IP Library › Granted Patent US 10,888,900
Granted Patent B2
US 10,888,900 · App. 16/078,634 · Granted Jan 12, 2021

Rock box splitter

Inventors: Marc Mayer (Burlington, KY); Robert Lunnemann (Florence, KY)
Assignee: M-l L.L.C.
B07B1/4618B07B1/38B07B13/16B07B2201/04
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Quick Facts
Patent No.
US 10,888,900
App. No.
16/078,634
Granted
Jan 12, 2021
Kind
B2
Abstract

Described herein are splitters for holding and distributing input material to one or more decks of a gyratory sifter, where the splitter distributes approximately an equal amount of input material to each deck. An exemplary splitter may include a bottom surface, a sidewall, and one or more openings through the sidewall. Each opening may include a plurality of slits, allowing input material to pass therethrough. Where multiple openings are provided through the sidewall, the openings may be evenly spaced and have an equivalent area. The bottom surface may be substantially circular, and the sidewall may extend perpendicularly from the edges of the bottom surface. An exemplary splitter may be able to receive and distribute the input material when a gyratory force acts on the gyratory sifter on which the splitter is installed.

Claims (47)

1. A splitter for a gyratory sifter, comprising:

a top surface defining an inlet configured to receive material fed to the splitter;

a bottom surface opposing the top surface and being solid in form such that any of the material flow fed to the splitter is prevented from exiting a bottom of the splitter; and

a cylindrical sidewall coupled to the top surface and the bottom surface and perpendicularly extending away from the bottom surface and the top surface, the cylindrical sidewall and the bottom surface defining a reservoir coaxial with the inlet and configured to retain at least a portion of the material flow fed to the splitter;

wherein the cylindrical sidewall includes one or more openings, each opening corresponding to a deck on a gyratory sifter.

2. The splitter of claim 1 , wherein the cylindrical sidewall includes six openings of equal area.

3. The splitter of claim 1 , wherein each opening of the one or more openings comprises a plurality of slits which permit a flow of the material flow therethrough.

4. The splitter of claim 1 , wherein each opening of the one or more openings comprises at least one overflow window which permits a flow of the material flow therethrough.

5. The splitter of claim 1 , wherein the cylindrical sidewall includes a reservoir-facing surface and an exterior-facing surface; and further comprising dividers coupled to the exterior facing surface, each divider extending outwardly from the cylindrical sidewall, and each divider further extending from the top surface to the bottom surface.

6. The splitter of claim 5 , wherein the number of dividers is one less than the number of decks in the gyratory sifter.

7. The splitter of claim 1 , wherein each opening comprises:

a plurality of slits which permit a first flow of the material flow therethrough; and

at least one overflow window which permits a second flow of the material flow therethrough,

wherein the at least one overflow window and the plurality of slits are vertically aligned.

8. The splitter of claim 7 , wherein each slit of the plurality of slits is smaller in size than the at least one overflow window.

9. A gyratory sifter, comprising:

a plurality of decks, each deck including one or more screens;

a splitter comprising:

a top surface defining an inlet configured to receive material fed to the gyratory sifter;

a bottom surface opposing the top surface and being solid in form such that any of the material flow fed to the splitter is prevented from exiting a bottom of the splitter; and

a cylindrical sidewall including one or more openings, the cylindrical sidewall coupled to the top surface and the bottom surface and perpendicularly extending away from the bottom surface and the top surface, and the cylindrical sidewall and the bottom surface defining a reservoir coaxial with the inlet and configured to retain at least a portion of the material flow fed to the splitter; and

an inlet door forming respective flowpaths from each opening to a corresponding deck of the plurality of decks.

10. The gyratory sifter of claim 9 , wherein the cylindrical sidewall includes six openings of equal area.

11. The gyratory sifter of claim 9 , wherein each opening of the one or more openings comprises a plurality of slits which permit a flow of the material flow therethrough.

12. The gyratory sifter of claim 9 , wherein each opening of the one or more openings comprises at least one overflow window which permits a flow of the material flow therethrough.

13. The gyratory sifter of claim 9 , wherein the cylindrical sidewall includes a reservoir-facing surface and an exterior-facing surface; and further comprising dividers coupled to the exterior facing surface, each divider extending outwardly from the cylindrical sidewall, and each divider further extending from the top surface to the bottom surface.

14. The gyratory sifter of claim 13 , wherein the number of dividers is one less than the number of decks in the gyratory sifter.

15. The gyratory sifter of claim 9 , wherein each opening comprises:

a plurality of slits which permit a first flow of the material flow therethrough; and

at least one overflow window which permits a second flow of the material flow therethrough,

wherein the at least one overflow window and the plurality of slits are vertically aligned.

16. The gyratory sifter of claim 15 , wherein each slit of the plurality of slits is smaller in size than the at least one overflow window.

17. The gyratory sifter of claim 9 , wherein the splitter is fixedly attached to the inlet door.

18. A gyratory sifter, comprising:

a plurality of decks, each deck including one or more screens;

a splitter comprising:

a top surface defining an inlet configured to receive material fed to the gyratory sifter;

a bottom surface opposing the top surface and being solid in form such that any of the material flow fed to the splitter is prevented from exiting a bottom of the splitter; and

a sidewall including one or more openings, the sidewall coupled to the top surface and the bottom surface and perpendicularly extending away from the bottom surface and the top surface, and the sidewall and the bottom surface defining a reservoir coaxial with the inlet and configured to retain at least a portion of the material flow fed to the splitter; and

an inlet door forming respective flowpaths from each opening to a corresponding deck of the plurality of decks,

wherein each opening of the one or more openings comprises:

a plurality of slits which permit a first flow of the material flow therethrough; and

at least one overflow window which permits a second flow of the material flow therethrough,

wherein the at least one overflow window and the plurality of slits are vertically aligned, and

wherein each slit of the plurality of slits is smaller in size than the at least one overflow window.

19. The gyratory sifter of claim 18 , wherein the sidewall includes a reservoir-facing surface and an exterior-facing surface; and further comprising dividers coupled to the exterior facing surface, each divider extending outwardly from the sidewall, and each divider further extending from the top surface to the bottom surface.

20. The gyratory sifter of claim 19 , wherein the number of dividers is one less than the number of decks in the gyratory sifter.

Assignments (2)
SECURITY INTEREST Recorded Apr 30, 2026
From: SWECO WORLDWIDE, INC.
To: GLADSTONE CAPITAL CORPORATION, AS AGENT
Reel/Frame 074532/0526 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2018
From: MAYER, MARC DANIEL; LUNNEMANN, ROBERT
To: M-I L.L.C.
Reel/Frame 046748/0442 →
Continuity (2)
Provisional Application 62331423 · May 3, 2016
Related Publication 20190054502A1 · Feb 21, 2019