Claims
- 1. A method of joining opposed sheet metal sections of a heat exchanger unit along an edge thereof wherein each of said sections is provided with a flange adapted to be joined to the cooperating flange of the other section, comprising the steps of:
- forming a generally elongated continuous bead on the flange of one of said sections extending adjacent to an outer longitudinal edge of said flange of said one section by displacing a portion of said flange of said one section away from a plane coincident with said flange of said one section to form a ridge which is elastically displaceable by a portion of said flange of said other section;
- forming said other section with a flange of sufficient width to permit folding said portion of said flange of said other section over the flange of said one section;
- placing said sections opposite each other with said flanges aligned;
- folding said portion of said flange of said other section over said flange of said one section and pressing said portion of said flange of said other section against said bead sufficiently to elastically displace said ridge toward said plane coincident with said flange of said one section and said longitudinal edge into engagement with said flange of said other section to form a seal between said flanges at said ridge and at said longitudinal edge.
- 2. The method set forth in claim 1 and further including the steps of:
- crimping said flanges together at a plurality of locations after folding said flange of said other section over said flange of said one section and causing said flanges at such locations to extend in one direction with respect to a longitudinally extending plane through said heat exchanger, and crimping said flanges together between the said locations and causing said flanges at the between locations to extend in another direction with respect to said longitudinally extending plane to create a scissor action between the crimped flange portions extending in the different directions to thereby securely clamp and seal said heat exchanger along said edge.
- 3. The method set forth in claim 2 wherein:
- said heat exchanger is provided cooperating flanges on top, bottom and opposed side edges of said sections, and the steps of folding and crimping are each performed simultaneously along said top, bottom and opposed side edges of said heat exchanger.
- 4. The method set forth in claim 3 wherein:
- the folded flanges are caused to meet along mitered edges at corners of the heat exchanger and flange material is squeezed between said edges to form a leakproof corner joint.
- 5. The method set forth in claim 1 wherein:
- said step of forming said bead includes displacing a portion of said flange of said one section including said longitudinal edge to lie in a plane forming an acute angle with said plane coincident with said flange of said one section.
- 6. The method set forth in claim 1 wherein:
- said displaced portion of said flange of said one section is tapered toward said plane coincident with said flange of said one section at a lateral edge of said flange of said one section.
- 7. A method of joining opposed sheet metal sections of a furnace heat exchanger unit along an edge thereof to form a substantially gas tight seal between said sections during repeated heating and cooling cycles of said heat exchanger unit wherein each of said sections is provided with a flange adapted to be joined to the cooperating flange of the other section, comprising the steps of:
- forming a generally elongated continuous bead on the flange of one of said sections extending along and adjacent to a longitudinal outer edge of said flange of said one section by displacing a portion of said flange of said one section away from a plane coincident with said flange of said one section to form a ridge which is elastically displaceable by said flange of said other section and to position said longitudinal edge of said flange of said one section in position to forcibly engage with flange of said other section;
- forming said other section with a flange of sufficient width to permit folding said flange of said other section over said flange of said one section;
- placing said sections opposite each other with said flanges aligned;
- folding a portion of said flange of said other section over said flange of said one section and pressing said portion of said flange of said other section against said bead sufficiently to substantially displace said ridge toward said plane coincident with said one section to form a seal along said flanges between said ridge and said portion of said flange of said other section and to form a seal between said longitudinal edge and said flange of said other section.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of co-pending application Ser. No. 295,041 filed Aug. 21, 1981 now U.S. Pat. No. 4,441,241 which is a division of application Ser. No. 178,338 filed Aug. 15, 1980, now U.S. Pat. No. 4,298,061.
US Referenced Citations (5)
Divisions (1)
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Number |
Date |
Country |
Parent |
178338 |
Aug 1980 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
295041 |
Aug 1981 |
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