IP Library Granted Patent US 7,895,749
Granted Patent B2
US 7,895,749 · App. 12/382,962 · Granted Mar 1, 2011

Method of manufacturing heat exchanger

Assignee: Valeo Thermal Systems Japan Corporation
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Quick Facts
Patent No.
US 7,895,749
App. No.
12/382,962
Granted
Mar 1, 2011
Kind
B2
Abstract

A heat exchange tube is formed by using a sheet member not clad with a brazing material layer, with bonding regions at which ends of the sheet member are overlapped and brazed by using a brazing material. This structure reduces the extent to which the brazing material becomes dispersed while the heat exchange tube is brazed and the likelihood of dissolution due to erosion, which makes it possible to assure the desired product quality, such as corrosion resistance, even when a tube material with a smaller wall thickness is used.

Claims (29)

1. A method for manufacturing a heat exchanger, said method comprising:

forming heat exchange tubes of sheet material not having brazing material thereon, the heat exchange tubes having longitudinal bonding regions whereat edges of the sheet material overlap;

assembling a heat exchanger by connecting a first tank having a first brazing layer disposed on a surface thereof with a second tank having a second brazing layer disposed on a surface thereof via a plurality of the heat exchange tubes such that the first tank communicates with the second tank via the heat exchange tubes, each of the plurality of heat exchange tubes having a first end portion fixed to the first tank on the surface having the first brazing layer and a second end portion fixed to the second tank on the surface having the second brazing layer;

brazing the heat exchanger so as to cause capillary action to draw brazing material from the first brazing layer and the second brazing layer into the longitudinal bonding regions;

disposing a plurality of outer fins in an alternating pattern with the plurality of heat exchange tubes so that no edges of the longitudinal bonding regions contact the plurality of outer fins.

2. The method for manufacturing a heat exchanger according to claim 1 , further comprising:

forming the first tank and the second tank by extrusion molding;

disposing the first brazing layer on the surface of the first tank by attaching a brazing sheet thereto; and

disposing the second brazing layer on the surface of the second tank by attaching a brazing sheet thereto.

3. The method for manufacturing a heat exchanger according to claim 1 , further comprising:

forming the first tank and the second tank by extrusion molding;

disposing the first brazing layer on the surface of the first tank by spraying brazing material thereon; and

disposing the second brazing layer on the surface of the second tank by spraying brazing material thereon.

4. A method for manufacturing a heat exchanger, said method comprising:

forming heat exchange tubes of sheet material not having brazing material thereon, the heat exchange tubes having longitudinal bonding regions whereat edges of the sheet material overlap;

forming a first tank and a second tank by extrusion molding;

assembling a heat exchanger by connecting the first tank with the second tank via a plurality of the heat exchange tubes such that the first tank communicates with the second tank via the heat exchange tubes;

disposing brazing material as a first brazing layer on the first tank by attaching a brazing sheet thereto;

disposing brazing material as a second brazing layer on the second tank by attaching a brazing sheet thereto;

brazing the heat exchanger so as to braze the bonding regions with brazing material from the first brazing layer and the second brazing layer; and

disposing a plurality of outer fins in an alternating pattern with the plurality of heat exchange tubes so that no edges of the longitudinal bonding regions contact the plurality of outer fins.

5. A method for manufacturing a heat exchanger, said method comprising:

forming heat exchange tubes of sheet material not having brazing material thereon, the heat exchange tubes having longitudinal bonding regions whereat edges of the sheet material overlap;

forming a first tank and a second tank by extrusion molding;

assembling a heat exchanger by connecting the first tank with the second tank via a plurality of the heat exchange tubes such that the first tank communicates with the second tank via the heat exchange tubes;

disposing brazing material as a first brazing layer on the first tank by spraying brazing material thereon;

disposing brazing material as a second brazing layer on the second tank by spraying brazing material thereon;

brazing the heat exchanger so as to braze the bonding regions with brazing material from the first brazing layer and the second brazing layer; and

disposing a plurality of outer fins in an alternating pattern with the plurality of heat exchange tubes so that no edges of the longitudinal bonding regions contact the plurality of outer fins.

Assignments (1)
CHANGE OF NAME Recorded Jan 25, 2011
From: ZEXEL VALEO CLIMATE CONTROL CORPORATION
To: VALEO THERMAL SYSTEMS JAPAN CORPORATION
Reel/Frame 025688/0452 →
Priority Claims (1)
JP 2003-040752 · Feb 19, 2003 · national
Continuity (2)
Division 10546069
Related Publication 20090188111A1 · Jul 30, 2009