Claims
- 1. A friction stir welding method for welding a first member and a second member, the first member comprising a plate and a protrusion protruding substantially parallel to said plate from the end portion of said plate and arranged at a displaced position from one surface of said plate, said friction stir welding method comprising the steps of:
superimposing the end portion of said second member on said protrusion, and abutting said end portion of said second member against the end portion of said plate; and friction stir welding the abutted portions using a rotary tool having a small-diameter portion mounted on the end of a large-diameter portion, by inserting said small-diameter portion into a joint between said abutted portions; wherein the rotary tool is positioned so that when observed along the direction in which said tool moves along said joint, the distance from the tip portion of said inserted small-diameter portion to the surface of said first member opposite from said large-diameter portion is greater on the right side of the axial center of said rotary tool than on the left side thereof; and said rotary tool is rotated in a clockwise direction as observed from the large-diameter portion side while being moved along said joint.
- 2. A friction stir welding method according to claim 1, wherein said protrusion extends to said right side of the welding line as seen in the direction of movement of said tool when performing said friction stir welding.
- 3. A friction stir welding method according to claim 1, wherein the tip portion of said small-diameter portion is inserted to said protrusion when performing said friction stir welding.
- 4. A friction stir welding method for welding a hollow member comprising two substantially parallel face plates, a connecting plate for connecting said two face plates, a protrusion protruding substantially parallel to one face plate from said connecting plate, and a portion recessed both from the outer side of said one face plate and from the protruded direction of said protrusion at the joint portion joining said one face plate, said connecting plate and said protrusion; said friction stir welding method comprising the steps of:
superimposing the end portion of a second member on said recessed portion, while abutting said end portion of said second member against the end portion of said one face plate; and friction stir welding the abutted portions using a rotary tool having a small-diameter portion mounted on the end of a large-diameter portion, by inserting said small-diameter portion into the joint between said abutted portions and said protrusion; wherein said protrusion is positioned on the right side of the axial center of said rotary tool as seen when said rotary tool is observed from the direction in which said tool moves along said joint; the distance from the tip portion of said inserted small-diameter portion to the surface of said hollow member opposite from said large-diameter portion is greater on the right side of the axial center of said rotary tool having said protrusion than on the left side thereof, when observed from the direction in which said tool moves; and said rotary tool is rotated in a clockwise direction as observed from the large-diameter portion side while being moved along said joint.
- 5. A friction stir welding method for welding a first member and a second member, the first member comprising a plate and a protrusion protruding substantially parallel to said plate from the end portion of said plate and arranged at a displaced position from one surface of said plate, said friction stir welding method comprising the steps of:
superimposing the end portion of said second member on said protrusion, while abutting said end portion of said second member against the end portion of said plate; and friction stir welding the abutted portions using a rotary tool having a small-diameter portion mounted on the end of a large-diameter portion, by inserting said small-diameter portion into the joint between said abutted portions; wherein the rotary tool is positioned so that when observed along the direction in which said tool moves along said abutted portions, the distance from the tip portion of said inserted small-diameter portion to the surface of said first member opposite from said large-diameter portion is greater on the left side of the axial center of said rotary tool than on the right side thereof; and said rotary tool is rotated in a counter-clockwise direction as observed from the large-diameter portion side while being moved along said abutted portions.
- 6. A friction stir welding method according to claim 5, wherein said protrusion extends to said left side of the welding line as seen in the direction of movement of said tool when performing said friction stir welding.
- 7. A friction stir welding method according to claim 5, wherein the tip portion of said small-diameter portion is inserted to said protrusion when performing said friction stir welding.
- 8. A friction stir welding method for welding a hollow member comprising two substantially parallel face plates, a connecting plate for connecting said two face plates, a protrusion protruding substantially parallel to one face plate from said connecting plate, and a portion recessed both from the outer side of said one face plate and from the protruded direction of said protrusion at the joint portion joining said one face plate, said connecting plate and said protrusion; said friction stir welding method comprising the steps of:
superimposing the end portion of a second member on said recessed portion, while abutting said end portion of said second member against the end portion of said one face plate; and friction stir welding the abutted portions using a rotary tool having a small-diameter portion mounted on the end of a large-diameter portion, by inserting said small-diameter portion in the joint between said abutted portions and said protrusion; wherein said protrusion is positioned on the left side of the axial center of said rotary tool as seen when said rotary tool is observed from the direction in which said tool moves along said joint; the distance from the tip portion of said inserted small-diameter portion to the surface of said hollow member opposite from said large-diameter portion is greater on the left side of the axial center of said rotary tool having said protrusion than on the right side thereof, when observed from the direction in which said tool moves; and said rotary tool is rotated in a counter-clockwise direction as observed from the large-diameter portion side while being moved along said joint.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-328080 |
Oct 2000 |
JP |
|
Parent Case Info
[0001] This application is a Continuation application of Ser. No. 09/791,830 filed Feb. 26, 2001, the contents of which are incorporated herein by reference in their entirety.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09791830 |
Feb 2001 |
US |
Child |
10218573 |
Aug 2002 |
US |