IP Library Granted Patent US 9,821,419
Granted Patent B2
US 9,821,419 · App. 14/433,183 · Granted Nov 21, 2017

Method for manufacturing heat exchanger plate and method for friction stir welding

Inventors: Hisashi Hori (Shizuoka, JP); Nobushiro Seo (Shizuoka, JP)
Assignee: NIPPON LIGHT METAL COMPANY, LTD.
B23P15/26B23K20/002B23K20/122B23K20/129B23K20/1265B23K20/24B23K2201/14B23K2203/10Y10T29/4935
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Quick Facts
Patent No.
US 9,821,419
App. No.
14/433,183
Granted
Nov 21, 2017
Kind
B2
Abstract

The method for manufacturing a heat exchanger plate includes a lid groove closing process to insert a lid plate into a lid groove formed at a periphery of a concave groove opening to a surface of a base member; and a primary joining process to perform friction stirring while relatively moving a primary joining rotary tool equipped with a stirring pin along a butting portion of a side wall of the lid groove and a side surface of the lid plate, and in the primary joining process, the rotating stirring pin is inserted into the butting portion, and the friction stirring is performed in a state of only the stirring pin being in contact with the base member and the lid plate.

Claims (14)

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

a closing process to overlay a lid plate on a front surface of a base member to cover a concave portion or a concave groove opening to the front surface of the base member;

a primary joining process to insert a rotary tool equipped with a stirring pin from a front surface of the lid plate, and to move the rotary tool along an overlapped portion of the front surface of the base member and a back surface of the lid plate; and

a deburring process to remove burrs generated by friction stirring using the rotary tool after finishing the primary joining process,

wherein the stirring pin has a tapered shape so as to have a smaller diameter as it goes away from a base part of the stirring pin and has a continuous spiral groove formed on an outer peripheral surface, the spiral groove configured to rotate in a counter-clockwise direction as it goes downward when the rotary tool is used for rotating in the clockwise direction, and the spiral groove is configured to rotate in the clockwise direction as it goes downward when the rotary tool is used for rotating in the counter-clockwise direction, and

wherein, in the primary joining process, friction stirring is performed to the overlapped portion with the base part of the stirring pin being exposed in a state of only the stirring pin of the rotary tool being in contact with both of the base member and the lid plate or with only the lid plate while plastically fluidized material does not flow into the concave portion or the concave groove.

2. A method for manufacturing a heat exchanger plate, comprising:

a closing process to overlay a lid plate on a front surface of a base member to cover a concave portion or a concave groove opening to the front surface of the base member;

a primary joining process to insert a rotary tool equipped with a stirring pin from a back surface of the base member, and to move the rotary tool along an overlapped portion of the front surface of the base member and a back surface of the lid plate; and

a deburring process to remove burrs generated by friction stirring using the rotary tool after finishing the primary joining process,

wherein the stirring pin has a tapered shape so as to have a smaller diameter as it goes away from a base part of the stirring pin and has a continuous spiral groove formed on an outer peripheral surface, the spiral groove configured to rotate in a counter-clockwise direction as it goes downward when the rotary tool is used for rotating in the clockwise direction, and the spiral groove is configured to rotate in the clockwise direction as it goes downward when the rotary tool is used for rotating in the counter-clockwise direction, and

wherein, in the primary joining process, friction stirring is performed to the overlapped portion with the base part of the stirring pin being exposed in a state of only the stirring pin of the rotary tool being in contact with both of the base member and the lid plate or with only the base member while plastically fluidized material does not flow into the concave portion or the concave groove.

3. The method for manufacturing a heat exchanger plate according to claim 1 , further comprising a preliminary joining process to preliminarily join the overlapped portion before the primary joining process.

4. The method for manufacturing a heat exchanger plate according to claim 2 , further comprising a preliminary joining process to preliminarily join the overlapped portion before the primary joining process.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2015
From: HORI, HISASHI; SEO, NOBUSHIRO
To: NIPPON LIGHT METAL COMPANY, LTD.
Reel/Frame 035321/0423 →
Priority Claims (2)
JP 2012-224718 · Oct 10, 2012 · national
JP 2013-019354 · Feb 4, 2013 · national
Continuity (1)
Related Publication 20150273637A1 · Oct 1, 2015