The invention relates to a method for providing a heat exchanger block with a housing and to a heat exchanger comprising a heat exchanger block with a housing manufactured by said method.
It is known to manufacture a heat exchanger block and a housing or housing parts of such a heat exchanger block separately and then put the heat exchanger block and the housing or housing parts together in an assembly operation.
This type of assembly does not guarantee a strong and hermetic connection between the heat exchanger block and the housing. In order to provide a strong and hermetic connection between the heat exchanger block and the housing, it is known to use elastomeric seals and/or glue. However, this complicates the method for providing a heat exchanger block with a housing.
It is an object of the invention to simplify a method for providing a heat exchanger block with a housing.
Therefore, the invention provides a method for providing a heat exchanger block with a housing and to a heat exchanger comprising a heat exchanger block and a housing manufactured by said method.
In other words, the present invention provides a method for providing a heat exchanger block with a housing, said heat exchanger block comprising
air flow passages for exchanging heat energy between a first air flow which can be passed through said heat exchanger block and a second air flow which can be passed through said heat exchanger block;
a first inlet opening fora first air flow;
a first outlet opening for said first air flow;
a second inlet opening for a second air flow; and
a second outlet opening for said second air flow;
said method comprising:
selecting outer surface regions of said heat exchanger block to be covered by portions of said housing, said selected surface regions being different from said first inlet opening, said first outlet opening, said second inlet opening and said second outlet opening;
moulding a portion of said housing to each selected outer surface region.
The following description and drawing show an exemplary embodiment of the present invention with a heat exchanger block and a method of providing a housing to said heat exchanger block in order to provide a heat exchanger comprising said heat exchanger block having said housing.
The first air flow passages AFP1 are defined between a first pair of adjacent heat exchanger plates parallel to each other. Similarly, the second air flow passages AFP2 are defined between a second pair of adjacent heat exchanger plates parallel to each other. The heat exchanger block comprises N stacked plates and (N-1) consecutive pairs of adjacent heat exchanger plates in the stack, with each pair of adjacent heat exchanger plates alternatingly constituting first air flow passages AFP1 and second air flow passages AFP2.
The heat exchanger block B also comprises a first inlet opening region O11 having inlet openings for said first air flow AF1 and a first outlet opening region O12 having outlet openings for said first air flow AF1 as well as a second inlet opening region O21 having inlet openings for said second air flow AF2 and a second outlet opening region O22 having outlet openings for said second air flow AF2.
The heat exchanger block B comprises a first outer surface region B1 and a second outer surface region B2 opposite said first outer surface region B1, as well as a third outer surface region B3 and a fourth outer surface region B4 opposite said third outer surface region B3, as well as a fifth outer surface region B5 and a sixth outer surface region B6 opposite said fifth outer surface region B5.
Analogously, there is provided a method step for providing said heat exchanger block B with a second housing portion W2 (not explicitly shown) This method step comprises inserting said second outer surface region B2 of said heat exchanger block B into said partially filled second cavity portion C2 by moving said heat exchanger block B towards said second mould M2, thereby displacing and spreading said fluidic polymer FP within a second gap region G2 between said second outer surface region B2 and said second inner cavity surface CS2. This method step further comprises transferring said fluidic polymer FP within said first gap region G2 from its fluidic state into a solid polymer SP with a solid state or less fluidic state than said fluidic polymer. This method step further comprises withdrawing said second outer surface region B2 of said heat exchanger block B from said partially filled second cavity portion C2 by moving said heat exchanger block B away from said second mould M2, thereby leaving said moulded second housing portion W2 covering/engaging said second outer surface region B2 of said heat exchanger block B.
In a manner similar to the first mould M1 being used to mould the first housing portion W1 to the first outer surface region B1 and similar to the second mould M2 being used to mould the second housing portion W2 to the second outer surface region B2, the third mould M3 is used to mould a third housing portion W3 to the third outer surface region B3 and the fourth mould M4 is used to mould a forth housing portion W4 to the forth outer surface region B4.
Analogously, there is provided a method step for providing said heat exchanger block B with a sixth housing portion W6 (not explicitly shown) This method step comprises inserting said sixth outer surface region B6 of said heat exchanger block B into said partially filled sixth cavity portion C6 by moving said heat exchanger block B towards said sixth mould M6, thereby displacing and spreading said fluidic polymer FP within a sixth gap region G6 between said sixth outer surface region B6 and said sixth inner cavity surface CS6. This method step further comprises transferring said fluidic polymer FP within said sixth gap region G6 from its fluidic state into a solid polymer SP with a solid state or less fluidic state than said fluidic polymer. This method step further comprises withdrawing said sixth outer surface region B6 of said heat exchanger block B from said partially filled sixth cavity portion C6 by moving said heat exchanger block B away from said sixth mould M6, thereby leaving said moulded sixth housing portion W6 covering/engaging said sixth outer surface region B6 of said heat exchanger block B.
Number | Date | Country | Kind |
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01347/18 | Nov 2018 | CH | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2019/059471 | 11/5/2019 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2020/095188 | 5/14/2020 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4099928 | Norback | Jul 1978 | A |
4116271 | De Lepeleire | Sep 1978 | A |
4984630 | Gemeinhardt et al. | Jan 1991 | A |
6660198 | Fischer | Dec 2003 | B1 |
20060201666 | Sonoda et al. | Sep 2006 | A1 |
20070107221 | Veltkamp | May 2007 | A1 |
20080201948 | Ludwig | Aug 2008 | A1 |
20080201977 | Song | Aug 2008 | A1 |
20170077568 | Huettel | Mar 2017 | A1 |
Number | Date | Country |
---|---|---|
10 2015 103 908 | Sep 2016 | DE |
0774637 | May 1997 | EP |
1 779 965 | May 2007 | EP |
3338981 | Jun 2018 | EP |
2 951 523 | Oct 2018 | EP |
5-248782 | Sep 1993 | JP |
2004009813 | Jan 2004 | JP |
Entry |
---|
International Search Report of Feb. 6, 2020 for PCT/IB2019/059471. |
EPO (Munich, DE), EPO Form 2001 10.24 CXP , “Communication pursuant to Article 94(3) EPC,” and EPO Form 2906 01.91TRI, Exam Opinion /Reasons, for European Application No. EP 19 817 810.5 mailed date of Nov. 5, 2024, (5 pages total). |
Canadian Patent Office (Quebec), Office Action for Canadian Application No. 3,112,900, issued Nov. 8, 2024 (4 pages). |
Number | Date | Country | |
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20220221229 A1 | Jul 2022 | US |