IP Library Granted Patent US 11,254,041
Granted Patent B2
US 11,254,041 · App. 16/710,379 · Granted Feb 22, 2022

High specific mechanical energy extrusion screw assembly

Inventors: Marc L. Wenger (Sabetha, KS); Philip B. Wiltz (Sabetha, KS)
Assignee: Wenger Manufacturing Inc.
B29C48/535A23K40/25A23N17/005A23P30/20B01F7/00416B29C48/2561B29C48/2564B29C48/25682B29C48/507B29C48/615B01F2215/0013B01F2215/0014B01F2215/0024B29C48/57B29C48/60
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Quick Facts
Patent No.
US 11,254,041
App. No.
16/710,379
Granted
Feb 22, 2022
Kind
B2
Abstract

High Specific Mechanical Energy extruder screw assemblies ( 14, 88, 98 ) and complete extruders ( 10, 86, 96 ) are provided, which include wide-flight intermediate screw sections ( 104 ) having axial flight widths greater than the flight widths of the inlet and outlet screw sections ( 102, 106 ) on opposite sides of the intermediate sections ( 104 ). The intermediate sections ( 104 ) provide increased friction and shear serving to enhance the SMEs imparted to comestible food materials during processing thereof.

Claims (24)

1. A method of producing a comestible food product, comprising the steps of:

passing a comestible mixture into and through an extruder having an elongated barrel comprising an inlet and an outlet, and an elongated, axially rotatable, helically flighted screw assembly within the barrel to produce said food product,

said screw assembly including an inlet section, an intermediate section, and an outlet section, each of said inlet, intermediate, and outlet sections having an axial length, a flight width, a pitch length, a screw diameter, and a flight depth, the flight width of said intermediate section being greater than the flight widths of said inlet and outlet sections, respectively;

rotating said screw assembly in order to move said mixture from said inlet, along the length of said barrel, and out through said outlet; and

during said movement of said mixture, subjecting the mixture to increasing levels of temperature, pressure, and shear within said barrel, comprising the steps of subjecting said material to greater levels of friction and heat generation in said intermediate section than in said inlet and outlet sections, so that increased levels of specific mechanical energy (SME) are imparted to the material in the intermediate section, as compared with the SME imparted in said inlet and outlet sections.

2. The method of claim 1 , the flight width of said intermediate section being at least about 250% greater than the flight widths of said inlet and outlet sections, respectively.

3. The method of claim 2 , the flight width of said intermediate section being from about 300-600% greater than the flight widths of said inlet and outlet sections, respectively.

4. The method of claim 1 , the flight width of said intermediate section being from about 20-80% of the pitch length of the intermediate section.

5. The method of claim 1 , the flight width of said intermediate section being from about 15-50% of the screw diameter of the intermediate section.

6. The method of claim 1 , the axial length of said intermediate section being from about 10-40% of the full length of said screw assembly.

7. The method of claim 1 , the axial length of said intermediate section being from about 15-80% of the axial length of said inlet section.

8. The method of claim 1 , the pitch length of said intermediate section being from about 30-70% of the screw diameter of the intermediate section.

9. The method of claim 1 , the pitch length of said intermediate section being less than the pitch length of said inlet section.

10. The method of claim 1 , the flight depth of said intermediate section being less than the flight depth of said inlet section.

11. The method of claim 1 , said intermediate section having a substantially constant pitch length.

12. The method of claim 1 , said intermediate section having a single flight.

13. The method of claim 1 , the screw diameter of said inlet section and said intermediate section being substantially the same.

14. The method of claim 1 , said comestible material comprising quantities of grain, protein, and fat.

15. The method of claim 1 , including the step of preconditioning said mixture in order to moisturize and pre-cook the mixture, prior to passage thereof through said extruder.

16. A method of producing a comestible food product, comprising the steps of:

passing a comestible mixture into and through an extruder having an elongated barrel comprising an inlet and an outlet, and an elongated, axially rotatable, helically flighted screw assembly within the barrel to produce said food product,

said screw assembly including an inlet section, an intermediate section, and an outlet section, each of said inlet, intermediate, and outlet sections having an axial length, a flight width, a pitch length, a screw diameter, and a flight depth, at least a portion of the inlet section and at least a portion of the outlet section being tapered along the length thereof, the screw diameter of said intermediate section being substantially constant;

rotating said screw assembly in order to move said mixture from said inlet, along the length of said barrel, and out through said outlet; and

during said movement of said mixture, subjecting the mixture to increasing levels of temperature, pressure, and shear within said barrel, comprising the steps of subjecting said material to greater levels of friction and heat generation in said intermediate section than in said inlet and outlet sections, so that increased levels of specific mechanical energy (SME) are imparted to the material in the intermediate section, as compared with the SME imparted in said inlet and outlet sections.

Assignments (2)
CHANGE OF NAME Recorded Jun 9, 2022
From: WENGER MANUFACTURING INC.
To: WENGER MANUFACTURING, LLC
Reel/Frame 060329/0188 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2019
From: WENGER, MARC L.; WILTZ, PHILIP B.
To: WENGER MANUFACTURING INC.
Reel/Frame 051248/0555 →
Continuity (3)
Division 15981557 · May 16, 2018
Provisional Application 62513899 · Jun 1, 2017
Related Publication 20200113222A1 · Apr 16, 2020