Heat exchanger arrangement

US10106013B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10106013-B2
Application numberUS-201314416200-A
CountryUS
Kind codeB2
Filing dateJun 12, 2013
Priority dateJun 13, 2012
Publication dateOct 23, 2018
Grant dateOct 23, 2018

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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

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A heat exchanger assembly for a vehicle heating device includes inner heat exchanger housing ( 12 ) and outer heat exchanger housing ( 14 ). A fluid flow space ( 24 ) is formed between the inner heat exchanger housing and the outer heat exchanger housing. Flow guiding formations ( 40, 42 ), along circumferential walls ( 18, 22 ) of the housings, divide a portion of the fluid flow space into a first partial flow space ( 44 ) and a second partial flow space ( 46 ). A fluid inlet opening ( 49 ) opens to the first partial flow space and at least one fluid outlet opening ( 51 ) opens to the second partial flow space ( 46 ). A press fit formation ( 94 ) fixes the inner heat exchanger housing in relation to the outer heat exchanger housing and includes the first flow guiding formation and the second flow guiding formation and/or the press fit formation is in an end region ( 32 ) of the circumferential walls.

First claim

Opening claim text (preview).

The invention claimed is: 1. A heat exchanger arrangement, for a vehicle heater, the heat exchanger arrangement comprising: a pot-shaped inner heat exchanger housing with a first bottom wall and with a first circumferential wall adjoining the first bottom wall and surrounding a longitudinal axis; a pot-shaped outer heat exchanger housing with a second bottom wall and with a second circumferential wall adjoining the second bottom wall and surrounding the longitudinal axis; a fluid flow space formed between the inner heat exchanger housing and the outer heat exchanger housing; a first flow guiding formation extending essentially in the direction of the longitudinal axis along the first circumferential wall and the second circumferential wall and a second flow guiding formation extending essentially in the direction of the longitudinal axis along the first circumferential wall and the second circumferential wall at a circumferentially spaced location from the first flow guiding formation, wherein the first flow guiding formation and the second flow guiding formation divide a part of the fluid flow space formed between the first circumferential wall and the second circumferential wall into a first partial flow space and a second partial flow space; at least one fluid inlet opening open towards the fluid flow space in a circumferential area of the first partial flow space and at least one fluid outlet opening open towards the fluid flow space in a circumferential area of the second partial flow space; and a press fit formation for fixing the inner heat exchanger housing in relation to the outer heat exchanger housing, the press fit formation provided in an end area of the circumferential walls located at a distance from the first bottom wall and the second bottom wall and the press fit formation comprising at least one of the first flow guiding formation and the second flow guiding formation, wherein the press fit formation on at least one of the first flow guiding formation and the second flow guiding formation comprises a radially outwardly oriented first press fit surface and a radially inwardly oriented second press fit formation surface pressed against the first press fit surface, at least one of the first flow guiding formation and the second flow guiding formation comprising at least one radially projecting first web on one circumferential wall from among the first circumferential wall and the second circumferential wall and a recess receiving the at least one first web on another circumferential wall from among the first circumferential wall and the second circumferential wall, the first web having a radially oriented end face providing a press fit surface of the first press fit surface and the second press fit formation surface and the recess having a radially oriented recess bottom surface providing another press fit surface of the first press fit surface and the second press fit formation surface, wherein the end faces of the at least one first web are located at a radially spaced location from the associated recess bottom surface in a length area of the at least one flow guiding formation adjoining the press fit formation. 2. A heat exchanger arrangement in accordance with claim 1 , further comprising a sealing formation, the fluid flow space being closed in a fluid-tight manner in the end area by the sealing formation acting between the inner heat exchanger housing and the outer heat exchanger housing, the end area being located at an axial end area of the circumferential walls, the axial end area being located at an axially spaced location from the first bottom wall and the second bottom wall with respect to the longitudinal axis. 3. A heat exchanger arrangement in accordance with claim 1 , wherein the press fit formation has a length of extension in the direction of the longitudinal axis in the range of 0.2 to 0.6 of a length of extension of the first circumferential wall in the direction of the longitudinal axis. 4. A heat exchanger arrangement in accordance with claim 1 , wherein the recess is formed between two second webs projecting radially from the other circumferential wall at a circumferentially spaced location from one another. 5. A heat exchanger arrangement in accordance with claim 1 , wherein the first circumferential wall is one circumferential wall and that the second circumferential wall is the other circumferential wall. 6. A heat exchanger arrangement in accordance with claim 1 , wherein a recess width corresponds, in at least some areas, essentially to a web width of the first web meshing with this recess. 7. A heat exchanger arrangement in accordance with claim 1 , wherein the length area extends to the bottom walls starting from the press fit formation to an area in which the circumferential walls adjoin the bottom walls. 8. A heat exchanger arrangement in accordance with claim 1 , wherein the press fit formation has a length of extension in the direction of the longitudinal axis of about 0.4 of a length of extension of the first circumferential wall in the direction of the longitudinal axis. 9. A vehicle heater, comprising a burner area to be supplied with combustion air and fuel and a heat exchanger arrangement comprising: a pot-shaped inner heat exchanger housing with a first bottom wall and with a first circumferential wall adjoining the first bottom wall and surrounding a longitudinal axis; a pot-shaped outer heat exchanger housing with a second bottom wall and with a second circumferential wall adjoining the second bottom wall and surrounding the longitudinal axis; a fluid flow space formed between the inner heat exchanger housing and the outer heat exchanger housing; a first flow guiding formation extending essentially in the direction of the longitudinal axis along the first circumferential wall and the second circumferential wall and a second flow guiding formation extending essentially in the direction of the longitudinal axis along the first circumferential wall and the second circumferential wall at a circumferentially spaced location from the first flow guiding formation, wherein the first flow guiding formation and the second flow guiding formation divide a part of the fluid flow space formed between the first circumferential wall and the second circumferential wall into a first partial flow space and a second partial flow space; at least one fluid inlet opening, open towards the fluid flow space in a circumferential area of the first partial flow space, and at least one fluid outlet opening, open towards the fluid flow space in a circumferential area of the second partial flow space; and a press fit formation for fixing the inner heat exchanger housing in relation to the outer heat exchanger housing, the press fit formation comprising at least one of the first flow guiding formation and the second flow guiding formation in an end area of the circumferential walls located at a distance from the first bottom wall and the second bottom wall, the heat exchanger arrangement transferring combustion heat generated in the burner area to a fluid flowing through the fluid flow space, wherein the press fit formation on at least one of the first flow guiding formation and the second flow guiding formation comprises a radially outwardly oriented first press fit surface and a radially inwardly oriented second press fit formation surface pressed against the first press fit surface, at least one of the first flow guiding formation and the second flow guiding formation comprising at least one radially projecting first web on one circumferential wall from among the first circumferential wall and the second circumferential wall and a recess receiving the at least one first web on another circumferential wall from among th

Assignees

Inventors

Classifications

  • the conduits for one medium being in heat conductive contact with the conduits for the other medium · CPC title

  • consisting of two coaxial conduits or modules of two coaxial conduits · CPC title

  • with a dry-wall combustion chamber · CPC title

  • Heat exchangers, burners, ignition devices · CPC title

  • in water channels · CPC title

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What does patent US10106013B2 cover?
A heat exchanger assembly for a vehicle heating device includes inner heat exchanger housing ( 12 ) and outer heat exchanger housing ( 14 ). A fluid flow space ( 24 ) is formed between the inner heat exchanger housing and the outer heat exchanger housing. Flow guiding formations ( 40, 42 ), along circumferential walls ( 18, 22 ) of the housings, divide a portion of the fluid flow space into a f…
Who is the assignee on this patent?
Eberspaecher Climate Control Sys Gmbh & Co Kg
What technology area does this patent fall under?
Primary CPC classification F24H1/009. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Oct 23 2018 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).