LOCOMOTIVE HEAT EXCHANGER APPARATUS AND METHOD OF MANUFACTURING A HEAT EXCHANGER APPARATUS
A locomotive heat exchanger apparatus includes a header having at least one opening, at least one tubular member joined to the header and having an interior passageway in fluid communication with the at least one opening, and a plurality of radial fins extending from the at least one tubular member. The tubular member and the plurality of radial fins may be formed as a unitary component via additive manufacturing without welding or interference fit.
1 . A locomotive heat exchanger apparatus, comprising:
a header having at least one opening;
at least one tubular member joined to the header and having an interior passageway in fluid communication with the at least one opening; and
a plurality of radial fins extending from the at least one tubular member;
wherein the tubular member and the plurality of radial fins are formed as a unitary component via additive manufacturing without welding or interference fit.
2 . The heat exchanger apparatus of claim 1 , further comprising:
a fillet formed at an interface between each radial fin and the tubular member.
3 . The heat exchanger apparatus of claim 1 , further comprising:
a plurality of corrugations formed in the plurality of radial fins;
wherein the plurality of corrugations are formed via additive manufacturing.
4 . The heat exchanger apparatus, of claim 1 , wherein:
the header has a wall thickness of at least 2 millimeters; and
the at least one tubular member has a wall thickness of no more than 1 millimeter.
5 . The heat exchanger apparatus of claim 4 , further comprising:
at least one of a groove, a dimple and/or a projection formed in the tubular member;
wherein the at least one of the groove, the dimple and/or the projection is formed via additive manufacturing.
6 . The heat exchanger apparatus of claim 4 , wherein:
the at least one tubular member includes an end portion received in the at least one opening in the header; and
wherein the end portion includes an end preparation configured to facilitate joining of the at least one tubular member to the header.
7 . The heat exchanger apparatus of claim 6 , wherein:
the end preparation is one of a series of slots, a plurality of radial projections, or a plurality of threads.
8 . The heat exchanger apparatus of claim 7 , wherein:
the end preparation is formed via additive manufacturing.
9 . The heat exchanger apparatus of claim 1 , wherein:
the header and the tubular member are formed as a unitary component via additive manufacturing without welding or interference fit.
10 . The heat exchanger apparatus of claim 1 , wherein:
the at least one tubular member includes a core section formed via extrusion and an outer layer formed via additive manufacturing;
wherein the outer layer and the plurality of fins form a unitary component devoid of any weld or interference fit.
11 . The heat exchanger apparatus of claim 10 , wherein:
the outer layer includes an end portion dimensioned to be received in the at least one opening in the header; and
wherein the end portion of the outer layer includes one of a series of slots, a plurality of radial projections, or a plurality of threads configured to facilitate joining of the at least one tubular member to the header.
12 . The heat exchanger apparatus of claim 1 , further comprising:
a second header having at least one second opening, the second header being positioned parallel and spaced from the header;
wherein the at least one tubular member includes a first end having a first threaded portion formed via additive manufacturing and a second end having a second threaded portion formed via additive manufacturing;
wherein the first threaded portion is one of a right hand threaded portion or a left hand threaded portion;
wherein the second threaded portion is the other of the right hand threaded portion or the left hand threaded portion; and
wherein the first threaded portion is threadedly received in the opening in the header and the second threaded portion is threadedly received in the second opening in the second header.
13 . The heat exchanger apparatus of claim 1 , wherein:
the at least one tubular member has a cross-sectional area that varies along a length of the at least one tubular member.
14 . The heat exchanger apparatus of claim 13 , wherein:
the at least one tubular member has a cross-sectional area adjacent to the header that is greater than a cross-sectional area at a point distal from the header.
15 . The heat exchanger apparatus of claim 1 , wherein:
the interior passageway of the at least one tubular member has an inside diameter that varies along a length of the at least one tubular member.
16 . A locomotive heat exchanger apparatus, comprising:
a header having plural openings and a wall thickness of at least 2 millimeters; and
plural finned tubes joined to the header and having respective interior passageways in fluid communication with the openings;
wherein each finned tube of the plural finned tubes respectively comprises:
a tubular member defining a respective one of the interior passageways and having a wall thickness of no more than 1 millimeter;
a plurality of radial fins extending from the tubular member, wherein one or more of the radial fins include a respective plurality of corrugations formed therein; and
one or more fillets formed at interfaces between the radial fins and the tubular member;
wherein the finned tubes are formed as monolithic components.
17 . The heat exchanger apparatus of claim 16 , wherein the finned tubes are formed using additive manufacturing, without welding or interference fits between the tubular members, the fins, and the fillets.
18 . A locomotive heat exchanger apparatus, comprising:
a header having plural openings;
plural tubular members joined to the header and having respective interior passageways in fluid communication with the openings; and
a respective plurality of radial fins extending from each of the tubular members;
wherein the tubular members and the radial fins are formed as respective monolithic components.
19 . The heat exchanger apparatus of claim 18 , further comprising:
plural fillets formed at respective interfaces between the radial fin and the tubular members; and
a plurality of corrugations formed in the each of the plurality of radial fins, wherein the plurality of corrugations are formed via additive manufacturing;
wherein the header has a wall thickness of at least 2 millimeters and the tubular members have respective wall thicknesses of no more than 1 millimeter.
20 . The heat exchanger apparatus of claim 18 , wherein the tubular members and the radial fins are formed via additive manufacturing without welding or interference fit.
21 - 28 . (canceled)