Claims
- 1. A friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3),
wherein joining of said butted portion (3) is performed while pressing joining-direction forward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first forward pressing roller (11) and a second forward pressing roller (11), respectively.
- 2. A friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3),
wherein joining of said butted portion (3) is performed while pressing joining-direction backward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first backward pressing roller (21) and a second backward pressing roller (22), respectively.
- 3. A friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3),
wherein joining of said butted portion (3) is performed while pressing joining-direction forward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first forward pressing roller (11) and a second forward pressing roller (11), respectively, and pressing joining-direction backward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first backward pressing roller (21) and a second backward pressing roller (22), respectively.
- 4. The friction agitation joining method as recited in claim 1 or 3, wherein said joining of said butted portion (3) is performed while pressing at least a portion near said butted portion at said joining-direction forward side of said first joining member (1) with respect to a probe inserted position and at least a portion near said butted portion at said joining-direction forward side of said second joining member (2) with respect to a probe inserted position from said upper surface sides by said first forward pressing roller (11) and said second forward pressing roller (12), respectively.
- 5. The friction agitation joining method as recited in any one of claims 1 to 3, wherein said joining of said butted portion (3) is performed while pressing a joined butted portion (3′) of said first and second joining members (1, 2) from said upper surface sides by a third backward pressing roller (23) with a tapered periphery.
- 6. The friction agitation joining method as recited in claim 5, wherein said periphery of said third backward pressing roller (23) is cooled.
- 7. The friction agitation joining method as recited in any one of claims 1 to 3, wherein said joining of said butted portion (3) is performed while cooling a lower surface of a joined butted portion (3′) of said first and second joining members (1, 2) by keeping a cooled periphery of a cooling roller (32) in contact with said lower surface.
- 8. The friction agitation joining method as recited in claim 1 or 3, wherein said first forward pressing roller (11) and said second forward pressing roller (12) are separate members, and
wherein said joining of said butted portion (3) is performed in a state in which an axis (P1, P2) of at least one of rollers including said first forward pressing roller (11) and said second forward pressing roller (12) is inclined with respect to a butting direction (N) of said joining members (1, 2) within a plane perpendicular to a joining direction (WD).
- 9. The friction agitation joining method as recited in claim 1 or 3, wherein said first forward pressing roller (11) and said second forward pressing roller (12) are separate members, and
wherein said joining of said butted portion (3) is performed while changing at least one of an inclination angle (β1) of an axis (P1) of said first forward pressing roller (11) with respect to a butting direction (N) of said first joining member (1) within a plane perpendicular to a joining direction (WD) and an inclination angle (β2) of an axis (P2) of said second forward pressing roller (11) with respect to said butting direction (N) of said second joining member (2) within a plane perpendicular to a joining direction (WD) based on a measured value of a characteristic concerning a joint state of a joined butted portion (3′) of said first and second joining members (1, 2).
- 10. The friction agitation joining method as recited in claim 1 or 3, wherein said first forward pressing roller (11) and said second forward pressing roller (12) are separate members, and
wherein said joining of said butted portion (3) is performed in a state in which an axis (P1, P2) of at least one of rollers including said first forward pressing roller (11) and said second forward pressing roller (12) is inclined with respect to a butting direction (N) of said joining members (1, 2) within a plane parallel to upper surfaces of said joining members (1, 2) so that force in a butting direction (N) is given to said joining members (1, 2).
- 11. The friction agitation joining method as recited in any one of claims 1 to 3, wherein said joining of said butted portion (3) is performed in a state in which said joining-direction forward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position is supported from lower surface sides thereof by a first forward supporting roller (31a) and a second forward supporting roller (31b) separated from said first forward supporting roller (31a), respectively, and an axis (S1, s2) of at least one of rollers including said first forward supporting roller (31a) and said second forward supporting roller (31b) is inclined with respect to a butting direction (N) of said joining members (1, 2) within a plane parallel to lower surfaces of said joining members (1, 2) so that force in a butting direction (N) is given to said joining members (1, 2).
- 12. The friction agitation joining method as recited in any one of claims 1 to 3, wherein said joining of said butted portion (3) is performed in a state in which said joining-direction backward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position is supported from lower surface sides thereof by a first backward supporting roller (32a) and a second backward supporting roller (32b) separated from said first backward supporting roller (32a), respectively.
- 13. The friction agitation joining method as recited in any one of claims 1 to 3, wherein said joining of said butted portion (3) is performed in a state in which tension in a direction parallel to a joining direction (WD) is given to at least one of said first joining member (1) and said second joining member (2).
- 14. The friction agitation joining method as recited in any one of claims 1 to 3, wherein said joining of said butted portion (3) is performed while heating a lower surface of a probe inserted position of said butted portion (3) or a lower surface of a joining-direction forward side of said probe inserted position.
- 15. The friction agitation joining method as recited in any one of claims 1 to 3, wherein said joining of said butted portion (3) is performed while relatively moving said first and second joining members (1, 2) with respect to a rotating sub-probe (47) of a sub-joining tool (45) inserted into said butted portion (3) of said first and second joining members (1, 2) or a joined butted portion (3′) from a lower surface side thereof so that said probe (42) and said sub-probe (47) advance along said butted portion (3).
- 16. A friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from upper surface sides thereof so that said probe (42) advances along said butted portion (3),
wherein said joining of said butted portion (3) is performed while heating a lower surface of a probe inserted position of said butted portion (3) or a lower surface of a joining-direction forward side of said probe inserted position.
- 17. The friction agitation joining method as recited in claim 16, wherein said heating is performed by heat conduction from a heated periphery of a backing roller (33) disposed opposite to said probe (42) at a lower surface side of said joining members (1, 2).
- 18. A friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with upper and lower surfaces being flush with each other by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from upper surface sides thereof so that said probe (42) advances along said butted portion (3),
wherein said joining of said butted portion (3) is performed while relatively moving said first and second joining members (1, 2) with respect to a rotating sub-probe (47) of a sub-joining tool (45) inserted into said butted portion (3) of said first and second joining members (1, 2) or a joined butted portion (3′) from a lower surface side thereof so that said probe (42) and said sub-probe (47) advance along said butted portion (3).
- 19. The friction agitation joining method as recited in claim 18, wherein an insertion depth (δ) of said sub-probe (47) is regulated within the range of from 0.1 to 0.5 mm.
- 20. A method for manufacturing joined butted members by performing a friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3),
wherein joining of said butted portion (3) is performed while pressing joining-direction forward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first forward pressing roller (11) and a second forward pressing roller (11), respectively.
- 21. A method for manufacturing joined butted member by performing a friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3),
wherein joining of said butted portion (3) is performed while pressing joining-direction backward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first backward pressing roller (21) and a second backward pressing roller (22), respectively.
- 22. A method for manufacturing joined butted members by performing a friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3),
wherein joining of said butted portion (3) is performed while pressing joining-direction forward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first forward pressing roller (11) and a second forward pressing roller (11), respectively, and pressing joining-direction backward sides of said first joining member (1) and said second joining member (2) with respect to a probe inserted position from said upper surface sides by a first backward pressing roller (21) and a second backward pressing roller (22), respectively.
- 23. The method for manufacturing joined butted members as recited in any one of claims 20 to 22, wherein said joining of said butted portion (3) is performed while heating a lower surface of a probe inserted position of said butted portion (3) or a lower surface of a joining-direction forward side of said probe inserted position.
- 24. The method for manufacturing joined butted members as recited in any one of claims 20 to 22, wherein said joining of said butted portion (3) is performed while relatively moving said first and second joining members (1, 2) with respect to a rotating sub-probe (47) of a sub-joining tool (45) inserted into said butted portion (3) of said first and second joining members (1, 2) or a joined butted portion (3′) from a lower surface side thereof so that said probe (42) and said sub-probe (47) advance along said butted portion (3).
- 25. A method for manufacturing joined butted members by performing a friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from upper surface sides thereof so that said probe (42) advances along said butted portion (3),
wherein said joining of said butted portion (3) is performed while heating a lower surface of a probe inserted position of said butted portion (3) or a lower surface of a joining-direction forward side of said probe inserted position.
- 26. A method for manufacturing joined butted members by performing a friction agitation joining method for joining a first joining member (1) and a second joining member (2) butted against each other with upper and lower surfaces being flush with each other by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from upper surface sides thereof so that said probe (42) advances along said butted portion (3),
wherein said joining of said butted portion (3) is performed while relatively moving said first and second joining members (1, 2) with respect to a rotating sub-probe (47) of a sub-joining tool (45) inserted into said butted portion (3) of said first and second joining members (1, 2) or a joined butted portion (3′) from a lower surface side thereof so that said probe (42) and said sub-probe (47) advance along said butted portion (3).
- 27. A friction agitation joining apparatus for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3), comprising:
a first forward pressing roller (11) for pressing joining-direction forward side of said first joining member (1) with respect to a probe inserted position from upper surface side thereof; and a second forward pressing roller (12) for pressing joining-direction forward side of said second joining member (2) with respect to said probe inserted position from upper surface side thereof.
- 28. A friction agitation joining apparatus (80) for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3), comprising:
a first backward pressing roller (21) for pressing joining-direction backward side of said first joining member (1) with respect to a probe inserted position from upper surface side thereof; and a second backward pressing roller (22) for pressing joining-direction backward side of said second joining member (2) with respect to said probe inserted position from upper surface side thereof.
- 29. A friction agitation joining apparatus (80) for joining a first joining member (1) and a second joining member (2) butted against each other with a level difference formed at upper surface sides thereof by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3), comprising:
a first forward pressing roller (11) for pressing joining-direction forward side of said first joining member (1) with respect to a probe inserted position from upper surface side thereof; a second forward pressing roller (12) for pressing joining-direction forward side of said second joining member (2) with respect to said probe inserted position from upper surface side thereof; a first backward pressing roller (21) for pressing joining-direction backward side of said first joining member (1) with respect to a probe inserted position from upper surface side thereof; and a second backward pressing roller (22) for pressing joining-direction backward side of said second joining member (2) with respect to said probe inserted position from upper surface side thereof.
- 30. The friction agitation joining apparatus as recited in any one of claims 27 to 29, further comprising a third backward pressing roller (23) having a tapered periphery for pressing a joined butted portion (3′) of said joining members (1, 2) from surface sides thereof.
- 31. The friction agitation joining apparatus as recited in claim 30, wherein said periphery of said third backward pressing roller (23) is cooled.
- 32. The friction agitation joining apparatus as recited in any one of claims 27 to 29, further comprising a cooling roller (32) for cooling a lower surface of a joined butted portion (3′) of said first and second joining members (1, 2) by keeping a cooled periphery of said cooling roller (32) in contact with said lower surface.
- 33. The friction agitation joining apparatus as recited in claim 27 or 29, wherein said first forward pressing roller (11) and said second forward pressing roller (12) are separate members, and further comprising an inclination angle changing apparatus (60a, 60b) for changing an inclination angle (β1, β2) of an axis (P1, P2) of at least one of rollers including said first forward pressing roller (11) and said second forward pressing roller (12) with respect to a butting direction (N) of the joining members within a plane perpendicular to a joining direction (WD).
- 34. The friction agitation joining apparatus as recited in claim 33, further comprising:
a measuring device (50) for measuring a characteristic concerning a joint state of a joined butted portion (3′) of said joining members; and a controller (61a, 61a) for controls an operation of said inclination angle changing apparatus (60a, 60b) based on a measured value obtained by said measuring device (50).
- 35. The friction agitation joining apparatus as recited in claim 27 or 29, wherein said first forward pressing roller (11) and said second forward pressing roller (12) are separate members, and further comprising an inclination angle changing apparatus (60a, 60b) for changing an inclination angle (α1, α2) of an axis (P1, P2) of at least one of rollers including said first forward pressing roller (11) and said second forward pressing roller (12) with respect to a butting direction (N) of the joining members within a plane parallel to upper surfaces of said joining members.
- 36. The friction agitation joining apparatus as recited in claim 35, further comprising:
a measuring device (50) for measuring a characteristic concerning a joint state of a joined butted portion (3′) of said joining members; and a controller (61a, 61a) for controls an operation of said inclination angle changing apparatus (60a, 60b) based on a measured value obtained by said measuring device (50).
- 37. The friction agitation joining apparatus as recited in any one of claims 27 to 29, further comprising:
a first forward supporting roller (31a) for supporting said joining-direction forward side of said first joining member (1) with respect to a probe inserted position from a lower surface side thereof; a second forward supporting roller (31b) for supporting said joining-direction forward side of said second joining member (2) with respect to a probe inserted position from a lower surface side thereof, said second forward supporting roller (31b) being separated from said first forward supporting roller (31a); and an inclination angle changing apparatus (65a, 65b) for changing an inclination angle (γ1, γ2) of an axis (S1, S2) of at least one of rollers including said first forward supporting roller (31a) and said second forward supporting roller (31b) with respect to a butting direction (N) of the joining members within a plane parallel to lower surfaces of said joining members.
- 38. The friction agitation joining apparatus as recited in any one of claims 27 to 29, further comprising:
a first backward supporting roller (32a) for supporting said joining-direction backward side of said first joining member (1) with respect to a probe inserted position from a lower surface side thereof; and a second backward supporting roller (32b) for supporting said joining-direction forward side of said second joining member (2) with respect to a probe inserted position from a lower surface side thereof, said second backward supporting roller (32b) being separated from said first backward supporting roller (32a).
- 39. The friction agitation joining apparatus as recited in any one of claims 27 to 29, further comprising a tension device for giving tension in a direction parallel to a joining direction (WD) to at least one of said first joining member (1) and said second joining member (2).
- 40. The friction agitation joining apparatus as recited in any one of claims 27 to 29, further comprising a heating device (91, 92, 93) for heating a lower surface of a probe inserted position of said butted portion (3) or a lower surface of a joining-direction forward side of said probe inserted position.
- 41. The friction agitation joining apparatus as recited in any one of claims 27 to 29, further comprising a sub-joining tool (45) having a rotatable sub-probe (47), wherein said rotating sub-probe (47) is inserted into said butted portion (3) or a joined butted portion (3′) when said butted portion (3) is joined or is being joined to join a root remaining portion (R) produced at said joined butted portion (3′) of said joining members (1, 2).
- 42. A friction agitation joining apparatus (80) for joining a first joining member (1) and a second joining member (2) butted against each other by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from said upper surface sides so that said probe (42) advances along said butted portion (3), comprising:
a heating device (91, 92, 93) for heating a lower surface of a probe inserted position of said butted portion (3) or a lower surface of a joining-direction forward side of said probe inserted position.
- 43. A friction agitation joining apparatus (80) for joining a first joining member (1) and a second joining member (2) butted against each other with upper and lower surfaces being flush with each other by relatively moving said first and second joining members (1, 2) with respect to a rotating probe (42) of a joining tool (40) inserted into a butted portion (3) of said first and second joining members (1, 2) from upper surface sides thereof so that said probe (42) advances along said butted portion (3), comprising:
a sub-joining tool (45) having a rotatable sub-probe (47), wherein said rotating sub-probe (47) is inserted into said butted portion (3) or a joined butted portion (3′) when said butted portion (3) is joined or is being joined to join a root remaining portion (R) produced at said joined butted portion (3′) of said joining members (1, 2).
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-63267 |
Mar 2001 |
JP |
|
2001-63293 |
Mar 2001 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to Japanese Patent Applications Nos. 2001-63267 and 2001-63293 each filed on Mar. 7, 2001, and U.S. Provisional Applications Nos.60/303,146 and 60/303,158 each filed on Jul. 6, 2001 the disclosure of which is incorporated by reference in its entirety.
[0002] This application is an application filed under 35 U.S.C. §111(a) claiming the benefit pursuant to 35 U.S.C. §119(e)(1) of the filing data of Provisional Applications Nos.60/303,146 and 60/303,158 each filed on Jul. 6, 2001 pursuant to 35 U.S.C. §111(b).
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP02/02157 |
3/7/2002 |
WO |
|