mm and the coarse material has a grain size of 4 mm to 100 mm;

conveying the coarse material with a first mechanical or pneumatic conveying unit; and

conveying the fine material independently of the course material with a second conveying unit in a conveying direction through the fine material cooler to a material outlet.

2. The method of claim 1 wherein the fine material of the bulk material is conveyed pneumatically.

3. The method of claim 1 comprising:

conducting compressed air into the fine material cooler via compressed-air inlets that point in the conveying direction; and

transporting the coarse material in the conveying direction via the compressed air.

4. The method of claim 1 comprising discharging the coarse material and the fine material from the fine material cooler separately.

5. The method of claim 1 comprising conveying exclusively mechanically the bulk material in a region of the fine material cooler that is downstream in the conveying direction.

6. A fine material cooler for cooling bulk material with a fine material proportion of 70% to 95% and a coarse material proportion of 5% to 30%, wherein the fine material has a grain size of 10 −5 mm to 4 mm, the fine material cooler comprising:

a material inlet configured to admit the bulk material to be cooled;

a material outlet configured to discharge the bulk material;

a first mechanical or pneumatic conveying unit configured to convey the coarse material; and

a second conveying unit configured to convey the fine material independently of the course material, wherein the first and second conveying units are configured to convey the bulk material in the conveying direction through the fine material cooler to the material outlet.

7. The fine material cooler of claim 6 wherein the first conveying unit is a mechanical conveying unit, wherein the first conveying unit comprises conveying elements that are movable simultaneously in the conveying direction and non-simultaneously counter to the conveying direction.

8. The fine material cooler of claim 6 wherein the second conveying unit is a pneumatic conveying unit.

9. The fine material cooler of claim 8 wherein the second conveying unit comprises fans that are configured to apply a cooling air flow to the fine material.

10. The fine material cooler of claim 6 wherein the first conveying unit is a pneumatic conveying unit that comprises a compressed-air device configured to apply compressed air to the coarse material.

11. The fine material cooler of claim 6 comprising conducting elements disposed in the fine material cooler that are configured to conduct the fine material within the fine material cooler.

12. The fine material cooler of claim 6 comprising:

a coarse material outlet configured to discharge the coarse material from the fine material cooler; and

a fine material outlet configured to discharge the fine material from the fine material cooler.

13. A cooler for cooling bulk material, comprising:

a cooler inlet configured to admit bulk material to be cooled;

a separation region arranged downstream of the cooler inlet in a conveying direction of the bulk material, the separation region configured to separate coarse material and fine material, wherein the coarse material has a grain size of 4 mm to 100 mm, wherein the fine material has a grain size of 10 −5 mm to 4 mm;

a coarse material cooler following the separation region, the coarse material cooler configured to cool the coarse material; and

a fine material cooler following the separation region and arranged parallel to the coarse material cooler, the fine material cooler configured to cool the fine material, wherein the fine material cooler comprises: a material inlet configured to admit the bulk material to be cooled; a material outlet configured to discharge the bulk material; a first mechanical or pneumatic conveying unit configured to convey the coarse material; and a second conveying unit configured to convey the fine material independently of the course material, wherein the first and second conveying units are configured to convey the bulk material in the conveying direction through the fine material cooler to the material outlet.

Assignments (2)
CHANGE OF NAME Recorded Sep 20, 2024
From: THYSSENKRUPP INDUSTRIAL SOLUTIONS AG
To: THYSSENKRUPP POLYSIUS GMBH
Reel/Frame 068650/0767 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2022
From: RICHTER, STEFANIE; KOENNING, LUDWIG; ALTFELD, JOCHEN
To: THYSSENKRUPP INDUSTRIAL SOLUTIONS AG; THYSSENKRUPP AG
Reel/Frame 059590/0363 →
Priority Claims (2)
BE 2019/5691 · Oct 14, 2019 · national
DE 10 2019 215 731.9 · Oct 14, 2019 · national
Continuity (1)
Related Publication 20240093941A1 · Mar 21, 2024