IP Library Granted Patent US 12,137,711
Granted Patent B2
US 12,137,711 · App. 18/136,609 · Granted Nov 12, 2024

Methods and devices for heating or cooling viscous materials

Inventors: Kevin J Cully (Chesterfield, MO); Andrew Joseph Brinkmann (Manchester, MO); Ronald Lee Nash (Florissant, MO); William D Short (Litchfield, IL); Trent C Lorraine (Amazonia, MO); Jerry J Hankins (St. Joseph, MO)
Assignee: SOCIÉTÉ DES PRODUITS NESTLÉ S.A.
A23L13/67A22C7/00A22C11/00A23B4/005A23B4/06A23K50/40A23L13/52A23L13/60A23L17/70F28D9/0031F28D9/0062F28D9/0081F28D9/0093F28F9/026F28D2021/0042F28D2021/0098F28F3/083F28F2240/00F28F2275/205
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Quick Facts
Patent No.
US 12,137,711
App. No.
18/136,609
Granted
Nov 12, 2024
Kind
B2
Abstract

Methods and devices heat or cool viscous materials, such as meat emulsions useful for producing food and other products. The devices have a heat exchanger including a first plate, a second plate attached to the first plate, and a first spacer and a second spacer arranged between the first plate and the second plate. The first plate, the second plate, the first spacer, and the second spacer define at least one temperature controlled passage for a product to pass through the heat exchanger.

Claims (50)

1. A device comprising:

a first pressure plate;

a first energy exchanging plate attached to the first pressure plate;

a second pressure plate;

a second energy exchanging plate attached to the second pressure plate;

a first spacer and a second spacer arranged between the first energy exchanging plate and the second energy exchanging plate, wherein the first energy exchanging plate, the second energy exchanging plate, the first spacer and the second spacer define a first temperature controlled passage for a first product to pass through the device;

a third energy exchanging plate attached to the second pressure plate on an opposing side of the second pressure plate from the second energy exchanging plate;

a fourth energy exchanging plate;

a third spacer and a fourth spacer arranged between the third energy exchanging plate and the fourth energy exchanging plate, wherein the third energy exchanging plate, the fourth energy exchanging plate plate, the third spacer and the fourth spacer define a second temperature controlled passage for a second product to pass through the device;

a first bracket comprising a first leg, a second leg, and a bridging portion extending from the first leg of the first bracket to the second leg of the first bracket;

a second bracket comprising a first leg, a second leg, and a bridging portion extending from the first leg of the second bracket to the second leg of the second bracket, wherein the first leg of the first bracket is connected to the first leg of the second bracket, and the second leg of the first bracket is connected to the second leg of the second bracket;

an end plate comprising first and second product inlets and connected to the bridging portion of the first bracket and the bridging portion of the second bracket;

a first temperature controlling passage in a first portion of at least one of the first energy exchanging plate, the second energy exchanging plate, the third energy exchanging plate, or the fourth energy exchanging plate; and

a second temperature controlling passage that is separate from the first temperature controlling passage, the second temperature controlling passage is positioned in a second portion of the at least one of the first energy exchanging plate, the second energy exchanging plate, the third energy exchanging plate, or the fourth energy exchanging plate, and the second portion is downstream from the first portion, and

the second temperature controlling passage is downstream from the first temperature controlling passage such that a distance from the end plate to the first temperature controlling passage along the first temperature controlled passage is less than a distance from the end plate to the second temperature controlling passage along the first temperature controlled passage.

2. The device of claim 1 wherein the first temperature controlling passage comprises a first fluid that cools or heats a first temperature controlled zone of the device.

3. The device of claim 2 wherein the second temperature controlling passage comprises a second fluid that cools or heats a second temperature controlled zone of the device.

4. The device of claim 3 , wherein the device is configured for control of at least one of a temperature or a flowrate of the first fluid separately from control of at least one of a temperature or a flowrate of the second fluid.

5. The device of claim 1 further comprising a third pressure plate attached to the fourth energy exchanging plate on an opposing side of the fourth energy exchanging plate from the second temperature controlled passage.

6. The device of claim 1 further comprising a third temperature controlling passage separate from the first and second temperature controlling passages.

7. The device of claim 6 further comprising a fourth temperature controlling passage separate from the first, second and third temperature controlling passages.

8. The device of claim 7 wherein:

the first and second temperature controlling passages are positioned in the same one of the first energy exchanging plate or the second energy exchanging plate, and

the third and fourth temperature controlling passages are positioned in the same one of the third energy exchanging plate or the fourth energy exchanging plate.

9. The device of claim 8 wherein the fourth temperature controlling passage is downstream from the third temperature controlling passage such that a distance from the end plate to the third temperature controlling passage along the first temperature controlled passage is less than a distance from the end plate to the fourth temperature controlling passage along the first temperature controlled passage.

10. The device of claim 1 wherein the first energy exchanging plate and the second energy exchanging plate are sealed along the first spacer and the second spacer to withstand internal pressures in the passage from 50 to 1500 psi.

11. The device of claim 1 wherein the second energy exchanging plate and the third energy exchanging plate are sealed along the third spacer and the fourth spacer to withstand internal pressures in the passage from 50 to 1500 psi.

12. The device of claim 1 wherein the first pressure plate, the second pressure plate and the third pressure plate are attached together by at least one of a bolt, a screw or a clamp.

13. The device of claim 1 comprising an inlet manifold attached to an end of the device, the inlet manifold defining an inlet passage that divides into a first outlet passage and a second outlet passage, the first outlet passage leading into the first temperature controlled passage of the device and the second outlet passage leading into the second temperature controlled passage of the device.

14. A heat exchanger comprising:

a first pressure plate;

a first energy exchanging plate attached to the first pressure plate;

a second pressure plate;

a second energy exchanging plate attached to the second pressure plate;

a first spacer and a second spacer arranged between the first energy exchanging plate and the second energy exchanging plate, wherein the first energy exchanging plate, the second energy exchanging plate, the first spacer and the second spacer define a first temperature controlled passage for a first product to pass through the device;

a third energy exchanging plate attached to the second pressure plate on an opposing side of the second pressure plate from the second energy exchanging plate;

a fourth energy exchanging plate;

a third spacer and a fourth spacer arranged between the third energy exchanging plate and the fourth energy exchanging plate, wherein the third energy exchanging plate, the fourth energy exchanging plate plate, the third spacer and the fourth spacer define a second temperature controlled passage for a second product to pass through the device;

a first bracket comprising a first leg, a second leg, and a bridging portion extending from the first leg of the first bracket to the second leg of the first bracket;

a second bracket comprising a first leg, a second leg, and a bridging portion extending from the first leg of the second bracket to the second leg of the second bracket, wherein the first leg of the first bracket is connected to the first leg of the second bracket, and the second leg of the first bracket is connected to the second leg of the second bracket;

an end plate comprising first and second product inlets and connected to the bridging portion of the first bracket and the bridging portion of the second bracket;

a first temperature controlling passage in a first portion of at least one of the first energy exchanging plate, the second energy exchanging plate, the third energy exchanging plate, or the fourth energy exchanging plate;

a second temperature controlling passage that is separate from the first temperature controlling passage, the second temperature controlling passage is positioned in a second portion of the at least one of the first energy exchanging plate, the second energy exchanging plate, the third energy exchanging plate, or the fourth energy exchanging plate, and the second portion is downstream from the first portion, and

the second temperature controlling passage is downstream from the first temperature controlling passage such that a distance from the end plate to the first temperature controlling passage along the first temperature controlled passage is less than a distance from the end plate to the second temperature controlling passage along the first temperature controlled passage.

15. A method for making a food product, the method comprising:

introducing a meat emulsion into the heat exchanger of claim 14 ; and

subjecting the meat emulsion to a pressure of 100 psi to 500 psi in the heat exchanger.

16. A method for making a food product, the method comprising:

introducing a meat emulsion into the device of claim 1 ; and

subjecting the meat emulsion to a pressure of 100 psi to 500 psi in the device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2024
From: CULLY, KEVIN J.; BRINKMANN, ANDREW JOSEPH; NASH, RONALD LEE; SHORT, WILLIAM D.; LORRAINE, TRENT C.; HANKINS, JERRY J.
To: NESTEC SA
Reel/Frame 067823/0714 →
MERGER Recorded Jun 25, 2024
From: NESTEC S.A.
To: SOCIETE DES PRODUITS NESTLE S.A.
Reel/Frame 067824/0454 →
Continuity (5)
Continuation 17330564 · May 26, 2021
Continuation 15710075 · Sep 20, 2017
Division 14234891
Provisional Application 61574152 · Jul 28, 2011
Related Publication 20230371562A1 · Nov 23, 2023