Bending device with rotating bending dies
20180207701 ยท 2018-07-26
Inventors
Cpc classification
B21D11/10
PERFORMING OPERATIONS; TRANSPORTING
G09F7/16
PHYSICS
B21D11/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21D11/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention is directed towards an automated bending device for bending a strip of material into a desired shape. The device is either a single or dual bending tool with interchangeable rotating bending dies which allows for a faster transition from a break bend to a radius bend using air cylinders for positioning of the tools.
Claims
1. A channel letter bending device for bending a strip of metal material at predetermined locations as said strip of metal material is continuously fed though said device, said device comprising: a surface upon which at least two opposed drive rollers are rotatably connected thereto, said drive rollers are constructed and arranged to drive said strip of metal material along a feed path; a pair of rotating bending dies, each said die have a first end defining a circular diameter and a second end configured with side walls ending in a sharp point; a first bending ram secured to a rotating assembly, said bending ram constructed and arranged to independently position the metal material on either side of and across said feed path for creating at least one radius when one said die is rotated to engage the first end of one said die or a sharp angle when one said die is rotated to engage the second end at predetermined locations along said strip of material.
2. The channel letter bending device according to claim 1 wherein said first bending ram is stored in a position beneath said surface and raised into position with an air cylinder.
3. The channel letter bending device according to claim 1 wherein said bending ram has a diameter of about inch.
4. The channel letter bending device according to claim 1 wherein said bending dies are interchangeable.
5. The channel letter bending device according to claim 1 wherein said bending dies are constructed and arranged to clamp the material piece.
6. The channel letter bending device according to claim 1 including a pair of opposing drive rollers positioned along a feed path, said drive rollers maintaining the material piece in a substantially perpendicular direction relative to the surface.
7. The channel letter bending device according to claim 1 including a second bending ram secured to a rotating assembly, said bending ram constructed and arranged to independently position the metal material on either side of and across said feed path for creating at least one radius when one said die is rotated to engage the first end of one said die or a sharp angle when one said die is rotated to engage the second end at predetermined locations along said strip of material, wherein said first bending ram is for negative bends and second bending ram is for positive bends.
8. The channel letter bending device according to claim 7 wherein said second bending ram is stored in a position above said surface and lowered into position with an air cylinder.
9. A channel letter bending device for bending a strip of metal material at predetermined locations as said strip of metal material is continuously fed though said device, said device comprising: a surface upon which at least two opposed drive rollers are rotatably connected thereto, said drive rollers are constructed and arranged to drive said strip of metal material along a feed path; a pair of rotating bending dies, each said die have a first end defining a circular diameter and a second end configured with side walls ending in a sharp point; a first bending ram for negative bends secured to a rotating assembly, said bending ram constructed and arranged to independently position the metal material on either side of and across said feed path for creating at least one radius when one said die is rotated to engage the first end of one said die or a sharp angle when one said die is rotated to engage the second end at predetermined locations along said strip of material, said first bending ram stored in a position beneath said surface and raised into an operating position with a first air cylinder; and a second bending ram for positive bends secured to a rotating assembly, said bending ram constructed and arranged to independently position the metal material on either side of and across said feed path for creating at least one radius when one said die is rotated to engage the first end of one said die or a sharp angle when one said die is rotated to engage the second end at predetermined locations along said strip of material, said second bending ram stored in a position above said surface and lowered into an operating position with a second air cylinder.
10. The channel letter bending device according to claim 9 wherein each said bending ram has a diameter of about inch.
11. The channel letter bending device according to claim 9 wherein said bending dies are interchangeable.
12. The channel letter bending device according to claim 9 wherein said bending dies are constructed and arranged to clamp the material piece.
13. The channel letter bending device according to claim 1 comprising at plurality of opposing drive rollers positioned along a feed path, said drive rollers maintaining the material piece in a substantially perpendicular direction relative to the surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0038] Detailed embodiments of the instant invention are disclosed herein, however, it is to be understood that the disclosed embodiments are merely exemplary of the invention, which may be embodied in various forms. Therefore, specific functional and structural details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art to employ the present invention in virtually any appropriately detailed structure.
[0039] Referring now in general to
[0040] Referring to
[0041] When a sharp corner is desired on the strip of material, the bending ram actuator air cylinder (62) lifts the bending ram (24) into position using push rod (60) and consequently places it into the upper position on the rotating platform. The combination of the bending ram (24) positioning and the dies (20) and (22) permit the sharp and round bending rollers to be positioned wherein the material can be bent from the left or right side while it is conveyed down the feed path.
[0042] In operation, the design information regarding the desired shape of the material strip is input into a computer. The computer's software uses information obtained from at least one position sensor and the design information, and transforms this information into signals that are used to control the speed and timing of all the various devices according to the design instructions, for example, the speed of the stepper motor and the drive rollers, positioning of the bending dies, and placement of the bending ram.
[0043] The rotating die in this device is interchangeable, which eliminates the need for a second bending tool and to roll form radiuses, as generally illustrated in
[0044] The illustration in
[0045] Referring now in general to
[0046] The bending tool device (100) further supports a bending tool (204) for positive bends. The bending device (100) employs the rear support (108) with drive rollers (121) and (123) along a feed path which serve to maintain a strip of material in a perpendicular position relative to the surface of the base plate (102). Cylinder disk extension shaft (250) and the bending tool cylinder disk (252) are positioned above the tool base plate (102) to provide a tool for positive bends. The bending tool (204) is placed in position by a push rod (260) that is driven by an air cylinder (262). A material shear actuator (264) is positioned within a protective housing (266). The bending ram (124) is controlled by a bending ramp top capture member (128) and bending tool pin capture member (130). An upper gear (138) is mounted above a bending tool top riser support used for driving the bending tool (204). A bending ram capture (143) is located along the lower section of the bending ram (124) for holding material about the radius bending rollers (149). The bending ram (124) has a clamp reinforcement air cylinder (153) to secure a material in position. A lower gear and cylinder mount disk (144) is positioned beneath the bending tool base plate (102), and is rotated by an electric motor (146) coupled to a bending tool servo mount.
[0047] Referring to
[0048] When a sharp corner is desired on the strip of material, the bending ram actuator air cylinder (162) lifts the bending ram (124) into position using push rod (160) and consequently places it into the upper position on the rotating platform. The combination of the bending ram (124) positioning and the dies (120) and (122) permit the sharp and round bending rollers to be positioned wherein the material can be bent from the left or right side while it is conveyed down the feed path.
[0049] In operation, the design information regarding the desired shape of the material strip is input into a computer. The computer's software uses information obtained from at least one position sensor and the design information, and transforms this information into signals that are used to control the speed and timing of all the various devices according to the design instructions, for example, the speed of the stepper motor and the drive rollers, positioning of the bending dies, and placement of the bending ram.
[0050] As depicted in
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[0053] It is to be understood that while a certain form of the invention is illustrated, it is not to be limited to the specific form or arrangement herein described and shown. It will be apparent to those skilled in the art that various changes may be made without departing from the scope of the invention, and the invention is not to be considered limited to what is shown and described in the specification.
[0054] One skilled in the art will readily appreciate that the present invention is well adapted to carry out the objectives and obtain the ends and advantages mentioned, as well as those inherent therein. The embodiments, methods, procedures and techniques described herein are presently representative of the preferred embodiments, are intended to be exemplary, and are not intended as limitations on the scope. Changes therein and other uses will occur to those skilled in the art which are encompassed within the spirit of the invention and are defined by the scope of the appended claims.