IP Library Granted Patent US 12,644,659
Granted Patent B2
US 12,644,659 · App. 18/782,230 · Granted Jun 2, 2026

Heat exchanger inlet and outlet pipe connection structure

Inventors: Ling Bai (Northville, MI); Guglielmo Abate (Canton, MI); James L. Smitterberg (Grass Lake, MI); Davon James Laird (Commerce Township, MI)
Assignee: HANON SYSTEMS
F28F9/0256F16L41/08F28F2230/00
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Quick Facts
Patent No.
US 12,644,659
App. No.
18/782,230
Granted
Jun 2, 2026
Kind
B2
Abstract

A heat exchanger includes a pipe connection structure including a first coupling element and a second coupling element. The first coupling element includes a through-hole formed therethrough and the second coupling element includes a blind hole formed therein. A manifold tank includes a first tank compartment in alignment with the through-hole of the first coupling element and a second tank compartment in alignment with the blind hole of the second coupling element. The through-hole provides fluid communication between an interior of the pipe connection structure and the first tank compartment while the second coupling element forms a fluid barrier wall at an end of the blind hole thereof that prevents fluid communication between the interior of the pipe connection structure and the second tank compartment by way of the second coupling element.

Claims (30)

1 . A heat exchanger, comprising:

a first pipe connection structure including a first outer wall defining at least a portion of an interior of the first pipe connection structure, the interior of the first pipe connection structure receiving a first fluid therein;

a first coupling element received in a first opening formed through the first outer wall of the first pipe connection structure, the first coupling element including a first through-hole formed therethrough;

a second coupling element received in a second opening formed through the first outer wall of the first pipe connection structure; and

a first manifold tank coupled to each of the first coupling element and the second coupling element, the first manifold tank including a first tank compartment extending longitudinally from the first coupling element and a second tank compartment extending longitudinally from the second coupling element, the first through-hole of the first coupling element providing fluid communication of the first fluid between the interior of the first pipe connection structure and the first tank compartment and the second coupling element forming a first fluid barrier wall for preventing fluid communication of the first fluid between the interior of the first pipe connection structure and the second tank compartment by way of the second coupling element.

2 . The heat exchanger of claim 1 , wherein the second coupling element includes at least one blind hole formed therein.

3 . The heat exchanger of claim 2 , wherein the at least one blind hole is cylindrical in shape.

4 . The heat exchanger of claim 2 , wherein the at least one blind hole is formed in one or both of a first axial end of the second coupling element facing towards the interior of the first pipe connection structure and/or a second axial end of the second coupling element facing away from the interior of the first pipe connection structure.

5 . The heat exchanger of claim 2 , wherein the at least one blind hole includes a first blind hole formed in a first axial end of the second coupling element and a second blind hole formed in a second axial end of the second coupling element.

6 . The heat exchanger of claim 5 , wherein the first blind hole is formed directly opposite the second blind hole with the first blind hole axially aligned with the second blind hole.

7 . The heat exchanger of claim 5 , wherein the first fluid barrier wall is formed by a portion of the second coupling element disposed directly between the first blind hole and the second blind hole.

8 . The heat exchanger of claim 2 , wherein the first fluid barrier wall is disposed at an inner axial end of the at least one blind hole.

9 . The heat exchanger of claim 8 , wherein the first fluid barrier wall includes a concave surface formed therein at the inner axial end of the at least one blind hole.

10 . The heat exchanger of claim 1 , wherein the first through-hole extends through an entirety of the first coupling element with respect to an axial direction thereof.

11 . The heat exchanger of claim 10 , wherein the axial direction of the first coupling element is parallel to a longitudinal direction of the first tank compartment.

12 . The heat exchanger of claim 10 , wherein a first axial end of the first through-hole is disposed within the interior of the first pipe connection structure and a second axial end of the first through-hole is disposed within the first tank compartment.

13 . The heat exchanger of claim 1 , wherein the first manifold tank includes a central wall laterally dividing the first manifold tank into the first tank compartment and the second tank compartment, and wherein the central wall includes at least one fluid communication opening formed therethrough for providing fluid communication of the first fluid between the first tank compartment and the second tank compartment.

14 . The heat exchanger of claim 1 , wherein the first manifold tank includes a first baffle plate disposed around the first coupling element and a second baffle plate disposed around the second coupling element.

15 . The heat exchanger of claim 14 , wherein the first baffle plate forms an axial end surface of the first tank compartment surrounding the first coupling element for delimiting flow of the first fluid in an axial direction of the first tank compartment towards the interior of the first pipe connection structure and wherein the second baffle plate forms an axial end surface of the second tank compartment surrounding the second coupling element for delimiting flow of the first fluid in an axial direction of the second tank compartment towards the interior of the first pipe connection structure.

16 . The heat exchanger of claim 14 , wherein the first baffle plate includes a first coupling tab projecting outwardly therefrom and the second baffle plate includes a second coupling tab projecting outwardly therefrom, wherein the first coupling tab is received within a first opening formed through a first wall of the first manifold tank partially defining the first tank compartment and wherein the second coupling tab is received within a second opening formed through a second wall of the first manifold tank partially defining the second tank compartment.

17 . The heat exchanger of claim 1 , further comprising:

a second manifold tank spaced apart from the first manifold tank and including a third tank compartment and a fourth tank compartment formed therein; and

a plurality of heat exchanger tubes extending between the first manifold tank and the second manifold tank, the plurality of heat exchanger tubes including a first set of heat exchanger tubes providing fluid communication of the first fluid between the first tank compartment of the first manifold tank and the third tank compartment of the second manifold tank and a second set of heat exchanger tubes providing fluid communication of the first fluid between the second tank compartment of the first manifold tank and the fourth tank compartment of the second manifold tank.

18 . The heat exchanger of claim 17 , wherein the first tank compartment is in fluid communication with the second tank compartment by way of the first fluid flowing through the first set of the heat exchanger tubes, the third tank compartment, the fourth tank compartment, and the second set of the heat exchanger tubes.

19 . The heat exchanger of claim 17 , further comprising:

a second pipe connection structure including a second outer wall defining at least a portion of an interior of the second pipe connection structure, the interior of the second pipe connection structure receiving the first fluid therein;

a third coupling element received in a third opening formed through the second outer wall of the second pipe connection structure; and

a fourth coupling element received in a fourth opening formed through the second outer wall of the second pipe connection structure, the fourth coupling element including a second through-hole formed therethrough;

wherein the second manifold tank is coupled to each of the third coupling element and the fourth coupling element, wherein the third tank compartment extends longitudinally from the third coupling element and the fourth tank compartment extends longitudinally from the fourth coupling element, wherein the second through-hole of the fourth coupling element provides fluid communication of the first fluid between the interior of the second pipe connection structure and the fourth tank compartment, and wherein the third coupling element forms a second fluid barrier wall for preventing fluid communication of the first fluid between the interior of the second pipe connection structure and the third tank compartment by way of the third coupling element.

20 . The heat exchanger of claim 19 , wherein the second pipe connection structure is structurally identical to the first pipe connection structure with an orientation of the second pipe connection structure rotated 180 degrees relative to the first pipe connection structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2024
From: BAI, LING; ABATE, GUGLIELMO; SMITTERBERG, JAMES L.; LAIRD, DAVON JAMES
To: HANON SYSTEMS
Reel/Frame 068066/0827 →
Continuity (2)
Provisional Application 63578291 · Aug 23, 2023
Related Publication 20250067527A1 · Feb 27, 2025
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