IP Library Granted Patent US 10,228,192
Granted Patent B2
US 10,228,192 · App. 15/341,473 · Granted Mar 12, 2019

Heat exchanger

Inventors: Masahiro Ariyama (Yokohama, JP); Kenji Wada (Kawagoe, JP); Shozo Wakamatsu (Fujimino, JP); Tadashi Nishikoba (Fujimino, JP); Kakuei Kunii (Iruma, JP)
Assignee: MAHLE FILTER SYSTEMS JAPAN CORPORATION
F28D9/005F28D9/0056F28F3/044F28F9/0075F28D2021/0089F28F2210/08
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Quick Facts
Patent No.
US 10,228,192
App. No.
15/341,473
Granted
Mar 12, 2019
Kind
B2
Abstract

What is disclosed is a heat exchanger including: a core including a plurality of core plates, first and second passages, and a vertical passage; a base plate including a passage port; and a distance plate; wherein the first vertical passage and the passage port are arranged apart from each other in a direction orthogonal to a stacking direction of the core plates, and wherein the distance plate includes a bottom wall part and a swelling part, the bottom wall part being a thin plate-shaped and being joined to an upper surface of the base plate, the swelling part swelling up in the stacking direction from the bottom wall part so as to surround a circumference of a communication passage which communicates the first vertical passage with the passage port and being joined to a lowermost surface of the core in a flange part of a tip of the swelling part.

Claims (38)

1. A heat exchanger comprising:

a core including:

a plurality of core plates which are stacked;

first passages in which a first medium flows;

second passages in which a second medium flows, the first passages and the second passages being alternately formed between adjacent core plates in a stacking direction; and

a first vertical passage in which the first medium or the second medium flows, the first vertical passage being formed along the stacking direction, wherein the first vertical passage is located at one of a central part or a corner part of the core plates;

a base plate including a passage port formed therethrough, wherein the passage port is located at another one of the central part or the corner part of the core plates; and

a distance plate interposed between the base plate and the core;

wherein

the first vertical passage and the passage port are arranged apart from each other in a direction orthogonal to the stacking direction and communicated with each other by a communication passage;

the distance plate includes a bottom wall part and a swelling part, the bottom wall part being joined to an upper surface of the base plate, the swelling part swelling up in the stacking direction from the bottom wall part so as to surround a circumference of the communication passage which communicates the first vertical passage with the passage port and being joined to a lowermost surface of the core in a flange part of a tip of the swelling part;

the distance plate is rectangular and shallow, and corresponds in shape to the core plates;

an auxiliary passage in which the first medium or the second medium flows is formed between an upper surface of the bottom wall part of the distance plate and a lowermost surface of a core plate of the plurality of core plates;

the auxiliary passage and the communication passage are partitioned by the swelling part;

the distance plate includes a plurality of dimples on the upper surface of the bottom wall part of the distance plate; and

tips of the dimples touch the lowermost surface of the core plate of the plurality of core plates.

2. The heat exchanger as claimed in claim 1 , wherein:

the core includes a second vertical passage communicating either the first passages or the second passages in addition to the first vertical passage communicated with the passage port through the communication passage;

the second vertical passage is formed along the stacking direction;

the second vertical passage and the passage port partially overlap each other in the stacking direction;

the swelling part stands up from the bottom wall part of the distance plate near the passage port; and

the flange part of the tip of the swelling part is joined to the lowermost surface of the core plate of the plurality of core plates in a circumference of the second vertical passage.

3. A heat exchanger comprising:

a core including:

a plurality of core plates which are stacked;

first passages in which a first medium flows;

second passages in which a second medium flows, the first passages and the second passages being alternately formed between adjacent core plates in a stacking direction; and

a first vertical passage in which the first medium or the second medium flows, the first vertical passage being formed along the stacking direction, wherein the first vertical passage is located at one of a central part or a corner part of the core plates;

a base plate including a passage port formed therethrough, wherein the passage port is located at another one of the central part or the corner part of the core plates; and

a distance plate interposed between the base plate and the core;

wherein

the first vertical passage and the passage port are arranged apart from each other in a direction orthogonal to the stacking direction and communicated with each other by a communication passage;

the distance plate includes a bottom wall part and a swelling part, the bottom wall part being joined to an upper surface of the base plate, the swelling part swelling up in the stacking direction from the bottom wall part so as to surround a circumference of the communication passage which communicates the first vertical passage with the passage port and being joined to a lowermost surface of the core in a flange part of a tip of the swelling part;

the distance plate corresponds in shape to the core plates;

an auxiliary passage in which the first medium or the second medium flows is formed between an upper surface of the bottom wall part of the distance plate and a lowermost surface of a core plate of the plurality of core plates;

the auxiliary passage and the communication passage are partitioned by the swelling part;

the distance plate includes at least one dimple on the upper surface of the bottom wall part of the distance plate; and

a tip of at least one dimple touches the lowermost surface of the core plate of the plurality of core plates.

Assignments (2)
CHANGE OF NAME Recorded Feb 1, 2023
From: MAHLE FILTER SYSTEMS JAPAN CORPORATION
To: MAHLE JAPAN LTD
Reel/Frame 062609/0769 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2016
From: ARIYAMA, MASAHIRO; WADA, KENJI; WAKAMATSU, SHOZO; NISHIKOBA, TADASHI; KUNII, KAKUEI
To: MAHLE FILTER SYSTEMS JAPAN CORPORATION
Reel/Frame 040208/0812 →
Priority Claims (1)
JP 2015-255636 · Dec 28, 2015 · national
Continuity (1)
Related Publication 20170184347A1 · Jun 29, 2017
Cited By (1)
US 12,247,795