Claims
- 1. A heat exchanger apparatus of increased efficiency and reduced height, comprising heat exchanger pipes (20) and sheet-like plates (10) each of which has bores (12) and whose edge configuration comprises the side edges (16) of an elongate strip and parallel base edges (18) which cut through the strip inclinedly beside the bores (12), wherein the heat exchanger pipes (20) extend through the bores (12) whose diameter (da) comprises the outside diameter of the heat exchanger pipes (20) and which are arranged in a rectangular grid whose longitudinal grid lines (22) extend in parallel relationship to the side edges (16) of said edge configuration and whose transverse grid lines (24) extend in normal relationship to said side edges (16), wherein the grid lines (22, 24) are at constant pitches (s.sub.2, s.sub.1) in the two mutually perpendicularly grid directions, and wherein adjacent grid lines (24) are displaced relative to each other by half the grid line pitch (s.sub.1 /2), characterized in that the base edge (18) includes with the side edge (16) an angle (A) which is given by the following formula: ##EQU9## and that the base edge (18) lies between the bores (12) in a strip region (26) whose width (c) is given by the following formula: ##EQU10## wherein the diameter (da) and the pitches (s.sub.1, s.sub.2) are related in such a relationship that the following applies: ##EQU11## wherein an increased number of bores (12) are located along spaced apart lines parallel to said side edges (16) for a given height (H).
- 2. The heat exchanger apparatus of claim 1, wherein:
- said sheet like plates are arranged such that the direction of flow of a fluid to said heat exchanger apparatus exterior of said pipes is generally parallel to said base edges.
- 3. A heat exchanger apparatus of increased efficiency and reduced height, comprising:
- a sheet metal plate formed from a metal strip having two spaced apart parallel side edges with bores formed through said strip arranged along longitudinal grid lines which are spaced apart and parallel to each other and to said side edges with the centers of adjacent bores along each of said longitudinal grid lines being spaced apart by a distance s.sub.1 and adjacent longitudinal grid lines being spaced apart by a distance s.sub.2 and with the longitudinal grid lines next to said two side edges being spaced from said two side edges respectively, said bores being arranged along transverse grid lines normal to said longitudinal grid lines with alternate transverse grid lines being spaced apart by a distance s.sub.1 and adjacent transverse grid lines being spaced apart by a distance s.sub.1 /2, the centers of adjacent bores along each transverse grid line being spaced apart by a distance 2s.sub.2, all of said bores having substantially the same size and being of dimensions such that parallel spaced apart straight strip regions extend diagonally between said two side edges and between said bores, each strip region forms equal acute angles with said two side edges and extends between a pair of adjacent bores along each of said longitudinal grid lines wherein the pairs of adjacent bores of adjacent longitudinal grid lines between which a given strip region extends are longitudinally spaced from each other with the centers of the closest bores of adjacent pairs of bores of adjacent longitudinal grid lines between which a given strip region extends being longitudinally spaced from each other by a distance of s.sub.1 /2,
- said sheet metal plate being cut from said metal strip along two of said spaced apart strip regions forming two base edges with one of said base edges defining the height of said sheet metal plate relative to the other of said base edges,
- wherein an increased number of bores are located along spaced apart lines parallel to said side edges for a given height of said sheet metal plate,
- pipes extending through said bores of said sheet metal plate,
- said heat exchanger apparatus being arranged such that the direction of flow of fluid through said heat exchanger apparatus exterior of said pipes will be generally parallel to said two base edges.
- 4. The heat exchanger apparatus of claim 3, comprising:
- a plurality of said sheet metal plates with said pipes extending through said bores of said plurality of sheet metal plates,
- said heat exchanger apparatus being arranged such that the direction of flow of fluid through said heat exchanger apparatus exterior of said pipes will be generally parallel to said base edges of said plurality of sheet metal plates.
- 5. The heat exchanger apparatus of claim 3, wherein:
- each of said acute angles A is defined as follows: ##EQU12## the width c of each of said strip regions is defined as follows: ##EQU13## wherein: ##EQU14##
- 6. The heat exchanger apparatus of claim 5 wherein each of said bores has a collar formed therearound, said collars project perpendicularly from said plate, each of said collars has an outside diameter that is the sum of the inside diameter of the respective bore and twice the thickness of the respective collar, wherein said strip regions extend diagonally between said two side edges and said collar outside diameters.
- 7. The heat exchanger apparatus of claim 3 wherein said bores have inside diameters and said pipes have outside diameters that correspond generally to the inside diameter of said bores.
- 8. The heat exchanger apparatus of claim 7 wherein each of said bores has a collar formed therearound, said collars project perpendicularly from said plate, each of said collars has an outside diameter that is the sum of the inside diameter of the respective bore and twice the thickness of the respective collar, wherein said strip regions extend diagonally between said two side edges and said collar outside diameters.
- 9. The heat exchanger apparatus of claim 3 wherein each of said bores has a collar formed therearound, said collars project perpendicularly from said plate, each of said collars has an outside diameter that is the sum of the inside diameter of the respective bore and twice the thickness of the respective collar, wherein said strip regions extend diagonally between said two side edges and said collar outside diameters.
- 10. A method of forming a heat exchanger apparatus from a metal strip having two spaced apart parallel side edges with bores formed through said strip and arranged along longitudinal grid lines which are spaced apart and parallel to each other and to said edges with the centers of adjacent bores along each of said longitudinal grid lines being spaced apart by a distance s.sub.1 and adjacent longitudinal grid lines being spaced apart by a distance s.sub.2 and with the longitudinal grid lines next to said two side edges being spaced from said two side edges respectively, said bores being arranged along transverse grid lines normal to said longitudinal grid lines with alternate transverse grid lines being spaced apart by a distance s.sub.1 and adjacent transverse grid lines being spaced apart by a distance s.sub.1 /2, the centers of adjacent bores along each transverse grid line being spaced apart by a distance 2s.sub.2, all of said bores having substantially the same size and being of dimensions such that parallel spaced apart straight strip regions extend diagonally between said two side edges and between said bores, each strip region forms equal acute angles with said two side edges and extends between a pair of adjacent bores along each of said longitudinal grid lines wherein the pairs of adjacent bores of adjacent longitudinal grid lines between which a given strip region extends are longitudinally spaced from each other with the centers of the closest bores of adjacent pairs of bores of adjacent longitudinal grid lines between which a given strip region extends being longitudinally spaced from each other by a distance of s.sub.1 /2, said method comprising the steps of:
- cutting said metal strip along two of said spaced apart strip regions to form a sheet metal plate having two base edges defined by said two cut strip regions with one of said base edges defining the height of said sheet metal plate relative to the other of said base edges,
- wherein an increased number of bores are located along spaced apart lines parallel to said side edges for a given height of said sheet metal plate, and
- inserting pipes through said bores of said sheet metal plate to form said heat exchanger apparatus arranged such that the direction of flow of fluid through said heat exchanger apparatus exterior of said pipes will be generally parallel to said two base edges.
- 11. The method of claim 10, wherein:
- each of said acute angles A is defined as follows: ##EQU15## the width c of each of said strip regions is defined as follows: ##EQU16## wherein: ##EQU17##
- 12. The method of claim 10 further comprising the step of forming a collar around each bore in said sheet metal plate by a flanging operation, said collars extending perpendicularly from said plate.
Priority Claims (1)
Number |
Date |
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Kind |
3528499 |
Aug 1985 |
DEX |
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Parent Case Info
This application is a continuation of copending U.S. patent application Ser. No. 893,394, filed on Aug. 5, 1986 now abandoned.
US Referenced Citations (4)
Continuations (1)
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893394 |
Aug 1986 |
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