Heat exchanger

US11143457B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11143457-B2
Application numberUS-201716303906-A
CountryUS
Kind codeB2
Filing dateApr 12, 2017
Priority dateMay 23, 2016
Publication dateOct 12, 2021
Grant dateOct 12, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A heat exchanger includes: a duct having an inflow port and an outflow port; a core part; and a fix plate. The core part includes: a plurality of cooling plates, each of which having a first plate portion and a second plate portion stacked with each other; and a plurality of spacer plates. The fix plate is formed in a frame shape corresponding to open form of the inflow port and the outflow port, and is fixed to the inflow port and the outflow port. A tank is fixed to a side of the fix plate opposite from the duct. The core part has a unification part that unites a part of the spacer plate and a part of the cooling plate opposing the spacer plate.

First claim

Opening claim text (preview).

What is claimed is: 1. A heat exchanger comprising: a duct having an inflow port and an outflow port, a first fluid being introduced from the inflow port and discharged out of the outflow port; a core part housed in the duct and including a plurality of cooling plates having a first plate portion and a second plate portion stacked with each other, a channel for a second fluid being defined between the first and second plate portions, a plurality of spacer plates supported between the cooling plates adjacent to each other, heat being exchanged between the first fluid flowing through the duct and the second fluid flowing through the plurality of cooling plates; and a fix plate having a frame shape corresponding to an open form of the inflow port and the outflow port, the fix plate being fixed to the inflow port and the outflow port, a tank being fixed to a side of the fix plate opposite from the duct, wherein the core part has a unification part that unites a part of the spacer plate and a part of the cooling plate opposing the spacer plate, the spacer plate has an end adjacent to at least the inflow port, and the end has a wall surface opposing the cooling plate, and a bent part bent to make the wall surface to be in contact with the cooling plate, the unification part is the end of the spacer plate having the wall surface united with the cooling plate by the bent part, each of the cooling plates has a first cup part and a second cup part stacked with each other, the first cup part being a part of the first plate portion projected away from the second plate portion and having an opening, the second cup part being a part of the second plate portion corresponding to the first cup part and projected away from in an opposite direction of the first cup part and having an opening, the plurality of spacer plates has a penetration hole part that defines a pillar structure part in which the plurality of cooling plates are connected from a most top layer to a most bottom layer through the first cup part and the second cup part, the penetration hole part being interposed between the second cup part of one cooling plate and the first cup part of the adjacent cooling plate in the stacking direction of the cooling plates, and the pillar structure part is defined by the first cup part and the second cup part from the most top layer to the most bottom layer of the cooling plates in the stacking direction of the cooling plates to connect the penetration hole parts with each other. 2. The heat exchanger according to claim 1 , wherein when the spacer plate and the cooling plate opposing the spacer plate are defined as one layer, the unification part is prepared in all layers or a part of the layers. 3. A heat exchanger comprising: a duct having an inflow port and an outflow port, a first fluid being introduced from the inflow port and discharged out of the outflow port; a core part housed in the duct and including a plurality of cooling plates having a first plate portion and a second plate portion stacked with each other, a channel for a second fluid being defined between the first and second plate portions, a plurality of spacer plates supported between the cooling plates adjacent to each other, heat being exchanged between the first fluid flowing through the duct and the second fluid flowing through the plurality of cooling plates; and a fix plate having a frame shape corresponding to an open form of the inflow port and the outflow port, the fix plate being fixed to the inflow port and the outflow port, a tank being fixed to a side of the fix plate opposite from the duct, wherein the core part has a unification part that unites a part of the spacer plate and a part of the cooling plate opposing the spacer plate, the spacer plate has an end adjacent to at least the inflow port, and the end has a wall part bent toward the cooling plate, the unification part is a nail part that is a tip end of the cooling plate bent toward the wall part and united with the wall part, each of the cooling plates has a first cup part and a second cup part stacked with each other, the first cup part being a part of the first plate portion projected away from the second plate portion and having an opening, the second cup part being a part of the second plate portion corresponding to the first cup part and projected away from in an opposite direction of the first cup part and having an opening, the plurality of spacer plates has a penetration hole part that defines a pillar structure part in which the plurality of cooling plates are connected from a most top layer to a most bottom layer through the first cup part and the second cup part, the penetration hole part being interposed between the second cup part of one cooling plate and the first cup part of the adjacent cooling plate in the stacking direction of the cooling plates, and the pillar structure part is defined by the first cup part and the second cup part from the most top layer to the most bottom layer of the cooling plates in the stacking direction of the cooling plates to connect the penetration hole parts with each other. 4. A heat exchanger comprising: a duct having an inflow port and an outflow port, a first fluid being introduced from the inflow port and discharged out of the outflow port; a core part housed in the duct and including a plurality of cooling plates having a first plate portion and a second plate portion stacked with each other, a channel for a second fluid being defined between the first and second plate portions, a plurality of spacer plates supported between the cooling plates adjacent to each other, heat being exchanged between the first fluid flowing through the duct and the second fluid flowing through the plurality of cooling plates; and a fix plate having a frame shape corresponding to an open form of the inflow port and the outflow port, the fix plate being fixed to the inflow port and the outflow port, a tank being fixed to a side of the fix plate opposite from the duct, wherein the core part has a unification part that unites a part of the spacer plate and a part of the cooling plate opposing the spacer plate, the spacer plate has an end adjacent to at least the inflow port, and the end has a wall part bent toward the cooling plate, the unification part is the wall part united with the cooling plate, each of the cooling plates has a first cup part and a second cup part stacked with each other, the first cup part being a part of the first plate portion projected away from the second plate portion and having an opening, the second cup part being a part of the second plate portion corresponding to the first cup part and projected away from in an opposite direction of the first cup part and having an opening, the plurality of spacer plates has a penetration hole part that defines a pillar structure part in which the plurality of cooling plates are connected from a most top layer to a most bottom layer through the first cup part and the second cup part, the penetration hole part being interposed between the second cup part of one cooling plate and the first cup part of the adjacent cooling plate in the stacking direction of the cooling plates, and the pillar structure part is defined by the first cup part and the second cup part from the most top layer to the most bottom layer of the cooling plates in the stacking direction of the cooling plates to connect the penetration hole parts with each other. 5. A heat exchanger comprising: a duct having an inflow port and an outflow port, a first fluid being introduced from the inflow port and discharged out of the outflow port; a core part housed in the duct and including a plurality of cooling plates having a first plate portion and a second plate portion stacked with each other, a channel fo

Assignees

Inventors

Classifications

  • with tubular conduits {(F28D1/0246 takes precedence)} · CPC title

  • by brazing · CPC title

  • Spacing means · CPC title

  • Elements constructed for building-up into stacks, e.g. capable of being taken apart for cleaning · CPC title

  • F28D1/03Primary

    with plate-like or laminated conduits {(stacked plates having one or more openings therein to form tubular heat-exchange passages F28F3/086)} · CPC title

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What does patent US11143457B2 cover?
A heat exchanger includes: a duct having an inflow port and an outflow port; a core part; and a fix plate. The core part includes: a plurality of cooling plates, each of which having a first plate portion and a second plate portion stacked with each other; and a plurality of spacer plates. The fix plate is formed in a frame shape corresponding to open form of the inflow port and the outflow por…
Who is the assignee on this patent?
Denso Corp
What technology area does this patent fall under?
Primary CPC classification F28D1/03. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Oct 12 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).