This invention relates to edge hemming of nested metal panels to form vehicle closures and more particularly to robotic roller hemming of metal panels to form vehicle doors, decklids, hoods, liftgates and the like.
It is known in the art relating to large scale production hemming of nested metal panels to form vehicle closures i.e., doors, decklids, hoods, liftgates and the like, to receive an outer metal panel, having its peripheral edge flanged or pre-bent to a set angle ready for hemming, on a hemming anvil or die. An inner panel is nested on the outer flanged panel and the pre-bent peripheral edge of the outer panel is hemmed over an edge of the inner panel to form the closure panel.
Conventional pre-bending or flanging the peripheral edge of the outer panel requires forming of the outer metal panel apart from the hemming operation. It would be desirable to combine the pre-bending or flanging of the peripheral edge of the outer panel at the same station and with the same hemming roller as used for the roller hemming of the nested metal panels.
The present invention provides a flanging apparatus cooperable with a roller hemming anvil or die which can be used to pre-bend or flange an outer metal panel at the same station and with the same hemming roller used for roller hemming nested inner and outer metal panels together.
More specifically a flanging apparatus for use in roller hemming with a robotic hemming roller and a roller hemming anvil having a peripherally disposed hemming surface includes a tool insert having a flanging surface and a mounting surface. The flanging surface has a peripherally disposed flanging edge of a shape generally corresponding to a shape of the hemming surface of the hemming anvil. The flanging edge is set at an angle for flanging or pre-bending an outer metal panel used to form a closure panel. The mounting surface of the insert is adapted to mount the insert relative to the roller hemming anvil and the outer panel. In use the tool insert is mountable on the outer panel deposited on the hemming anvil. The outer panel is flanged against the tool insert flanging surface using the hemming roller. Thereafter the tool insert is removable to allow the hemming roller to finish hem together an inner metal panel disposedly nested on the flanged outer panel.
The tool insert may include a locator of known mechanical, electrical and/or optical locator means for locating the tool insert relative to the hemming anvil. The tool insert may comprise a plurality of cooperable inter-connecting or fitting sections. At least one crossmember assembly may be provided for containing tool insert sections in an operational disposition. Preferably the tool insert is constructed of metal material.
These and other features and advantages of the invention will be more fully understood from the following detailed description of the invention taken together with the accompanying drawings.
In the drawings:
Referring now to the drawings in detail, numeral 10 generally indicates a flanging apparatus for use with a roller hemming anvil or die 12. Flanging apparatus 10 is used in combination with the roller hemming anvil 12 to flange or pre-bend an outer metal panel of a closure panel assembly at the same station and with the same robotically controlled hemming roller as used for final hemming of the closure panel assembly on the roller hemming anvil 12.
As shown in
The flanging surface 16 of the tool insert 14 has a peripherally disposed flanging edge 22 which generally corresponds to the outline shape of a hemming surface 24 of the hemming anvil 12. The flanging edge 22 is set at an angle for flanging or pre-bending the peripheral edge (PE) of an outer metal panel (P) thereagainst, best seen in
With continued reference to
Crossmembers 28 are illustrated as rigid elements 30 extending from one side of the insert 14 to the other side of the insert. In the embodiment shown, crossmembers 28 are connected to sections 20 which in part define the insert 14.
With reference to
Once the desired angle of the outer panel (P) is achieved, insert 14 is removed from the outer panel and anvil 12. An inner panel (not shown) is then positioned on the flanged outer panel (P). Then the hem roller 32 controlled by robot arm 34 is again actuated to final hem the two panels together to form a closure panel.
Although the invention has been described by reference to a specific embodiment, it should be understood that numerous changes may be made within the spirit and scope of the inventive concepts described. Accordingly, it is intended that the invention not be limited to the described embodiment, but that it have the full scope defined by the language of the following claims.
Number | Name | Date | Kind |
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6425277 | Wiens | Jul 2002 | B2 |
6804981 | Maier | Oct 2004 | B1 |
Number | Date | Country | |
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20070006627 A1 | Jan 2007 | US |