FLANGE FORMING DEVICE AND METHOD OF FORMING A FLANGE ON A SHEET METAL PART TO REDUCE SURFACE DISTORTION
20220258224 · 2022-08-18
Assignee
Inventors
- Christian Richard Genereux (Brighton, MI, US)
- Robert Vaughn Degenhardt (Belleville, MI, US)
- Philip Trinh (Royal Oak, MI, US)
Cpc classification
B62D25/16
PERFORMING OPERATIONS; TRANSPORTING
B21D53/88
PERFORMING OPERATIONS; TRANSPORTING
B21D5/047
PERFORMING OPERATIONS; TRANSPORTING
B21D37/04
PERFORMING OPERATIONS; TRANSPORTING
B21D19/08
PERFORMING OPERATIONS; TRANSPORTING
B21D39/021
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21D39/02
PERFORMING OPERATIONS; TRANSPORTING
B21D5/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method of forming a vehicle panel includes deforming a sheet metal workpiece between stamping tools to form a first and second edges that converge at a corner of the workpiece's main surface. The first edge is defined by a junction of the main surface and a first flange. The second edge is defined the main surface and a second flange. Forming the first and second edges includes deforming the workpiece so that the second flange has a first region bent to a first angle relative to the main surface and an unwinding region bent to an angle that unwinds from the first region as the second flange approaches the corner. The method includes deforming the workpiece between a second set of stamping tools that deform the first flange and the unwinding region of the second flange until the first and second flanges are bent greater than 90°.
Claims
1. A method of forming a panel from a sheet metal workpiece having a main surface comprising: deforming the workpiece between a first set of stamping tools to form a first edge of the main surface and a second edge of the main surface that converge to define a corner of the main surface, the first edge defined by a junction of the main surface and a first flange, the second edge defined by a junction of the main surface and a second flange, wherein deforming the workpiece to form the first and second edges includes deforming the workpiece so that the second flange has a first region bent to a first angle relative to the main surface and an unwinding region that is bent to an angle relative to the main surface that unwinds from the first region as the second flange approaches the corner; and deforming the workpiece between a second set of stamping tools, the second set of tools deforming the first flange and the unwinding region of the second flange until the first and second flanges have been bent greater than 90° relative to the main surface.
2. The method of claim 1, wherein the unwinding region of the second flange unwinds from a first bend amount that is greater than 90° relative to the main surface to a second bend amount that is greater than 0° and less than 90° relative to the main surface.
3. The method of claim 1, wherein the main surface is a Class A surface.
4. The method of claim 1, wherein deforming the workpiece between the first set of stamping tools includes controlling an angle of the unwinding region by pressing the unwinding region between an upper steel and a lower steel.
5. The method of claim 1, wherein the first set of stamping tools includes a first flange post, a first flange steel, and a second flange steel, wherein the step of deforming the workpiece between the first set of stamping tools includes: positioning the workpiece on the first flange post; moving the first flange steel in a first direction relative to the first flange post; and moving the second flange steel in a second direction relative to the first flange post, the second direction being transverse to the first direction.
6. The method of claim 5, wherein when the first flange steel and the second flange steel are in a closed position relative to the first flange post, work surfaces of the first flange steel and the second flange steel are spaced apart from the first flange post by a thickness of the workpiece.
7. The method of claim 5, wherein when the first flange steel is in the closed position the first flange steel contacts the first flange, wherein when the second flange steel is in the closed position the second flange steel contacts the first region and the unwinding region.
8. The method of claim 7, wherein when the first flange steel is in the closed position the first flange steel contacts a portion of the unwinding region.
9. The method of claim 7, wherein the second set of stamping tools includes a second flange post and a third flange steel that is movable relative to the second flange post in a third direction between an open position and a closed position, wherein when the third flange steel is in the closed position the third flange steel contacts the first flange and the unwinding region of the second flange.
10. The method of claim 1, wherein the panel is a body panel for a vehicle.
11. A vehicle body panel formed by the method of claim 1.
12. A set of stamping tools for forming a panel from a sheet metal workpiece, the panel including a main surface, an interior surface opposite the main surface, a first flange along a first edge of the main surface, and a second flange along a second edge of the main surface, the first and second edges converging to form a corner of the panel, the set of stamping tools comprising: a first anvil including a support surface, a first bend surface, and a second bend surface, wherein the support surface is configured to contact the interior surface, wherein the first anvil defines a first edge at a junction between the supporting surface and the first bend surface, wherein the first anvil defines a second edge at a junction between the support surface and the second bend surface, wherein the first and second edges of the first anvil converge at a corner of the first anvil; a first pad including a first clamp surface opposing the support surface and configured to contact the main surface of the workpiece; a first flange steel movable relative to the first anvil and the first pad between an open position and a closed position, wherein the first flange steel includes a first region and a second region, wherein, when the first flange steel is in the closed position, the first region of the first flange steel opposes the first bend surface and the second region of the first flange steel opposes the second bend surface; and a second flange steel movable relative to the first anvil, the pad, and the first flange steel between an open position and a closed position, wherein the second flange steel includes a working surface that opposes the second bend surface when the second flange steel is in the closed position, wherein, when the first and second flange steels are moved to their closed positions: the first region of the first flange tool is configured to bend a first edge region of the workpiece around the first edge of the first anvil to a first bend angle; and the working surface of the second flange steel and the second region of the first flange steel are configured to cooperate to bend a second edge region of the workpiece around the second edge of the first anvil to a second bend angle that becomes less bent as the second edge region approaches the corner of the anvil.
13. The set of stamping tools of claim 12, wherein the first and second regions of the first flange steel converge at an interior corner of the first flange steel, the interior corner of the first flange steel corresponding to the corner of the first anvil.
14. The set of stamping tools of claim 12, wherein the second bend surface includes a first region and the working surface includes a first region, wherein, when the second flange steel is in the closed position, the first region of the working surface opposes the first region of the second bend surface, wherein the first region of the second bend surface and the first region of the working surface are configured such that the second bend angle is greater than 90 degrees for a first length of the second edge region of the workpiece when the second flange steel moves to its closed position.
15. The set of stamping tools of claim 14, wherein the second bend surface includes a second region and the working surface includes a second region, wherein, when the second flange steel is in the closed position, the second region of the working surface opposes the second region of the second bend surface, wherein the second region of the second bend surface and the second region of the working surface are configured such that the second bend angle is constant along the first length of the second edge region of the workpiece and the second bend angle becomes less bent along a second length of the second edge region of the workpiece when the second flange steel moves to its closed position.
16. The set of stamping tools of claim 14, wherein, when the first flange steel is in its closed position, the second region of the first flange steel and the second bend surface cooperate to define the second bend angle to be less than 90 degrees at the second region of the first flange steel.
17. The set of stamping tools of claim 12, wherein the first flange steel moves in a first direction from its open position to its closed position and the second flange steel moves in a second direction from its open position to its closed position, the second direction being transverse to the first direction.
18. The set of stamping tools of claim 17, wherein the pad is movable relative to the first anvil in the second direction.
19. The set of stamping tools of claim 12, wherein the first bend angle is greater than 90 degrees.
20. The set of stamping tools of claim 12, further comprising: a second anvil including a support surface, a first bend surface, and a second bend surface, wherein the support surface of the second anvil is configured to contact the interior surface after the workpiece has been deformed by the first and second flange steels, wherein the second anvil defines a first edge at a junction between the supporting surface of the second anvil and the first bend surface of the second anvil, wherein the second anvil defines a second edge at a junction between the support surface of the second anvil and the second bend surface of the second anvil, wherein the first and second edges of the second anvil converge at a corner of the second anvil; a second pad including a second clamp surface opposing the support surface of the second anvil and configured to contact the main surface of the workpiece after the workpiece has been deformed by the first and second flange steels; and a third flange steel movable relative to the second anvil and the second pad between an open position and a closed position, wherein the third flange steel includes a working surface that opposes the second bend surface of the second anvil when the third flange steel is in the closed position, wherein the working surface of the third flange steel is configured to bend the second edge region of the workpiece to a total bend angle that is greater than 90 degrees when the third flange steel moves from the open position to the closed position.
Description
DRAWINGS
[0028] In order that the disclosure may be well understood, there will now be described various forms thereof, given by way of example, reference being made to the accompanying drawings, in which:
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[0046] The drawings described herein are for illustration purposes only and are not intended to limit the scope of the present disclosure in any way.
DETAILED DESCRIPTION
[0047] The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, or uses. It should be understood that throughout the drawings, corresponding reference numerals indicate like or corresponding parts and features.
[0048] With reference to
[0049] Returning to
[0050] The first bend surface 54 forms a sharp angle with the supporting surface 42 along the first anvil edge 46. In the example provided, the sharp angle between the first bend surface 54 and the supporting surface 42 is relatively consistent and continues all the way to the corner 66. The second bend surface 58 forms a changing angle with the supporting surface 42 along the second anvil edge 50 such that the second bend surface 58 forms a sharp angle with the supporting surface 42 in a first region 70 distal to the corner 66. The angle between the second bend surface 58 and the supporting surface 42 unwinds (i.e., becomes flatter) as the second anvil edge 50 approaches the corner 66. In other words, the second bend surface 58 generally becomes more parallel to the supporting surface 42 as the second anvil edge 50 approaches the corner 66. In the example provided, the second bend surface 58 has a relatively consistent angle in the first region 70 and begins a controlled unwinding at a second region 74 that is proximate to the corner 66. In the example provided, the angle between the second bend surface 58 and the supporting surface 42 does not fully unwind to the degree of being flat with the supporting surface 42 and, instead, maintains a slight angle proximate to the corner 66 to still define the second anvil edge 50.
[0051] When the workpiece 14 is supported on the first anvil 18, a first edge 78 of the workpiece 14 overhangs the first anvil edge 46 and a second edge 82 of the workpiece 14 overhangs the second anvil edge 50. The first and second edges 78, 82 of the workpiece 14 converge at a corner 86 of the workpiece 14 that overhangs the corner 66 of the first anvil 18.
[0052] The first pad 22 has a clamping surface 90 that opposes the supporting surface 42 and generally matches the shape of a main outer surface of the workpiece 14. In the example provided, the main outer surface of the workpiece is a Class A surface and indicated with reference numeral 94. When the first pad 22 is in the closed position (
[0053] As shown in
[0054] With reference to
[0055] When the first flange steel 26 is in the closed position, the first region 118 opposes the first bend surface 54. In the example provided, when the first flange steel 26 is in the closed position, the first region 118 is spaced apart from the first bend surface 54 by the thickness of the workpiece 14 at the first edge 78 so that moving the first flange steel 26 to the closed position bends the first edge 78 of the workpiece 14 around the first anvil edge 46 to start to form a first flange 130 (as shown in
[0056] The second flange steel 30 includes a working surface 138 that generally has a profile that corresponds to the second anvil edge 50. The working surface 138 has a profile that corresponds to a portion of the second anvil edge 50 from the second region 122 of the first flange steel 26 in the direction away from the corner 66.
[0057] When the second flange steel 30 is in the closed position, the working surface 138 opposes the second bend surface 58. In the example provided, when the second flange steel 30 is in the closed position, the working surface 138 is spaced apart from the second bend surface 58 by the thickness of the workpiece 14 at the second edge 82 so that moving the second flange steel 30 to the closed position bends the second edge 82 of the workpiece 14 around the second anvil edge 50 to form part of the second flange 134 (e.g., a first region 134-1 of the second flange 134, as shown in
[0058] With additional reference to
[0059] With additional reference to
[0060] With additional reference to
[0061] The first bend surface 242 forms a sharp angle with the supporting surface 226 along the first anvil edge 230. In the example provided, the sharp angle between the first bend surface 242 and the supporting surface 226 is sharper than the angle between the supporting surface 42 (
[0062] The second pad 218 (
[0063] With reference to
[0064] The third flange steel 222 has a continuous working surface 310 that has a first region 314 and a second region 318 that converge at an interior corner 322. The first region 314 is configured to mate with and oppose the first bend surface 242. The second region 318 is configured to mate with and oppose the second bend surface 246. The corner 322 of the third flange steel 222 is configured to mate with the corner 238 of the second anvil 214 and wrap around the junction between the first and second bend surfaces 242, 246.
[0065] In the example provided, when the third flange steel 222 is in the closed position, the first region 314 is spaced apart from the first bend surface 242 by a distance equal to the thickness of the first flange 130 and the second region 318 is spaced apart from the second bend surface 246 by a distance equal to the second flange 134. Thus, moving the third flange steel 222 to the closed position bends the first flange 130 further around the first anvil edge 230 and also bends the second flange 134 further around the second anvil edge 234.
[0066] After bending the first and second flanges 130, 134 between the second anvil 214 and the third flange steel 222, the first and second flanges 130, 134 have been bent greater than 90° relative to the Class A surface 94 along the length of the first and second edges 78, 82 including at the corner 238. Since the workpiece 14 is bent over on itself around the second anvil 214 at the first and second flanges 130, 134, the second anvil 214 must then be moved in the direction away from the corner 86 of the workpiece 14 in order to extract the workpiece 14. The interior side of the workpiece 14 after extraction is shown in
[0067] While the steps of the method are described with reference to a particular example order of the steps, this example order is not intended to be understood as the only possible order of the steps.
[0068] Thus, the teachings of the present disclosure provide stamping tools and a cost effective method for forming flanges that are bent greater than 90° all the way to the corner of the workpiece while maintaining a Class A surface proximate to the corner.
[0069] The description of the disclosure is merely exemplary in nature and, thus, variations that do not depart from the substance of the disclosure are intended to be within the scope of the disclosure. Such variations are not to be regarded as a departure from the spirit and scope of the disclosure.