IP Library Granted Patent US 10,828,806
Granted Patent B2
US 10,828,806 · App. 16/002,508 · Granted Nov 10, 2020

Method and apparatus for rotary molding

Inventors: Scott A. Lindee (Mokena, IL); David Hansen (Orland Park, IL); Salvatore Lamartino (Orland Park, IL); Bruce Bauer (Mokena, IL); Thomas C. Wolcott (Mokena, IL); Steve Ill (Mokena, IL); E. William Wight (Roscoe, IL)
Assignee: PROVISUR TECHNOLOGIES, INC.
B29C37/0003A22C7/0038A22C7/0069A22C7/0084A22C7/0092B30B11/12B29C45/2725B29C45/4005
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Quick Facts
Patent No.
US 10,828,806
App. No.
16/002,508
Granted
Nov 10, 2020
Kind
B2
Abstract

A rotary molding system for molding food products, mold cavities formed when a mold shell rotates mold shapes disposed along the mold shell into a fill position between a fill plate and a wear plate. Molded food products are removed from mold cavities using knock-out cups, the use of air pressure, or the use of a vacuum source disposed below the mold cavity, without the need to slow the rotation of the mold shell. Knock-out cups may be used with a heating system to reduce accumulation of unwanted materials on the knock-out cups. The rotary molding system can also be used to form products with contoured surfaces. A smart tagging system can be used to ensure that compatible sets of mold shells and knock out cups are being used. A vacuum region may be disposed upstream of the fill position to remove air within the mold cavity prior to filling.

Claims (20)

1. A mold system for molding three dimensional food products from a food mass comprising:

a fill plate having an outer surface in contact with a feed source, and an inner surface, said fill plate having a feed inlet through which food mass passes;

a wear plate having an outer surface facing the inner surface of the fill plate;

a cylindrical mold shell with mold shapes, the mold shell having an inner and outer surface, said mold shell rotating between the fill plate and the wear plate, the fill plate in contact with the outer surface of the mold shell, the wear plate in contact with the inner surface of the mold shell;

mold cavities formed when mold shapes are between the fill plate and the wear plate, said mold cavities having a depth corresponding to a thickness of the mold shell, said mold cavities having a bottom surface formed by the outer surface of the wear plate; and

a hinge connected to a support frame for supporting the cylindrical mold shell, the cylindrical mold shell pivotable about the hinge.

2. The molding system of claim 1 wherein the cylindrical mold shell is pivotable between a working position and a service position.

3. The molding system of claim 2 wherein the working position is a position wherein the cylindrical mold shell is in contact with the fill plate.

4. The molding system of claim 2 wherein the service position is a position wherein the cylindrical mold shell is in not in contact with the fill plate.

5. The molding system of claim 2 wherein the cylindrical mold shell pivots about the hinge in a horizontal plane.

6. A mold system for molding three dimensional food products from a food mass comprising:

a fill plate having an outer surface in contact with a feed source, and an inner surface, said fill plate having a feed inlet through which food mass passes;

a wear plate having an outer surface facing the inner surface of the fill plate;

a cylindrical mold shell with mold shapes, the mold shell having an inner and outer surface, said mold shell rotating between the fill plate and the wear plate, the fill plate in contact with the outer surface of the mold shell, the wear plate in contact with the inner surface of the mold shell;

mold cavities formed when mold shapes are between the fill plate and the wear plate, said mold cavities having a depth corresponding to a thickness of the mold shell, said mold cavities having a bottom surface formed by the outer surface of the wear plate; and

a shaft disposed within the cylindrical mold shell for rotating the mold shell, said shaft operated by a motor disposed within a motor housing, said motor housing connected to the cylindrical mold shell; and a hinge connected to the motor housing such that both the motor housing and mold shell are pivotable about the hinge.

7. The molding system of claim 6 wherein the cylindrical mold shell is pivotable between a working position and a service position.

8. The molding system of claim 7 wherein the working position is a position wherein the cylindrical mold shell is in contact with the fill plate.

9. The molding system of claim 7 wherein the service position is a position wherein the cylindrical mold shell is in not in contact with the fill plate.

10. The molding system of claim 6 wherein the cylindrical mold shell and motor housing pivots about the hinge in a horizontal plane.

Assignments (4)
SECURITY INTEREST Recorded Dec 17, 2025
From: PROVISUR TECHNOLOGIES, LLC
To: UBS AG, STAMFORD BRANCH
Reel/Frame 073860/0252 →
ENTITY CONVERSION Recorded Dec 3, 2025
From: PROVISUR TECHNOLOGIES, INC.
To: PROVISUR TECHNOLOGIES, LLC
Reel/Frame 073831/0973 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2019
From: FORMAX, INC.
To: PROVISUR TECHNOLOGIES, INC.
Reel/Frame 049128/0700 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2018
From: LINDEE, SCOTT A.; HANSEN, DAVID; LAMARTINO, SALVATORE; BAUER, BRUCE; WOLCOTT, THOMAS C.; ILL, STEVE; WIGHT, E. WILLIAM
To: FORMAX, INC.
Reel/Frame 046585/0878 →