SIDEWAYS FORMING
20180214931 ยท 2018-08-02
Inventors
Cpc classification
B21D28/28
PERFORMING OPERATIONS; TRANSPORTING
B21D28/325
PERFORMING OPERATIONS; TRANSPORTING
B21J13/025
PERFORMING OPERATIONS; TRANSPORTING
B21J9/027
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A progressive former having a bolster and a ram reciprocal towards and away from the bolster, a plurality of workstations evenly spaced across the bolster and ram including aligned tooling piece holders on the bolster and ram, cylindrical die cases in the tooling holders on the bolster and cylindrical tool cases in the tooling holders on the ram, the tooling cases at the workstations being coaxial, a sideways forming mechanism at one of said workstations, the mechanism including a cam and a cam follower radially outward of imaginary outward projections of the associated tooling cases, the cam follower being arranged to be activated by forward motion of the ram towards the bolster, the mechanism including a tool for forming the blank by applying a sideways force on the blank.
Claims
1. A progressive former having a bolster and a ram reciprocal towards and away from the bolster, a plurality of workstations spaced evenly along the bolster and ram including aligned tooling piece holders on the bolster and ram, cylindrical die cases in the tooling holders on the bolster and cylindrical tool cases in the tooling holders on the ram, the die cases and tool cases at the workstations being coaxial, a sideways forming mechanism at one of said workstations, the sideways forming mechanism including a cam and a cam follower radially outward of an associated tool case or die case, the cam follower being arranged to be activated by forward motion of the ram towards the bolster, the sideways forming mechanism including a tool for forming a blank by applying a sideways force on the blank.
2. A progressive former having a bolster and a ram reciprocal towards and away from the bolster, a plurality of workstations spaced evenly along the bolster and ram including aligned tooling case holders on the bolster and ram, a sideways forming mechanism at one of said workstations, the sideways forming mechanism including a slide guided for movement perpendicular to a line between the tooling case holders at said one station, the slide being arranged to be activated by forward motion of the ram towards the bolster, the sideways forming mechanism including a tool for forming a blank by applying a sideways motion with the slide on the blank.
3. A progressive former having a bolster and a ram reciprocal towards and away from the bolster, a plurality of workstations spaced evenly along the bolster and ram including die blocks on the bolster and tool holders on the ram, die cases in the die blocks on the bolster and cylindrical tool cases in the tool holders on the ram, the cylindrical tool cases and die cases at the workstations being coaxial, a sideways forming mechanism at one of said workstations, the die case at said one workstation being retractable into the die block and carrying a slide of said sideways forming mechanism, a cam operable to direct the slide towards an axis of the one workstation when the die case retracts into the die block in response to the ram approaching front dead center, the slide carrying a piercing tool effective to displace a slug from a wall of a blank located at said one workstation.
4. A progressive former as set forth in claim 3, wherein the cam is carried on the die block.
5. A progressive former as set forth in claim 3, wherein the slide carries a secondary slide and the cam is a double-faced element, a first face being arranged to displace the slide and a second face being arranged to displace the secondary slide in a direction opposite the direction that the first mentioned slide is directed.
6. A progressive former as set forth in claim 5, wherein blank gripping elements are arranged to grip said blank in the die case when the ram approaches front dead center.
7. A progressive former as set forth in claim 3, including a mandrel carried by the tool case at said one station, the mandrel being receivable within a tubular blank to support a cylindrical wall of the blank when the cylindrical wall is pierced by said piercing tool.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007]
[0008]
[0009]
[0010]
[0011]
DESCRIPTION OF THE PREFERRED EMBODIMENT
[0012]
[0013] In the present arrangement, the invention is utilized at the last workstation 11E, shown in the foreground in
[0014] The tooling includes a die block 22 removably fixed to the die breast plate 13, a generally cylindrical die case 23 received in the die block, a tool holder 24 removably fixed to the ram housing 16, and a generally cylindrical tool case 25 received in the tool holder.
[0015] The blank or workpiece 21 which, in the illustrated case as it is transferred to the last workstation 11E, is a hollow cylindrical article with an internal wall 26. The blank 21 is held immediately in front of the die case 23 by fingers of the transfer mechanism in a manner known in the art.
[0016] The die case 23, shown in a forwardmost position in
[0017] The section view of
[0018] In the illustrated embodiment, the side action mechanism 28 is arranged to pierce the workpiece or blank 21 on diametrically opposed sides. Pierce pins or tools 36, most clearly shown in
[0019] As the ram 17 advances the tool case 25 towards the die breast plate 13, a blank delivery sleeve at the center of and leading the tool case pushes the blank 21 into the die case 23 between the blank grip wedges 33. Thereafter, a projecting central area of the tool case 25 pushes the grip wedges 33 into a tapered slot in the die case 23. The tapered slot causes the wedges 33 to tightly radially clamp onto the blank 21 and prevent the blank from movement under piercing loads.
[0020] Advance of the ram 17 causes the tool case 25 to contact and then drive the die case 23 into the die block 22. A study of
[0021] A pusher 53 rigidly bolted to the tool case 25 engages the lower part of the primary driver 41 and secondary driver 42 to assure that these elements remain aligned with the die case groove 44 during their sideways stroke.
[0022] The pierce pins 36, guided by associated holes in the grip wedges 33 shear slugs of circular or other shape from the wall of the blank 21. Relative axial movement between the grip wedges 33 and the drivers 41, 42 is accommodated by T-slots 39 in the drivers in which the retraction sleeve flanges 38 are assembled. A mandrel 57 projecting from the blank delivery sleeve 46 supports the interior of the blank 21 during the piercing step. Screws 58 in the tool case 25 provide axial adjustment of the mandrel 57 so that holes in the mandrel are in line with the pierce pins 36. The slugs formed by the pierce pins 36 are swept out of the mandrel 57 by a vacuum applied to a tube 56.
[0023] When the tool case 25 and pusher 53 retract with the ram 17, the gas springs push the die case 23 out of the die block 22 to the position illustrated in
[0024] The disclosed side action mechanism 28 is very strong for its size. As disclosed, the mechanism 28 is carried on the tooling so that it avoids modification of the basic parts of the machine 10. Consequently, the mechanism can be employed at substantially any workstation and can be used in machines that have been previously manufactured and are in field service.
[0025] It should be evident that this disclosure is by way of example and that various changes may be made by adding, modifying or eliminating details without departing from the fair scope of the teaching contained in this disclosure. The invention is therefore not limited to particular details of this disclosure except to the extent that the following claims are necessarily so limited.