WO2002007907A2 - Method and forming machine for deforming a hollow workpiece - Google Patents

Method and forming machine for deforming a hollow workpiece Download PDF

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Publication number
WO2002007907A2
WO2002007907A2 PCT/NL2001/000564 NL0100564W WO0207907A2 WO 2002007907 A2 WO2002007907 A2 WO 2002007907A2 NL 0100564 W NL0100564 W NL 0100564W WO 0207907 A2 WO0207907 A2 WO 0207907A2
Authority
WO
WIPO (PCT)
Prior art keywords
workpiece
tool
relative
forming machine
forming
Prior art date
Application number
PCT/NL2001/000564
Other languages
French (fr)
Other versions
WO2002007907A3 (en
Inventor
Johan Massée
Original Assignee
Massee Johan
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from NL1015773A external-priority patent/NL1015773C2/en
Priority to US10/333,502 priority Critical patent/US6907762B2/en
Priority to AU2001286316A priority patent/AU2001286316A1/en
Priority to MXPA03000551A priority patent/MXPA03000551A/en
Priority to CA002416491A priority patent/CA2416491C/en
Priority to EP01965748A priority patent/EP1301294B1/en
Application filed by Massee Johan filed Critical Massee Johan
Priority to AT01965748T priority patent/ATE308393T1/en
Priority to DE60114623T priority patent/DE60114623T2/en
Priority to JP2002513630A priority patent/JP5226170B2/en
Priority to KR1020037000747A priority patent/KR100833147B1/en
Publication of WO2002007907A2 publication Critical patent/WO2002007907A2/en
Publication of WO2002007907A3 publication Critical patent/WO2002007907A3/en

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D7/00Bending rods, profiles, or tubes
    • B21D7/08Bending rods, profiles, or tubes by passing between rollers or through a curved die
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D22/00Shaping without cutting, by stamping, spinning, or deep-drawing
    • B21D22/14Spinning

Definitions

  • the invention relates to a method for deforming a hollow tubular workpiece, wherein the workpiece is clamped down in a clamping device, a first forming tool is placed into contact with the outer surface of the workpiece, said tool is rotated about an axis of rotation relative to the workpiece and one end of the workpiece is deformed by means of said first tool.
  • the invention furthermore relates to a forming machine in accordance with the preamble of claim 7.
  • Such a method and forming machine are known, for example from European patent application no. EP 0 916 428.
  • Said publication discloses a method and a forming machine, comprising a forming head fitted with a number of rollers, by means of which the diameter of one end of a cylindrical metal element is reduced and moreover bent through an angle.
  • the metal cylinder is clamped down and said cylinder and said forming head are rotated relative to each other about an axis of rotation, whereupon said end is deformed by pressing said rollers in radial direction against the outer surface of said cylinder and moving them along said outer surface in a number of cycles, whereby the radial distance between the rollers and the axis of rotation is decreased with each cycle, as a result of which a reduction of the diameter is obtained. Since the axis of rotation is at an angle with the central axis of the metal cylinder, the end of the cylinder is not only reduced as a result of the movement in radial direction of the rollers, but in addition said end will also be positioned at an angle.
  • EP 0 916 426 discloses a comparable method and forming machine, wherein the axis of rotation is eccentrically offset from the central axis of the metal cylinder.
  • the invention furthermore relates to a hollow tubular workpiece having a continuous wall and two open ends, which have been deformed in such a manner that the projections of said ends on a plane straight through an undeformed part of the metal workpiece are at an angle of less than 180° with each other, as well as to a catalytic converter for a vehicle, such as e.g. a car, comprising such a workpiece.
  • a catalytic converter for a vehicle such as e.g. a car
  • Fig. 1 is a schematic top plan view, partially in section, of a forming machine according to the present invention, comprising two forming heads.
  • Fig. 2 is a side elevation of the forming machine of Fig. 1.
  • Fig. 3 is a side elevation of the forming machine of Fig. 1, wherein a part of the forming machine is turned through an angle of 90° .
  • Figs. 4 and 5 schematically show a number of stages of a method according to the present invention, carried out on the forming machine of Fig. 1. Parts corresponding to each other or having substantially the same function will be indicated by the same numerals in the various figures.
  • Fig. 1 shows a forming machine 1 comprising a first forming head 2 , a second forming head 3 and a chuck 4 for clamping down the workpiece, for example the illustrated, already deformed, metal cylinder 5.
  • the two forming heads 2, 3 comprise a baseplate 6 on which two guide rails 7 are mounted.
  • Guides 8 extend over said rails 7 on which guides a second set of guide rails 9 is mounted, which extend at right angles to •
  • rollers 13 and inside roller 19 often lie in the same plane, which plane extends perpendicularly to axis of rotation 17 in this embodiment, so that the wall is confined between said rollers 13, 19 at the location of the deformation.
  • Assembly 12 comprises an external gear 25 on a side remote from rollers 13, 19, which gear mates with a pinion 26 mounted on the end of a drive shaft 27 of an electric motor 28.
  • the assembly 12 can be rotated by means of electric motor 28.
  • Assembly 12 furthermore comprises a hydraulic cylinder 29, which is capable of moving ring 18, and thus forming rollers 13, in radial direction by means of a piston 30, a piston rod 31 and a pressure plate 32.
  • a hydraulic cylinder 29 which is capable of moving ring 18, and thus forming rollers 13, in radial direction by means of a piston 30, a piston rod 31 and a pressure plate 32.
  • the radial movement of the forming rollers 13 will be indicated as the Z-direction.
  • Ring 22, and thus inside roller 19 can be moved in radial direction by means of a hydraulic cylinder 33 and a hollow piston rod 34, whilst housing 11 can be moved along said guide rails 7 and 9 in its entirety by means of hydraulic cylinders 35 and 36.
  • the radial movement of inside roller 19 will be indicated as the W-direction. Movements of housing 11 parallel to axis of rotation 17 and perpendicularly to said axis 17 will be indicated as the X-direction and the Y-direction, respectively.
  • Second forming head 3 is practically identical to forming head 2, but it is furthermore capable of pivoting movement about a pivot point 37, so that the end of workpiece 5 that is being worked by said forming head 3 can be deformed through an angle of 90 , for example.
  • an assembly 38 is provided, by means of which axis 37 can be moved, as will be explained in more detail hereafter.
  • Figs. 4 and 5 schematically show in 25 steps the manner in which an open end of a metal cylinder 5 can be deformed by means of forming head 3 of forming machine 1 according to Fig. 1. At the same time, the other end of cylinder 5 can be worked by means of forming head 2.
  • Step 1 shows the starting position, wherein workpiece 5 is clamped down in a chuck 4.
  • step 2 Said end, which has already undergone a machining step and which has a smaller diameter than the other part of cylinder 5, is then (step 2) deformed by rotating assembly 12 and placing the forming rollers 13, 19 into contact with, respectively, the outer surface and the inner surface of cylinder 5 and moving said rollers radially towards axis of rotation 17 and away from axis of rotation 17, respectively, and simultaneously pivoting the forming head through an angle ⁇ about pivot point 37.
  • the various driving means are thereby controlled in such a manner that a composite, flowing movement of the forming rollers 13, 19 (in Z-direction and W-direction) , assembly 13 (in X- direction and Y-direction) and the forming head (through an angle ⁇ ) is obtained, as a result of which a bent portion 40 is formed.
  • step 3 After forming head 3 has been pivoted through an angle ⁇ , the movement of the assembly 12 in the X-direction is continued (step 3) , so that a cylindrical portion 41 remains, which portion has a smaller diameter than the original open end of cylinder 5 and which extends at an angle ⁇ relative to the other part of cylinder 5.
  • step 4 the forming rollers 13, 19 are moved radially outwards and radially inwards, respectively, so that the contact between said rollers 13, 19 and, respectively, the outer surface and the inner surface of the wall of cylinder 5 is broken.
  • Assembly 12 is moved back along cylindrical portion 41 in the X-direction and the Y-direction until the transition between the bent portion 40 and said cylindrical portion 41.
  • step 5 The above cycle is repeated by pivoting forming head 3 through an angle ⁇ and translating and adjusting assembly 12 (step 5, which is substantially identical to step 2) and translating assembly 12 in the X-direction and the Y-direction (step 6, which is substantially identical to step 3) , wherein the diameter of the cylindrical portion 41 is further reduced. Then the contact between said rollers and said cylindrical portion 41 is broken, and the assembly is returned to the transition area between bent portion 40 and cylindrical portion 41 (step 7, which is substantially identical to step 4) .
  • steps 2 - 4 are repeated until the desired reduction of the diameter and the desired angle, for example of 90 , have been obtained. If the nature of the workpiece involves that the angle ⁇ must not be larger than, for example, 15 or 8 per cycle, a total number of, respectively, 6 and 12 cycles will be required for the said deformation.
  • pivot point 37 is moved by means of assembly 38 to the starting position as shown in Fig. 5 (step 13) .
  • the operation of Fig. 4 (steps 2 - 12) are repeated (steps 14 - 25) , wherein the angle ⁇ is of opposite sense, however, so that an S-bend is obtained in the end of cylinder 5.
  • the forming head 3 of forming machine 1 is furthermore capable of pivoting movement about axis of rotation 17 of forming head 2, so that the bending of workpiece 5 is not limited to bending in one and the same imaginary plane. Pivoting of forming head 3 about axis of rotation 17 between or during operations enables the central axis of the deformed portion of workpiece 5 to assume a three- dimensional shape.
  • the forming machines according to the present invention can be operated by a person as well as by

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Shaping Metal By Deep-Drawing, Or The Like (AREA)
  • Bending Of Plates, Rods, And Pipes (AREA)
  • Blow-Moulding Or Thermoforming Of Plastics Or The Like (AREA)
  • Printing Methods (AREA)

Abstract

The invention relates to a method and a forming apparatus (1) for deforming a hollow tubular workpiece (4), wherein the workpiece is clamped down in a clamping device, a first forming tool is placed into contact with the outer surface of the workpiece, the tool is rotated about an axis of rotation relative to the workpiece and one end of the workpiece is deformed by means of said first tool. A second forming tool is placed into contact with the outer surface of the workpiece and is rotated relative to the workpiece about an axis of rotation. The other end of the workpiece is deformed by means of said second tool and at least one of said tools is moved relative to the workpiece during said deformation and/or between deforming steps (on the same workpiece), wherein the axis of rotation of said tool is translated and/or pivoted about an axis with respect to said workpiece.

Description

Method and forming machine for deforming a hollow workpiece
The invention relates to a method for deforming a hollow tubular workpiece, wherein the workpiece is clamped down in a clamping device, a first forming tool is placed into contact with the outer surface of the workpiece, said tool is rotated about an axis of rotation relative to the workpiece and one end of the workpiece is deformed by means of said first tool. The invention furthermore relates to a forming machine in accordance with the preamble of claim 7.
Such a method and forming machine are known, for example from European patent application no. EP 0 916 428. Said publication discloses a method and a forming machine, comprising a forming head fitted with a number of rollers, by means of which the diameter of one end of a cylindrical metal element is reduced and moreover bent through an angle. To this end, the metal cylinder is clamped down and said cylinder and said forming head are rotated relative to each other about an axis of rotation, whereupon said end is deformed by pressing said rollers in radial direction against the outer surface of said cylinder and moving them along said outer surface in a number of cycles, whereby the radial distance between the rollers and the axis of rotation is decreased with each cycle, as a result of which a reduction of the diameter is obtained. Since the axis of rotation is at an angle with the central axis of the metal cylinder, the end of the cylinder is not only reduced as a result of the movement in radial direction of the rollers, but in addition said end will also be positioned at an angle. Due to the use of the aforesaid cycles, the workpiece assumes the shape of the final product step by step. EP 0 916 426 discloses a comparable method and forming machine, wherein the axis of rotation is eccentrically offset from the central axis of the metal cylinder. Thus a product is
Figure imgf000003_0001
Figure imgf000004_0001
invention makes it possible to deform materials having a smaller wall thickness of, for example, 1.2 mm or less.
The invention furthermore relates to a hollow tubular workpiece having a continuous wall and two open ends, which have been deformed in such a manner that the projections of said ends on a plane straight through an undeformed part of the metal workpiece are at an angle of less than 180° with each other, as well as to a catalytic converter for a vehicle, such as e.g. a car, comprising such a workpiece. The invention will now be explained in more detail with reference to the appended figures, which show an embodiment of the method and the forming machine according to the present invention.
Fig. 1 is a schematic top plan view, partially in section, of a forming machine according to the present invention, comprising two forming heads.
Fig. 2 is a side elevation of the forming machine of Fig. 1.
Fig. 3 is a side elevation of the forming machine of Fig. 1, wherein a part of the forming machine is turned through an angle of 90° .
Figs. 4 and 5 schematically show a number of stages of a method according to the present invention, carried out on the forming machine of Fig. 1. Parts corresponding to each other or having substantially the same function will be indicated by the same numerals in the various figures.
Fig. 1 shows a forming machine 1 comprising a first forming head 2 , a second forming head 3 and a chuck 4 for clamping down the workpiece, for example the illustrated, already deformed, metal cylinder 5. The two forming heads 2, 3 comprise a baseplate 6 on which two guide rails 7 are mounted. Guides 8 extend over said rails 7 on which guides a second set of guide rails 9 is mounted, which extend at right angles to •
Figure imgf000006_0001
outward direction, that is, in radial direction away from the cavity 5 defined by workpiece 5, by means of said inside roller 19. Forming rollers 13 and inside roller 19 often lie in the same plane, which plane extends perpendicularly to axis of rotation 17 in this embodiment, so that the wall is confined between said rollers 13, 19 at the location of the deformation.
Assembly 12 comprises an external gear 25 on a side remote from rollers 13, 19, which gear mates with a pinion 26 mounted on the end of a drive shaft 27 of an electric motor 28. Thus, the assembly 12 can be rotated by means of electric motor 28.
Assembly 12 furthermore comprises a hydraulic cylinder 29, which is capable of moving ring 18, and thus forming rollers 13, in radial direction by means of a piston 30, a piston rod 31 and a pressure plate 32. Within the framework of the present description, the radial movement of the forming rollers 13 will be indicated as the Z-direction.
Ring 22, and thus inside roller 19, can be moved in radial direction by means of a hydraulic cylinder 33 and a hollow piston rod 34, whilst housing 11 can be moved along said guide rails 7 and 9 in its entirety by means of hydraulic cylinders 35 and 36. Within the framework of the present description, the radial movement of inside roller 19 will be indicated as the W-direction. Movements of housing 11 parallel to axis of rotation 17 and perpendicularly to said axis 17 will be indicated as the X-direction and the Y-direction, respectively.
Second forming head 3 is practically identical to forming head 2, but it is furthermore capable of pivoting movement about a pivot point 37, so that the end of workpiece 5 that is being worked by said forming head 3 can be deformed through an angle of 90 , for example. In addition, an assembly 38 is provided, by means of which axis 37 can be moved, as will be explained in more detail hereafter. Figs. 4 and 5 schematically show in 25 steps the manner in which an open end of a metal cylinder 5 can be deformed by means of forming head 3 of forming machine 1 according to Fig. 1. At the same time, the other end of cylinder 5 can be worked by means of forming head 2. Step 1 shows the starting position, wherein workpiece 5 is clamped down in a chuck 4. Said end, which has already undergone a machining step and which has a smaller diameter than the other part of cylinder 5, is then (step 2) deformed by rotating assembly 12 and placing the forming rollers 13, 19 into contact with, respectively, the outer surface and the inner surface of cylinder 5 and moving said rollers radially towards axis of rotation 17 and away from axis of rotation 17, respectively, and simultaneously pivoting the forming head through an angle β about pivot point 37. The various driving means are thereby controlled in such a manner that a composite, flowing movement of the forming rollers 13, 19 (in Z-direction and W-direction) , assembly 13 (in X- direction and Y-direction) and the forming head (through an angle β) is obtained, as a result of which a bent portion 40 is formed.
After forming head 3 has been pivoted through an angle β, the movement of the assembly 12 in the X-direction is continued (step 3) , so that a cylindrical portion 41 remains, which portion has a smaller diameter than the original open end of cylinder 5 and which extends at an angle β relative to the other part of cylinder 5.
Then (step 4) the forming rollers 13, 19 are moved radially outwards and radially inwards, respectively, so that the contact between said rollers 13, 19 and, respectively, the outer surface and the inner surface of the wall of cylinder 5 is broken. Assembly 12 is moved back along cylindrical portion 41 in the X-direction and the Y-direction until the transition between the bent portion 40 and said cylindrical portion 41.
The above cycle is repeated by pivoting forming head 3 through an angle β and translating and adjusting assembly 12 (step 5, which is substantially identical to step 2) and translating assembly 12 in the X-direction and the Y-direction (step 6, which is substantially identical to step 3) , wherein the diameter of the cylindrical portion 41 is further reduced. Then the contact between said rollers and said cylindrical portion 41 is broken, and the assembly is returned to the transition area between bent portion 40 and cylindrical portion 41 (step 7, which is substantially identical to step 4) . Depending on the characteristics of the workpiece, such as the wall thickness, the mechanical strength and stiffness and the elastic elongation, steps 2 - 4 are repeated until the desired reduction of the diameter and the desired angle, for example of 90 , have been obtained. If the nature of the workpiece involves that the angle β must not be larger than, for example, 15 or 8 per cycle, a total number of, respectively, 6 and 12 cycles will be required for the said deformation.
After the operations that are shown in Fig. 4 have been carried out, pivot point 37 is moved by means of assembly 38 to the starting position as shown in Fig. 5 (step 13) . The operation of Fig. 4 (steps 2 - 12) are repeated (steps 14 - 25) , wherein the angle β is of opposite sense, however, so that an S-bend is obtained in the end of cylinder 5. As is shown in Fig. 3, the forming head 3 of forming machine 1 is furthermore capable of pivoting movement about axis of rotation 17 of forming head 2, so that the bending of workpiece 5 is not limited to bending in one and the same imaginary plane. Pivoting of forming head 3 about axis of rotation 17 between or during operations enables the central axis of the deformed portion of workpiece 5 to assume a three- dimensional shape.
As a matter of course the forming machines according to the present invention can be operated by a person as well as by
Figure imgf000010_0001
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Claims

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5. A method according to any one of the preceding claims, wherein the larger part of the operation is carried out in one flowing movement.
6. A method according to any one of the preceding claims, wherein at least one inside forming tool (19) is placed into the cavity defined by the workpiece (5) , at the location of at least one of the ends thereof, into contact with the inner surface of the hollow workpiece (5) , and wherein the workpiece (5) is deformed by means of said second tool (19) . 7. A forming machine (1) at least comprising a clamping device (4) for clamping down a hollow tubular workpiece (5) to be deformed, a first forming tool (13) which can be placed into contact with the outer surface of the workpiece (5) while the workpiece (5) is being worked and by means of which one end of the workpiece (5) can be deformed, driving means (25, 26, 28) for rotating said tool (13) relative to said workpiece (5) and means (35, 36) for moving said tool (13) relative to said workpiece (5) in such a manner that said tool (13) can follow one or more desired paths with respect to the workpiece (5) so as to work said workpiece (5) , characterized in that said forming machine (1) comprises at least one second forming tool (13) , which can be placed into contact with the outer surface of the workpiece (5) during the machining of the workpiece (5) , and by means of which the other end of the workpiece (5) can be deformed, as well as driving means (25, 26, 28) for rotating said tool (13) relative to said workpiece (5) and means (35, 36) for moving said tool (13) relative to said workpiece (5) in such a manner that said tool (13) can follow one or more desired paths with respect to the workpiece (5) so as to work said workpiece (5), wherein at least one of said tools (13, 13') can be moved relative to the workpiece (5) during said deformation and/or between deforming steps (on the same workpiece) in such a manner that the axis of rotation (17, 17') of said tool (13, 13') is translated and/or pivoted about an axis (37) relative to said workpiece (5) .
8. A forming machine (1) according to claim 7, wherein both tools (13, 13') can be moved relative to the workpiece (5) during said deformation and/or between deforming steps (on the same workpiece), wherein the axes of rotation (17, 17') of said tools (13, 13') are translated and/or pivoted about an axis (37) .
9. A forming machine (1) according to claim 7 or 8 , wherein at least one of said tools (13, 13') can be pivoted about at least two axes (37, 17) relative to the workpiece (5) during said deformation and/or between deforming steps (on the same workpiece) , wherein at least two of said axes (37, 17) or projections of each of said axes (37, 17) on a common plane are at an angle with respect to each other. 10. A forming machine (1) according to any one of claims 7-9, wherein at least one of said axes (37) can be moved during said deformation and/or between deforming steps.
11. A hollow tubular workpiece (5) having a continuous wall and two open ends, which have been deformed, preferably by means of the method according to any one of the claims 1 - 6, in such a manner that the projections of the central axes of said ends on a plane straight through an undeformed part of the metal workpiece are at an angle of less than 180° with respect to each other. 12. A catalytic converter for a vehicle, such as e.g. a car, comprising a workpiece according to claim 11.
PCT/NL2001/000564 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece WO2002007907A2 (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
KR1020037000747A KR100833147B1 (en) 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece
AU2001286316A AU2001286316A1 (en) 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece
MXPA03000551A MXPA03000551A (en) 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece.
CA002416491A CA2416491C (en) 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece
EP01965748A EP1301294B1 (en) 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece
US10/333,502 US6907762B2 (en) 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece
AT01965748T ATE308393T1 (en) 2000-07-21 2001-07-20 METHOD AND SHAPING DEVICE FOR SHAPING A HOLLOW WORKPIECE
DE60114623T DE60114623T2 (en) 2000-07-21 2001-07-20 METHOD AND METHOD FOR FORMING A HOLLOWED WORKPIECE
JP2002513630A JP5226170B2 (en) 2000-07-21 2001-07-20 Method for deforming hollow processed member and molding machine

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
NL1015773 2000-07-21
NL1015773A NL1015773C2 (en) 2000-07-21 2000-07-21 Method and device for deforming a hollow workpiece.
NL1016348 2000-10-06
NL1016348A NL1016348C2 (en) 2000-07-21 2000-10-06 Method and forming machine for deforming a hollow workpiece.

Publications (2)

Publication Number Publication Date
WO2002007907A2 true WO2002007907A2 (en) 2002-01-31
WO2002007907A3 WO2002007907A3 (en) 2002-04-04

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PCT/NL2001/000564 WO2002007907A2 (en) 2000-07-21 2001-07-20 Method and forming machine for deforming a hollow workpiece

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Country Status (14)

Country Link
US (2) US6907762B2 (en)
EP (2) EP1301294B1 (en)
JP (2) JP5226170B2 (en)
KR (2) KR100830515B1 (en)
AT (2) ATE293501T1 (en)
AU (2) AU2001286317A1 (en)
CA (2) CA2416491C (en)
DE (2) DE60110229T2 (en)
DK (2) DK1301295T3 (en)
ES (2) ES2252285T3 (en)
MX (2) MXPA03000552A (en)
NL (1) NL1016348C2 (en)
PT (1) PT1301295E (en)
WO (2) WO2002016058A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10166582B2 (en) 2013-04-03 2019-01-01 Toyota Jidosha Kabushiki Kaisha Spinning method and spinning apparatus

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002172429A (en) * 2000-12-01 2002-06-18 Nippon Spindle Mfg Co Ltd Method and apparatus for forming cylindrically shaped material to be processed
SG189897A1 (en) 2010-12-02 2013-06-28 Victaulic Co Of America Pipe element having shoulder, groove and bead and methods and apparatus for manufacture thereof
CA2846838C (en) 2011-09-02 2019-08-13 Victaulic Company Spin forming method
BR112021005704A2 (en) * 2018-09-27 2021-06-22 Inno-Spin LLC multi-axis roll of stepped diameter cylinder
RU186845U1 (en) * 2018-11-22 2019-02-06 Общество с ограниченной ответственностью "ГРАНД-ИНДУСТРИ" PLANE PROCESSING DEVICE
RU193274U1 (en) * 2019-08-01 2019-10-22 Владимир Иванович Бигус DEVICE FOR PROCESSING SHEETS WITH RESIDUAL DEFORMATION
CN112222305B (en) * 2020-09-23 2022-10-04 无锡金羊管件有限公司 Pipe bending and flaring integrated equipment

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5570603A (en) * 1993-08-31 1996-11-05 Grinnell Corporation Method and apparatus for cold rolling piping element connections having multiple outward steps
EP0916426A1 (en) * 1997-11-11 1999-05-19 Sango Co., Ltd. Method and apparatus for forming an end portion of a cylindrical member
EP0916428A2 (en) * 1997-11-18 1999-05-19 Sango Co., Ltd. Method and apparatus for forming an end portion of a cylindrical member

Family Cites Families (53)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1297819A (en) 1917-12-21 1919-03-18 Walter Ferrier Nose-forming machine.
US1500261A (en) * 1921-04-18 1924-07-08 Montour Aluminum Soldering Cor Sheet-metal-spinning machine
US2358307A (en) 1942-08-29 1944-09-19 Clarence L Dewey Tube reducing machine
FR1004843A (en) 1947-05-22 1952-04-03 Le Ministre De La Guerre Improvements to surface finishing machines
DE1024046B (en) 1955-03-26 1958-02-13 Ferndorf Eisen Metall Equipment for the production of socket pipes
US3055414A (en) 1959-07-30 1962-09-25 Boldrini Rino Flanging machine
US3340713A (en) 1965-02-11 1967-09-12 James E Webb Spin forming tubular elbows
US3299680A (en) 1965-06-10 1967-01-24 Earl A Thompson Rolling machine for forming tubular workpieces
US3380275A (en) * 1965-12-13 1968-04-30 Western Electric Co Spin forming device
DE1602671A1 (en) 1966-02-14 1970-11-26 Rotary Profile Anstalt Method and device for deforming materials
GB1344066A (en) * 1970-08-04 1974-01-16 Secr Defence Metal working
US3754424A (en) * 1972-05-17 1973-08-28 Gulf & Western Ind Prod Co Method for necking-in can bodies
IT984917B (en) * 1973-05-04 1974-11-20 Fmi Mecfond Aziende Mecc DEVICE TO OBTAIN THE TAPPING AND EDGING OF METALLIC CYLINDRICAL BODIES AT THE SAME TIME TO BE USED ON AUTOMATED AC MACHINES WITH MULTI PLI OPERATING ELEMENTS
US3851515A (en) * 1973-09-04 1974-12-03 C Hautau Apparatus for cutting or deforming a workpiece
GB2655405A (en) 1976-11-10
US4091648A (en) 1977-04-06 1978-05-30 Zap-Lok Systems International Pipe grooving systems
US4143535A (en) 1978-02-21 1979-03-13 Automatic Sprinkler Limited Pipe end shaper
DE2909227A1 (en) * 1979-03-09 1980-10-09 Deutsche Ind Anlagen Kolb FITTING ON MACHINE TOOLS
DE3019723A1 (en) 1980-05-23 1981-12-03 Hans J. Ing.(grad.) 7336 Uhingen Wissner Rolling machine for vehicle wheels - has counter-rotating pair of rollers with complementary profiles and wheel blank-carrying station
JPS57134217A (en) 1981-02-09 1982-08-19 Toyo Seikan Kaisha Ltd Bead processing device for drum shell
NL173488C (en) * 1981-03-13 1984-02-01 Fontijne Bv Machine RIM PROFILE.
JPS57202930A (en) 1981-06-09 1982-12-13 Yazaki Kako Kk Chamfering device for pipe and part
NL8301678A (en) 1983-05-11 1984-12-03 Johan Massee FORCING MACHINE.
US4563887A (en) * 1983-10-14 1986-01-14 American Can Company Controlled spin flow forming
JPS60261608A (en) 1984-06-09 1985-12-24 Nippon Spindle Mfg Co Ltd Pipe contraction working method
JPS62167956A (en) 1986-01-20 1987-07-24 Chuo Denki Seisakusho:Kk Main shaft device
DE3715917A1 (en) * 1987-05-13 1988-12-01 Niemsch Otto Lanico Maschbau MACHINE FOR DOUBLE-SIDED BOARDING AND PULLING IN CYLINDRICAL CAN FELS
JPH0753297B2 (en) 1987-06-09 1995-06-07 新日本製鐵株式会社 Pipe end processing device
PL157062B1 (en) 1988-09-13 1992-04-30 Apparatus for chamfering pipe ends
JPH04115803A (en) 1990-09-04 1992-04-16 Suzuki Motor Corp Eccentric collar for machining eccentric shaft and method of machining eccentric shaft
NL9101493A (en) * 1991-04-03 1992-11-02 Thomassen & Drijver Device for forming a narrowed section on the open end zone of a metal bush (sleeve)
DE4218092C1 (en) 1992-05-07 1993-06-24 Wf-Maschinenbau Und Blechformtechnik Gmbh & Co Kg, 4415 Sendenhorst, De Mfg. gear part - involves using circular cylindrical part with inner toothing only on part of its length, non-toothed part being for seals
DE4222967C2 (en) * 1992-07-13 1994-06-16 Diedesheim Gmbh Maschf NC lathe for generating non-circular / spherical geometries on turned parts
US6216512B1 (en) 1993-11-16 2001-04-17 Sango Co., Ltd. Method and apparatus for forming a processed portion of a workpiece
FR2713547B1 (en) * 1993-12-07 1996-02-23 Pack Ind Sa Method and device for renovating tubes, in particular cardboard tubes.
US5996386A (en) * 1994-04-21 1999-12-07 Pazzaglia; Luigi Equipment and method for edging and tapering cylindrical body cans
US5408906A (en) 1994-08-22 1995-04-25 Gleason; William R. System for simultaneously setting stroke on a crankshaft lathe
FR2736584B1 (en) 1995-07-12 1997-09-26 Petit Georges Ets Sa PROCESS FOR MANUFACTURING A KRAFT CARDBOARD FUT
US5596897A (en) * 1995-09-12 1997-01-28 Reynolds Metals Company Mechanism for controlling form roll movement in spin flow necking machine
NL1001675C2 (en) * 1995-11-17 1997-05-21 Johan Massee Method and device for making a product by forcing.
NL1003403C2 (en) 1996-06-24 1998-01-07 Johan Massee Device for machining a workpiece.
JPH1076401A (en) 1996-09-02 1998-03-24 Nakamura Tome Precision Ind Co Ltd Machining method and device for cylindrical workpiece having eccentric part
US6233933B1 (en) * 1996-10-29 2001-05-22 Phoenix Systems, L.L.C. Arrangement and method for removal of air from a hydraulic system
JPH10151501A (en) 1996-11-20 1998-06-09 Okuma Mach Works Ltd Attachment for lathing eccentric or elliptic shaft
US5937516A (en) 1996-12-13 1999-08-17 General Motors Corporation Method for spin forming articles
JPH1177202A (en) * 1997-09-12 1999-03-23 Mitsubishi Materials Corp Manufacturing device of necking can, and manufacture of necking can
GB9800937D0 (en) * 1998-01-17 1998-03-11 Metal Box Plc Flange re-forming apparatus
JP2922201B1 (en) * 1998-07-21 1999-07-19 株式会社三五 Spinning method and its equipment
JP2000051961A (en) * 1998-08-05 2000-02-22 Fuji Kikai Kosakusho:Kk Device for drawing end part of cylindrical body
JP4116723B2 (en) * 1998-12-24 2008-07-09 株式会社三五 End forming method for tube material
US6233993B1 (en) * 1999-05-10 2001-05-22 Sango Co., Ltd. Method and apparatus for forming a processed portion of a workpiece
DE10013801A1 (en) 2000-03-20 2001-10-18 Reinhardt Gmbh Maschbau Sheet metal forming machine
NL1017010C2 (en) 2000-12-29 2002-07-02 Johan Massue Method and device for deforming a hollow workpiece.

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5570603A (en) * 1993-08-31 1996-11-05 Grinnell Corporation Method and apparatus for cold rolling piping element connections having multiple outward steps
EP0916426A1 (en) * 1997-11-11 1999-05-19 Sango Co., Ltd. Method and apparatus for forming an end portion of a cylindrical member
EP0916428A2 (en) * 1997-11-18 1999-05-19 Sango Co., Ltd. Method and apparatus for forming an end portion of a cylindrical member

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10166582B2 (en) 2013-04-03 2019-01-01 Toyota Jidosha Kabushiki Kaisha Spinning method and spinning apparatus

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