The invention relates to a heat exchanger as per the preamble of patent claim 1.
Heat exchangers with disk-shaped or plate-shaped flow ducts are known in numerous embodiments, for example as plate-type oil coolers, plate-type evaporators or so-called stacked-plate heat exchangers. Said heat exchangers are composed of a plurality of identical sheet metal parts which are arranged or stacked one on top of the other, form flow ducts and are connected to one another by means of soldering. The flow ducts which are arranged one above the other are flow-connected by means of transversely-running connecting ducts which act as collecting and distributing ducts. It is know to form the connecting ducts as cup-shaped embossed portions and to solder these to one another in the region of a planar circular-ring-shaped face, with the cups being formed out of the disks or plates of the flow ducts. Said known connecting ducts have the disadvantage that the throughflow resistance is relatively high since the flow cross section is narrowed by the cup design. This increases the pressure drop across the heat exchanger.
It is an object of the present invention to improve a heat exchanger of the type specified in the introduction with regard to its pressure drop caused by the flow resistance in the connecting ducts.
Said object is achieved by means of the features of patent claim 1. Advantageous embodiments of the invention can be gathered from the subclaims.
It is provided according to the invention that the connecting duct is formed by pipe sockets which can be plugged one into the other and are self-centering. The end regions of the pipe sockets, which can preferably be produced as rim holes, are of conical design and are specifically conically flared or conically tapered, in each case with the same angle, such that said end regions can be plugged one into the other and bear against one another. A centering action is generated by the conical end regions as they are plugged one into the other. At the same time, a contact face which can be soldered is generated, so that a fluid-tight connecting duct between adjacent flow ducts is generated. The shaping according to the invention provides the advantage of a low flow resistance for the connecting duct, since the latter is of virtually smooth-walled design and has no projecting edges. Also provided is the advantage of an increased soldering surface and therefore a higher strength, in particular internal pressure strength, for the heat exchanger. It is also advantageous that the flow speed in the connecting duct is lower as a result of the greater flow cross section, as a result of which the pressure drop is likewise reduced. As a result of the centering action, further centering means for positioning the plate-shaped flow ducts are made superfluous.
The connecting ducts according to the invention with the conical end regions can preferably be used in plate-type heat exchangers as are known per se, with the pipe sockets, by being plugged one into the other, forming a distributing and a collecting duct which in each case have the advantage of a low throughflow resistance.
According to one particular embodiment of the invention, the flow ducts can be designed as annular ducts, preferably with a square outline, that is to say as per the previous patent application from the applicant with the official file reference 10 2005 004 777.7.
Exemplary embodiments of the invention are illustrated in the drawing and are explained in more detail below.
In the drawing:
a-1d show a heat exchanger with a connecting duct as per the prior art,
a, 5b show plates of a heat exchanger with pipe sockets according to the invention, before joining,
a shows a base plate of a heat exchanger,
b shows two plates arranged one above the other, before joining, and
c shows two plates after joining and soldering.
a to 1d show a heat exchanger with flow ducts and a connecting duct as per the prior art.
a shows a lower plate 1 of a flow duct with an upwardly-embossed, approximately cylindrical cup 1a which has a planar, circular-ring-shaped soldering face 1b.
b shows a lower plate 2 of a flow duct with a downwardly-embossed, approximately cylindrical cup 2a which has a planar, circular-ring-shaped soldering face 2b.
c shows the connection of the two plates 1, 2, with the circular-ring-shaped faces 1b, 2b lying one on top of the other.
d shows a section through a connecting duct 3 which is generated by the two cup-shaped embossed portions 1a, 1b, 2a, 2b which are placed one on top of the other and are soldered to one another. A diameter reduction, specifically from a maximum diameter D to a minimum diameter d, is generated in the region of the soldered circular-ring-shaped faces. Said known design of the connecting duct 3 leads to an increased flow speed and to an increased pressure loss across the heat exchanger.
a and 5b show two corner details of two plates 9, 10 which have in each case one conically flared pipe socket 4 and one conically tapered pipe socket 6. The plates are parts of annular flow ducts (not illustrated here).
a shows a plate 11 which is designed as a square annular duct and which has a conically flared pipe socket 4 and a conically tapered pipe socket 6 which are situated in each case diagonally opposite one another. Arranged in the region of the other corners are cup-shaped closed rim holes 12, 13 which are likewise formed out of the plate 11 and serve as spacers and for support.
b shows two plates 11, 14 arranged one above the other before joining, which plates 11, 14 are of identical design but are rotated by 180° (about a diagonal). It is therefore possible for conically flared and conically tapered pipe sockets 4, 6 in each case on diagonally opposite corners to be joined, and for closed rim holes 12, 13 and 15, 16 to come into contact as spacers.
c shows the two plates 11, 14 as a detail and partially in section, with the closed rim holes 12, 15 bearing against one another with their planar faces and being soldered there—there is therefore only support taking place here and no passage of flow. Formed at the two diagonally opposite corners are connecting ducts 17, 18 which connect the upper plate 14 and the lower plate 11 to one another, which plates 14 and 11 are in each case part of an annular flow duct. A heat exchanger of said type, with preferably square annular ducts, is disclosed in the previous application from the applicant with the official file reference 10 2005 004 777.7—the subject matter of said previous application is included in its entirety in the content of disclosure of this application.
In contrast to the exemplary embodiment described above and illustrated in the drawing, it is possible for the flow cross section of the connecting ducts or of the pipe sockets which are plugged one into the other to be elliptical or oval or to have other shapes. The pipe socket plug-type connection according to the invention can be used for all types of disk and plate heat exchangers.
Number | Date | Country | Kind |
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10 2005 043 731.1 | Sep 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2006/008736 | 9/7/2006 | WO | 00 | 3/13/2008 |