IP Library › Granted Patent US 11,883,849
Granted Patent B2
US 11,883,849 · App. 17/387,644 · Granted Jan 30, 2024

Apparatuses, methods, and systems for vibratory screening

Inventors: James R. Colgrove (East Aurora, NY); Michael L. Peresan (Strykersville, NY)
Assignee: DERRICK CORPORATION
B07B1/36B07B1/28B07B1/46B07B1/48B07B13/16B07B2201/04B07B2230/01
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Quick Facts
Patent No.
US 11,883,849
App. No.
17/387,644
Granted
Jan 30, 2024
Kind
B2
Abstract

Vibratory screening machines that include stacked screening deck assemblies are provided. In some embodiments, at least one of the vibratory screening machines can include an outer frame, an inner frame connected to the outer frame, and a vibratory motor assembly secured to the inner frame for vibrating the inner frame. A plurality of screen deck assemblies can be attached to the inner frame in a stacked arrangement, each configured to receive replaceable screen assemblies. The screen assemblies can be secured to respective ones of the plurality of the screen deck assemblies by tensioning the screen assemblies in a direction that a material to be screened flows across the screen assemblies. An undersized material discharge assembly can be configured to receive materials that pass through the screen assemblies, and an oversized material discharge assembly can be configured to receive materials that pass over the screen assemblies.

Claims (55)

1. A vibratory screening machine, comprising:

an outer frame;

an inner frame connected to the outer frame;

a vibratory motor assembly attached to the inner frame such that the vibratory motor assembly vibrates the inner frame; and

a plurality of screen deck assemblies, each screen deck assembly comprising a screening deck, wherein each screen deck assembly is secured within the vibratory screening machine in a stacked position within a stacked configuration of the plurality of screen deck assemblies and wherein each screen deck is configured to receive a screen assembly,

an undersized material discharge assembly configured to receive materials that pass through the screen assembly; and

an oversized material discharge assembly configured to receive materials that pass over a top surface of the screen assembly,

wherein the undersized material discharge assembly includes an undersized material chute in communication with each of the plurality of screen deck assemblies,

wherein the oversized material discharge assembly includes a first oversized material chute assembly in communication with each of the plurality of screen deck assemblies and a second oversized material chute assembly in communication with each of the plurality of screen deck assemblies.

2. The vibratory screening machine according to claim 1 , wherein each of the plurality screen deck assemblies includes a bifurcated trough that is configured to receive materials that pass over the respective top surfaces of the screen assemblies and are conveyed over a discharge end of each of the plurality of screen assemblies, a first section of the bifurcated trough feeding the first oversized material chute assembly and a second section of the bifurcated trough feeding the second oversized material chute assembly.

3. The vibratory screening machine according to claim 2 , wherein:

each of the plurality of screen deck assemblies includes a pan configured to receive the materials that pass through the screen assembly of that screen deck assembly; and

the undersized material discharge assembly includes a duct corresponding to each pan, wherein each duct is configured to receive the materials that pass through the screen assembly from the corresponding pan and wherein each duct is in communication with the undersized material chute.

4. The vibratory screening machine according to claim 3 , wherein each duct is further configured to provide a clearance to an outlet of the corresponding pan such that a vibration of the pan is not directly conducted to the corresponding duct.

5. The vibratory screening machine according to claim 1 , wherein at least one of the plurality of the screen deck assemblies is replaceably attached to the inner frame and the undersized material discharge assembly and the oversized material discharge assembly are at least one of removable attached to the at least one of the screen deck assemblies and not attached to the at least one of the screen deck assemblies.

6. The vibratory screening machine according to claim 1 , wherein each of the plurality screen deck assemblies includes:

a first trough configured to receive a first portion of materials that pass over the top surface of the screen assembly of that screen deck assembly and are conveyed over a discharge end of the screen assembly, the first trough configured to feed the first portion of the materials into the first oversized material chute assembly; and

a second trough configured to receive a second portion of the materials that pass over the top surface of the screen assembly of that screen deck assembly and are conveyed over the discharge end of the screen assembly, the second trough configured to feed the second portion of the materials into the second oversized material chute assembly.

7. The vibratory screening machine according to claim 6 , wherein:

each of the plurality of screen deck assemblies includes a pan configured to receive the materials that pass through the screen assembly of that screen deck assembly; and

the undersized material discharge assembly includes a duct corresponding to each pan, wherein each duct is configured to receive the materials that pass through the screen assembly from the corresponding pan and wherein each duct is in communication with the undersized material chute.

8. The vibratory screening machine according to claim 7 , wherein each duct is further configured to provide a clearance to an outlet of the corresponding pan such that a vibration of the pan is not directly conducted to the corresponding duct.

9. The vibratory screening machine according to claim 2 , wherein:

the undersized material chute, the first oversized material chute assembly, and the second oversized material chute assembly are located beneath the plurality of screen deck assemblies, and

the undersized material chute is located between the first oversized material chute assembly and the second oversized material chute assembly.

10. The vibratory screening machine according to claim 1 , wherein the undersize material chute is located between the first oversized material chute and the second oversized material chute.

11. A method of screening a material, the method comprising:

feeding the material into a vibratory screening machine, the vibratory screening machine comprising:

an outer frame;

an inner frame connected to the outer frame;

a vibratory motor assembly attached to the inner frame such that the vibratory motor assembly vibrates the inner frame; and

a plurality of screen deck assemblies, each screen deck assembly comprising a screening deck, wherein each screen deck assembly is secured within the vibratory screening machine in a stacked position within a stacked configuration of the plurality of screen deck assemblies and wherein each screen deck is configured to receive a screen assembly,

an undersized material discharge assembly configured to receive materials that pass through at least one of the screen assemblies; and

an oversized material discharge assembly configured to receive materials that pass over a top surface of the at least one of the screen assemblies,

wherein the undersized material discharge assembly includes an undersized material chute in communication with each of the plurality of screen deck assemblies,

wherein the oversized material discharge assembly includes a first oversized material chute assembly in communication with each of the plurality of screen deck assemblies and a second oversized material chute assembly in communication with each of the plurality of screen deck assemblies; and

screening the material such that an undersized material passes through the at least one of the screen assemblies and an oversized material passes over the top surface of the at least one of the screen assemblies.

12. The method of claim 11 , wherein each of the plurality screen deck assemblies includes a bifurcated trough that is configured to receive materials that pass over the respective top surfaces of the screen assemblies and are conveyed over a discharge end of each of the plurality of screen assemblies, a first section of the bifurcated trough feeding the first oversized material chute assembly and a second section of the bifurcated trough feeding the second oversized material chute assembly.

13. The method of claim 12 , wherein:

each of the plurality of screen deck assemblies includes a pan configured to receive the materials that pass through the screen assembly of that screen deck assembly; and

the undersized material discharge assembly includes a duct corresponding to each pan, wherein each duct is configured to receive the materials that pass through the screen assembly from the corresponding pan and wherein each duct is in communication with the undersized material chute.

14. The method of claim 13 , wherein each duct is further configured to provide a clearance to an outlet of the corresponding pan such that a vibration of the pan is not directly conducted to the corresponding duct.

15. The method of claim 11 , wherein at least one of the plurality of the screen deck assemblies is replaceably attached to the inner frame.

16. The method of claim 11 , wherein each of the plurality of screen deck assemblies includes:

a first trough configured to receive a first portion of materials that pass over the top surface of the screen assembly of that screen deck assembly and are conveyed over a discharge end of the screen assembly of that screen deck assembly, the first trough configured to feed the first portion of the materials into the first oversized material chute assembly; and

a second trough configured to receive a second portion of the materials that pass over the respective top surfaces of the screen deck assembly and are conveyed over the discharge end of the screen deck assembly, the second trough configured to feed the second portion of the materials into the second oversized material chute assembly.

17. The method of claim 16 , wherein:

each of the plurality of screen deck assemblies includes a pan configured to receive the materials that pass through the screen assembly of that screen deck assembly; and

the undersized material discharge assembly includes a duct corresponding to each pan, wherein each duct is configured to receive the materials that pass through the screen assembly from the corresponding pan and wherein each duct is in communication with the undersized material chute.

18. The method of claim 17 , wherein each duct is further configured to provide a clearance to an outlet of the corresponding pan such that a vibration of the pan is not directly conducted to the corresponding duct.

19. The method of claim 11 , wherein:

the undersized material chute, the first oversized material chute assembly, and the second oversized material chute assembly are located beneath the plurality of screen deck assemblies, and

the undersized material chute is located between the first oversized material chute assembly and the second oversized material chute assembly.

20. The method of claim 15 , wherein the undersized material discharge assembly and the oversized material discharge assembly are at least one of removable attached to the at least one of the screen deck assemblies and not attached to the at least one of the screen deck assemblies.

21. The method of claim 11 , wherein the undersize material chute is located between the first oversized material chute and the second oversized material chute.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2021
From: COLGROVE, JAMES R.; PERESAN, MICHAEL L.
To: DERRICK CORPORATION
Reel/Frame 057008/0956 →
Continuity (6)
Continuation 17002219 · Aug 25, 2020
Continuation 16513963 · Jul 17, 2019
Division 15785141 · Oct 16, 2017
Provisional Application 62488293 · Apr 21, 2017
Provisional Application 62408514 · Oct 14, 2016
Related Publication 20210354171A1 · Nov 18, 2021