IP Library › Granted Patent US 10,024,604
Granted Patent B2
US 10,024,604 · App. 14/509,127 · Granted Jul 17, 2018

Stacked plate heat exchanger

Inventors: Andreas Dränkow (Heimsheim, DE); Jens Richter (Groβbottwar, DE); Herbert Hofmann (Stuttgart, DE)
Assignee: MAHLE INTERNATIONAL GMBH
F28D9/0062F28D9/005F28F3/025F28F3/046
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Quick Facts
Patent No.
US 10,024,604
App. No.
14/509,127
Granted
Jul 17, 2018
Kind
B2
Abstract

The invention relates to a stacked plate heat exchanger, comprising a plurality of elongate plates which are stacked on one another and connected to one another and which have a corrugated profile, which plates have a cavity for leading through a medium to be cooled in the longitudinal direction of the plates and define a further cavity for leading through a coolant, wherein leadthrough openings for supplying or discharging the medium to be cooled or the coolant are formed approximately in the end regions of each elongate plate and each elongate plate is surrounded by a bent-off edge, wherein an nth corrugation of the corrugated profile of each plate is drawn close to the edge, preferably into the edge, whereas the other corrugations of the corrugated profile of the plate terminate before the edge, where n=2, 3, 4 etc.

Claims (16)

1. A stacked plate heat exchanger comprising:

a plurality of elongate plates stacked on top of each other and connected to one another, wherein each plate of the plurality of elongate plates has a corrugated profile, wherein adjacent plates of the plurality of elongate plates form a first cavity for leading through a cooling medium and a second cavity for leading through a coolant, wherein each plate of the plurality of elongate plates comprises lead through openings connected to the first cavity or the second cavity, wherein the lead through openings are formed approximately in the end regions of each plate of the plurality of elongate plates and each elongate plate is surrounded by a bent-off edge, wherein the first cavity is arranged in a longitudinal direction extending between lead through openings on opposite end regions of the plurality of elongate plates, wherein each plate of the plurality of elongate plates comprises a corrugated profile having a plurality of corrugations,

wherein an xth plate of the plurality of elongate plates has at least one corrugation drawn into its bent-off edge, wherein said xth plate is bounded on a top side and a bottom side by two plates of the plurality of elongate plates which have a corrugated profile having corrugations that all terminate before the bent-off edges of the two plates, wherein the x in xth is an integer such that the plurality of elongate plates has a repeating pattern of plates having at least one corrugation drawn into their bent-off edges and plates having a corrugated profile having corrugations that all terminate before their bent-off edges,

wherein an nth corrugation of the corrugated profile of the xth plate is drawn into the bent-off edge, whereas corrugations other than the nth corrugation of the corrugated profile of the plate terminate before the bent-off edge, wherein the n in nth is an integer such that the corrugated profile has a repeating pattern of corrugations drawn into the edge and corrugations terminating before the edge.

2. The stacked plate heat exchanger according to claim 1 , wherein x is 2 such that every second plate has corrugations of the corrugated profile which are drawn into the edge.

3. The stacked plate heat exchanger according to claim 1 , wherein the corrugations of each plate of the plurality of elongate extend from a first lateral bent-off edge to a second lateral bent-off edge transversely with respect to a main through flow direction of the coolant or the cooling medium.

4. The stacked plate heat exchanger according to claim 3 , wherein the corrugations comprise a zig-zag shape about the direction of longitudinal extent of the plates.

5. The stacked plate heat exchanger according to claim 1 , wherein the corrugated profile is formed as a stamping in the plates which consist of a heat-conducting material.

6. The stacked plate heat exchanger according to claim 1 , wherein the bent-off edges, which lie on top of one another, of the plates are brazed to one another.

7. The stacked heat exchanger according to claim 1 , wherein the lead through openings for supplying and for discharging the medium to be cooled or the coolant of each plate are situated diagonally opposite one another.

8. A stacked plate heat exchanger comprising:

a plurality of elongate plates stacked on top of each other and connected to one another, wherein each plate of the plurality of elongate plates has a corrugated profile, wherein adjacent plates of the plurality of elongate plates form a first cavity for leading through a cooling medium and a second cavity for leading through a coolant, wherein each plate of the plurality of elongate plates comprises lead through openings connected to the first cavity or the second cavity, wherein the lead through openings are formed approximately in the end regions of each plate of the plurality of elongate plates and each elongate plate is surrounded by a bent-off edge, wherein the first cavity is arranged in a longitudinal direction extending between lead through openings on opposite end regions of the plurality of elongate plates, wherein each plate of the plurality of elongate plates comprises a corrugated profile having a plurality of corrugations,

wherein an xth plate of the plurality of elongate plates has at least one corrugation drawn into its bent-off edge, wherein said xth plate is bounded on a top side and a bottom side by two plates of the plurality of elongate plates which have a corrugated profile having corrugations that all terminate before the bent-off edges of the two plates, wherein the x in xth is an integer such that the plurality of elongate plates has a repeating pattern of plates having at least one corrugation drawn into their bent-off edges and plates having a corrugated profile having corrugations that all terminate before their bent-off edges,

wherein an nth corrugation of the corrugated profile of the xth plate is drawn into the bent-off edge, whereas corrugations other than the nth corrugation of the corrugated profile of the plate terminate before the bent-off edge, wherein the n in nth is an integer such that the corrugated profile has a repeating pattern of corrugations drawn into the edge and corrugations terminating before the edge,

wherein the corrugations of each plate of the plurality of elongate extend from a first lateral bent-off edge to a second lateral bent-off edge transversely with respect to a main through flow direction of the coolant or the cooling medium,

wherein the corrugations comprise a zig-zag shape about the direction of longitudinal extent of the plates.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2018
From: BEHR GMBH & CO. KG
To: MAHLE INTERNATIONAL GMBH
Reel/Frame 045630/0062 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2014
From: DRANKOW, ANDREAS; RICHTER, JENS; HOFMANN, HERBERT
To: BEHR GMBH & CO. KG
Reel/Frame 034312/0168 →
Priority Claims (1)
DE 10 2013 220 313 · Oct 8, 2013 · national
Continuity (1)
Related Publication 20150096727A1 · Apr 9, 2015
Cited By (1)
US 12,215,937