Claims
- 1. A method of hydroforming a round tube where the hydroformed diameter is less than the said round tube length and/or the area of the said hydroformed cross section of a multi sided or irregular shape perpendicular to the said tube axis is less than the said tube cross sectional area along the said tube axis, comprising the steps of:
a. Providing a first die member having an internal shape same as the said round tube outer shape of the first side of the said round tube perpendicular to the said round tube axis such that the complete cylindrical surface of the first side of the said round tube is contained inside the said first die member. b. The first die member is further having an internal cavity having the same shape as the desired formed shape of the first side of the said tube desired formed shape perpendicular to the said round tube axis. c. Providing a second die member having an internal shape same as the said round tube outer shape of the second side of the said round tube perpendicular to the said round tube axis such that the complete cylindrical surface of the second side of the said round tube is contained inside the said second die member d. The second die member is further having an internal cavity having the same shape as the desired formed shape of the second side of the said tube desired formed shape perpendicular to the said round tube axis e. Where the said first die member and the said second die member are movable in the direction of the said round tube axis between an open and closed positions. f. Providing a set of movable tube nests between the said first and second die members when the said first and second die members are in an opened position. g. Where the said first and second die members are moved to an opened position and the said round tube is placed on the said movable tube nests. h. Where the said first and second die members are moved to a closed position containing the said round tube. i. Where the said movable tube nests are moved simultaneously with the movement of the said first and second die members in a direction perpendicular to the direction of movement of the said first and second die members such that the said movable tube nests will not interfere with the said first and second die members. j. Where the said round tube ends are sealed and hydraulic pressure source is connected to the interior of the said round tube and thereby expanding the said round tube so as to conform to the shape of the said first and second die members cavities. k. Where axial force is applied to both ends of the said round tube during the said tube expansion as to allow flow of material into the said first and second die members cavities. l. Where the said first and second die members are moved to the said open position after the said expansion is complete such that the expanded part is removed from the said first and second die members. m. And where the directions of opening and closing of the said first and second die members are in the direction of the said round tube axis such that the amount of force necessary to hold the said first and second die members in a closed position during said step of expanding, is kept to a minimum.
- 2. The method according to claim 1, where one die member of the said die is fixed while the other die member is movable such that the force necessary to hold the said die members in closed position is applied from one side only.
- 3. The method according to claim 1, where the part of the said round tube inside the said first and second die members cavities, is formed into a serpentine shape such that a greater length of the said round tube is placed inside the said first and second die members cavities in the said closed position such that a greater volume of the said round tube material is placed inside the said first and second die members cavities in the said closed position such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second die members cavities.
- 4. The method according to claim 1, where the part of the said round tube inside the said first and second die members cavities, is formed into a helical shape such that a greater length of the said round tube is placed inside the said first and second die members cavities in the said closed position such that a greater volume of the said round tube material is placed inside the said first and second die members cavities in the said closed position such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second die members cavities.
- 5. The method according to claim 4, where at least one side of the said round tube and the said die members are allowed to rotate freely around the said round tube axis such that the said helical shaped part of the said round tube is allowed to unwind during the said expansion.
- 6. The method according to claim 1, where the said die cavity is not concentric with the said round tube axis and where the said round tube is bent such that the middle section of the said round tube is concentric with the said die cavity, such that the said tube expansion of the said middle section of the said round tube is uniform, such that wall thinning of the said expanded section of the said round tube after the said tube expansion is uniform.
- 7. The method according to claims 1 where an elastic ring is placed inside the first die member or the second die member or both such that the said elastic ring will support the outside surface of the said expanded section of the said round tube during the said expansion, such that larger pressure is applied to the walls of the said round tube without wrinkling of the said expanded section of the said round tube, such that the reduction in the said round tube wall thickness is kept to a minimum after the said expansion.
- 8. A method of hydroforming a round tube where the hydroformed diameter is less than the said round tube length and/or the area of the said hydroformed cross section of a multi sided or irregular shape perpendicular to the said tube axis is less than the said tube cross sectional area along the said tube axis, comprising the steps of:
a. Providing a first die member having an internal shape same as the said round tube outer shape of the first side of the said round tube perpendicular to the said round tube axis such that the complete cylindrical surface of the first side of the said round tube is contained inside the said first die member. b. The first die member is further having an internal cavity having the same shape as the desired formed shape of the first side of the said tube desired formed shape perpendicular to the said round tube axis. c. Providing a second die member having an internal shape same as the said round tube outer shape of the second side of the said round tube perpendicular to the said round tube axis such that the complete cylindrical surface of the second side of the said round tube is contained inside the said second die member d. The second die member is further having an internal cavity having the same shape as the desired formed shape of the second side of the said tube desired formed shape perpendicular to the said round tube axis e. Where the said first die member and the said second die members are movable in the direction of the said round tube axis between an open and closed positions. f. Providing a set of movable tube nests between the said first and second die members when the said first and second die members are in an opened position. g. Where the said first and second die members are moved to an opened position and the said round tube is placed on the said movable tube nests. h. Where the said first and second die members are moved to an intermediate position such that a small gap exists between the said first and second die members such that the length of the said round tube inside the cavities of the said first and second die members and the said gap is greater than the length of the said first and second die members cavities. i. Where the said movable tube nests are moved simultaneously with the movement of the said first and second die members in a direction perpendicular to the direction of movement of the said first and second die members such that the said movable tube nests will not interfere with the said first and second die members. j. Where the said round tube ends are sealed and hydraulic pressure source is connected to the interior of the said round tube and thereby expanding the said round tube to an intermediate shape smaller than the said first and second die members cavities. k. Where axial force is applied to both ends of the said round tube during the said tube expansion to an intermediate shape as to allow flow of material into the said first and second die members cavities. l. Where the said first and second die members are closed such that no gap exists between the said first and second die members and hydraulic pressure is further added to the interior of the said round tube and thereby expanding the said round tube so as to conform to the shape of the said first and second die members cavities such that reduction in the said round tube wall thickness is kept to a minimum after the said expansion. m. Where axial force is applied at both ends of the said round tube during the said tube expansion as to allow flow of material into the said first and second die members cavities. n. Where the said first and second die members are moved to the said open position after the said expansion is complete such that the expanded part is removed from the said first and second die members. o. And where the directions of opening and closing of the said first and second die members are in the direction of the said round tube axis such that the amount of force necessary to hold the said first and second die members in a closed position during said step of expanding, is kept to a minimum.
- 9. The method according to claim 8, where one die member of the said die is fixed while the other die member is movable such that the force necessary to hold the said die members in closed position is applied from one side only.
- 10. The method according to claim 8, where the movement of the said first and second die members from the said intermediate position to the said closed position is controlled and correlated with said addition of hydraulic pressure through the use of computer numerical controller and hydraulic and, or electric servo system such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second die members cavities
- 11. The method according to claim 8 where the part of the said round tube inside the said first and second die members cavities and the said gap, is formed into a serpentine shape such that a greater length of the said round tube is placed inside the said first and second die members cavities and the said gap in the said intermediate position such that a greater volume of the said round tube material is placed inside the said first and second die members cavities and the said gap in the said intermediate position such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second die members cavities.
- 12. The method according to claims 8, where the part of the said round tube inside the said first and second die members cavities and the said gap, is formed into a helical shape such that a greater length of the said round tube is placed inside the said first and second die members cavities and the said gap in the said intermediate position such that a greater volume of the said round tube material is placed inside the said first and second die members cavities and the said gap in the said intermediate position such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second die members cavities.
- 13. The method according to claim 12, where at least one side of the said round tube and the said die members are allowed to rotate freely around the said round tube axis such that the said helical shaped part of the said round tube is allowed to unwind during the said expansion.
- 14. The method according to claim 8, where the said die cavity is not concentric with the said round tube axis and where the said round tube is bent such that the middle section of the said round tube is concentric with the said die cavity, such that the said tube expansion of the said middle section of the said round tube is uniform, such that wall thinning of the said expanded section of the said round tube after the said tube expansion is uniform, such that the reduction in the said round tube wall thickness is kept to a minimum after the said expansion.
- 15. The method according to claims 8, where an elastic ring is placed inside the first die member or the second die member or both such that the said elastic ring will support the outside surface of the said expanded section of the said round tube during the said expansion, such that larger pressure is applied to the walls of the said round tube without wrinkling of the said expanded section of the said round tube, such that the reduction in the said round tube wall thickness is kept to a minimum after the said expansion.
- 16. A method of hydroforming a round tube where the hydroformed diameter is less than the said round tube length and/or the area of the said hydroformed cross section of a multi sided or irregular shape perpendicular to the said tube axis is less than the said tube cross sectional area along the said tube axis, comprising the steps of:
a. Providing a first die member having an internal shape same as the said round tube outer shape of the first side of the said round tube perpendicular to the said round tube axis such that the complete cylindrical surface of the first side of the said round tube is contained inside the said first die member. b. The first die member is further having an internal cavity having the same shape as the desired formed shape of the first side of the said tube desired formed shape perpendicular to the said round tube axis. c. Providing a second die member having an internal shape same as the said round tube outer shape of the second side of the said round tube perpendicular to the said round tube axis such that the complete cylindrical surface of the second side of the said round tube is contained inside the said second die member d. The second die member is further having an internal cavity having the same shape as the desired formed shape of the second side of the said tube desired formed shape perpendicular to the said round tube axis e. Where the said first die member and the said second die members are movable in the direction of the said round tube axis between an open and closed positions. f. Providing a third die member having an internal shape the same as the desired formed shape g. Where the said third die member is placed between the said first and second die members, at a short distance in front of the said first die member such that it provides a gap between the said first and third die members. h. Where the said third die member is connected to the said first die member such that the said third die member is allowed to move in the direction of the said round tube axis such that the said short gap between the said first and third die member is closed. i. Providing a set of movable tube nests between the said first and second die members when the said first and second die members are in an opened position. j. Where the said first and second and third die members are moved to an opened position and the said round tube is placed on the said movable tube nests. k. Where the said first and second and third die members are moved to an intermediate position such that a small gap exists between the said first and third die members and such that a small gap exists between the said second and third die members such that the length of the said round tube inside the cavities of the said first and second and third die members and the said gap between the first and third die members and the said gap between the second and third die members is greater than the length of the said first and second and third die members cavities. l. Where the said movable tube nests are moved simultaneously with the movement of the said first and second and third die members in a direction perpendicular to the direction of movement of the said first and second and third die members such that the said movable tube nests will not interfere with the said first and second and third die members. m. Where the said round tube ends are sealed and hydraulic pressure source is connected to the interior of the said round tube and thereby expanding the said round tube to an intermediate shape smaller than the said first and second and third die members cavities. n. Where the said first and second and third die members are closed such that no gap exists between the said first and third die members and such that no gap exists between the said second and third die members, and hydraulic pressure is further added to the interior of the said round tube and thereby expanding the said round tube so as to conform to the shape of the said first and second and third die members cavities such that reduction in the said round tube wall thickness is kept to a minimum after the said expansion. o. Where the said first and second and third die members are moved to the said open position after the said expansion is complete such that the expanded part is removed from the said first and second and third die members. p. And where the directions of opening and closing of the said first and second and third die members are in the direction of the said round tube axis such that the amount of force necessary to hold the said first and second and third die members in a closed position during said step of expanding, is kept to a minimum.
- 17. The method according to claim 16, where one of the said first or second die members of the said die is fixed while the other die members are movable such that the force necessary to hold the said die members in closed position is applied from one side only.
- 18. The method according to claims 16, where the movement of the said first and second and third die members from the said intermediate position to the said closed position is controlled and correlated with said addition of hydraulic pressure through the use of computer numerical controller and hydraulic and, or electric servo system such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second and third die members cavities
- 19. The method according to claim 16, where part of the said round tube is bent into a serpentine such that the length of the said serpentine shaped part of the said round tube inside the said first and second and third die members cavities and the said gap between the said first and third die members and the said gap between the said second and third die members, in the said intermediate position is greater than the length of a straight tube part without the said serpentine shape, such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second and third die members cavities.
- 20. The method according to claim 16, where part of the said round tube is bent into a helical shape such that the length of the said helical shaped part of the said round tube inside the said first and second and third die members cavities and the said gap between the said first and third die members and the said gap between the said second and third die members, in the said intermediate position is greater than the length of a straight tube part without the said helical shape, such that reduction in the said round tube wall thickness is kept to a minimum after the said round tube is expanded as to conform to the shape of the said first and second and third die members cavities.
- 21. The method according to claim 20 where at least one side of the said round tube and the said die members are allowed to rotate freely around the said round tube axis such that the said helical shaped part of the said round tube is allowed to unwind during the said expansion.
- 22. The method according to claim 16, where the said die cavity is not concentric with the said round tube axis and where the said round tube is bent such that the said tube expansion of the said middle section of the said round tube is uniform, such that wall thinning of the said expanded section of the said round tube after the said tube expansion is uniform such that the reduction in the said round tube wall thickness is kept to a minimum after the said expansion.
- 23. The method according to claims 16 where an elastic ring is placed inside the first die member or the second die member or the third die member or any combination of two or all die members, such that the said elastic ring will support the outside surface of the said expanded section of the said round tube during the said expansion, such that larger pressure is applied to the walls of the said round tube without wrinkling of the said expanded section of the said round tube, such that the reduction in the said round tube wall thickness is kept to a minimum after the said expansion.
- 24. The Method according to claims 16 where the number of die members is greater than 3 and are attached to either the said first die member or the said second die member or both in the same manner as described in claim 16
- 25. The method according to claims 1, 8 and 16, where one side of the said die is according to this invention and the other side of the said die is according to prior art.
- 26. The method according to claims 1, 8 and 16, where the said die cavities are of round shape, single diameter or of round shape, multi different diameters or of multi sided shape or of irregular shape
- 27. The method according to claim 1, 8 and 16, where the said die cavities are similar or dissimilar.
- 28. The method according to claims 1, 8 and 16, where said round tube is cut into two pieces after the said expansion producing two parts of similar or dissimilar shapes.
- 29. The method according to claims 1, 8 and 16, where said round tube is of triangular or square or rectangular or any multi sided shape.
- 30. A Hydroforming Process According to claims 1, 8 and 16
- 31. A Hydroforming Apparatus according to claims 1, 8 and 16
Parent Case Info
[0001] This application claims the benefits of prior filing date of Provisional Application No. 60/300,486—Filing date Jun. 25, 2001—Applicant Mohamed T. Gharib, Brantford, Canada
Provisional Applications (1)
|
Number |
Date |
Country |
|
60300486 |
Jun 2001 |
US |