CONCORDANT STEP REGISTER
20200122379 ยท 2020-04-23
Assignee
Inventors
Cpc classification
B29C48/3001
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An extrusion die may include a first die component and a second die component configured to mate with one another. The first die component may have a first body with a rim extending axially therefrom and at least one first channel through which a material is flowable, where the rim may define a recess. The second die component may have a second body with a platform extending axially therefrom and at least one second channel through which the material is flowable. The recess of the first die component may be configured to receive the platform. The rim of the first die component may include at least one protrusion extending radially into the recess, and the platform may include at least one notch complementary to the at least one protrusion to form a concordant step register for positioning the first die component and the second die component with respect to each other.
Claims
1. An extrusion die comprising: a first die component and a second die component configured to mate with one another; wherein the first die component includes a first body with a rim extending axially therefrom and at least one first channel through which a material is flowable, the rim defining a recess; wherein the second die component includes a second body with a platform extending axially therefrom and at least one second channel through which the material is flowable, the recess of the first die component being configured to receive the platform; wherein at least one of: the rim of the first die component includes at least one protrusion extending radially into the recess, and the platform of the second die component includes at least one notch complementary to the at least one protrusion to form a concordant step register for positioning the first die component and the second die component with respect to each other; and the platform of the second die component includes at least one protrusion extending radially outward therefrom, and the rim of the first die component includes at least one notch complementary to the at least one protrusion to form the concordant step register.
2. The extrusion die of claim 1, wherein the at least one protrusion includes two protrusions, and the at least one notch includes two notches each complementary to a respective one of the two protrusions.
3. The extrusion die of claim 2, wherein the two protrusions are arranged substantially diametrically opposed from one another.
4. The extrusion die of claim 2, wherein the two protrusions are substantially symmetrical to one another.
5. The extrusion die of claim 1, wherein the at least one protrusion and the at least one notch have substantially the same shape.
6. The extrusion die of claim 1, wherein at least one of the at least one protrusion and the at least one notch has a substantially triangular shape.
7. The extrusion die of claim 1, wherein at least one of: the first body includes at least one depression; and the second body includes an interior structure at least partially disposed in the at least one second channel.
8. The extrusion die of claim 1, wherein the at least one protrusion is dog-eared shaped.
9. The extrusion die of claim 1, wherein the at least one protrusion has a first side defined by a length, and a second side that is defined by a height, the length is greater than the height.
10. A method of manufacturing an extrusion die, comprising: forming a first die component having a first body with a rim extending axially therefrom and defining a recess, the rim having at least one of at least one proj ection extending radially into the recess and at least one notch; and forming a second die component having a second body with a platform extending axially therefrom to be received in the recess of the first die component, the platform having at least one of at least one notch and at least one projection extending radially outward; wherein the first at least one notch of the platform is complimentary to the at least one projection of the rim, and the at least one notch of the rim is complimentary to the at least one projection of the platform; and wherein the first die component and the second die component are removable from one another and form the extrusion die.
11. The method of claim 10, wherein at least one of the forming of the first die component and the forming of the second die component is done by machining.
12. The method of claim 10, wherein the machining is via a CNC machine.
13. The method of claim 10, wherein the at least one projection includes two projections, and the at least one notch includes two notches each complementary to a respective one of the two projections.
14. The method of claim 13, wherein the two projections are arranged substantially diametrically opposed from one another.
15. The method of claim 13, wherein the two projections are substantially symmetrical to one another.
16. The method of claim 10, wherein the at least one projection and the at least one notch have substantially the same shape.
17. The method of claim 10, wherein at least one of the at least one projection and the at least one notch has a substantially triangular shape.
18. The method of claim 10, wherein at least one of: the first body includes at least one depression; and the second body includes an interior structure at least partially disposed in at least one second channel.
19. A method for extruding a part, comprising: aligning a first die component with a second die component by aligning at least one member extending inward from a rim of the first die component with a complementary notch in the second die component; and receiving the platform in a recess defined by the rim of the first die component to form an extrusion die; and feeding a billet of a material through the extrusion die.
20. The method of claim 19, wherein the material is aluminum.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0005] Referring now to the drawings, illustrative embodiments are shown in detail. Although the drawings represent some embodiments, the drawings are not necessarily to scale and certain features may be exaggerated, removed, or partially sectioned to better illustrate and explain the present disclosure. Further, the embodiments set forth herein are not intended to be exhaustive or otherwise limit or restrict the claims to the precise forms and configurations shown in the drawings and disclosed in the following detailed description.
[0006]
[0007]
[0008]
[0009]
[0010]
[0011]
[0012]
DETAILED DESCRIPTION
[0013] An extrusion die may include a first die component and a second die component configured to mate with one another. The first die component may have a first body with a rim extending axially therefrom and at least one first channel through which a material is flowable, where the rim may define a recess. The second die component may have a second body with a platform extending axially therefrom and at least one second channel through which the material is flowable. The recess of the first die component may be configured to receive the platform. The rim of the first die component may include at least one protrusion extending radially into the recess, and the platform may include at least one notch complementary to the at least one protrusion to form a concordant step register for positioning the first die component and the second die component with respect to each other. Alternatively or additionally, the platform may include at least one protrusion extending radially outward therefrom, and the rim may include at least one complementary notch to form the concordant step register. The concordant step register may eliminate or reduce the number of locating holes and corresponding dowels/pins traditionally used to locate the first die component and second die component, which would ease manufacturing the die components, assembling, and disassembling the die components.
[0014] Referring to the figures,
[0015] The first die component 12, illustrated in
[0016] The second die component 14, illustrated in
[0017]
[0018] To aid in locating the first die component 12 and the second die component 14 with respect to each other for assembly into the extrusion die 10, the first die component 12 and the second die component 12 may collectively include a concordant step register 19. See
[0019] The second die component 14 may include at least one recess or notch 36 in the platform 28 that corresponds to one of the protrusions 34 of the first die component 12. The number of notches 36 generally may be the same as the number of protrusions, as illustrated in
[0020] In one exemplary approach, the protrusions 34 may be generally dog-eared or triangular in shape. As seen in
[0021] Generally, the concordant step register 19 is a self-aligning mechanism that is, in part, the protrusion(s) 34 mating with the notch(es) 36. They may work in concert to lock the first die component 12 and the second die component 14 relative to one another, acting as somewhat of an anti-rotational feature. The concordant step register 19 may eliminate or reduce the number of locating holes and corresponding dowels/pins traditionally used to locate the first die component and second die component, which would ease manufacturing the die components, assembling, and disassembling the die components.
[0022] Referring now to
[0023] The method of assembling the first die component 12 and the second die component 14 includes providing the dies that have been manufactured in steps 102 and 104. Once completed, the first die component 12 may be positioned relative to the second die component 14. Next the two components 12 and 14 are aligned relative to one another such that the protrusion 34 is positioned into the notch 36 until the parts seat against one another tightly. The fit between protrusion 34 and notch 36 is a locking fit where the two components 12 and 14 cannot rotate but instead they are now unitary. Clamps 50 and 52 may now exert pressure and hold the die components 12 and 14 relative to one another. The extruding process may now begin. To disassemble the die 10, the clamps 50 and 52 are released, thus allowing the die components 12 and 14 to be pulled apart or otherwise disassembled.
[0024] Referring now to
[0025] With regard to the processes, systems, methods, heuristics, etc. described herein, it should be understood that, although the steps of such processes, etc. have been described as occurring according to a certain ordered sequence, such processes could be practiced with the described steps performed in an order other than the order described herein. It further should be understood that certain steps could be performed simultaneously, that other steps could be added, or that certain steps described herein could be omitted. In other words, the descriptions of processes herein are provided for the purpose of illustrating certain embodiments, and should in no way be construed so as to limit the claims.
[0026] It will be appreciated that the aforementioned method and devices may be modified to have some components and steps removed, or may have additional components and steps added, all of which are deemed to be within the spirit of the present disclosure. Even though the present disclosure has been described in detail with reference to specific embodiments, it will be appreciated that the various modifications and changes can be made to these embodiments without departing from the scope of the present disclosure as set forth in the claims. The specification and the drawings are to be regarded as an illustrative thought instead of merely restrictive thought.
[0027] All terms used in the claims are intended to be given their broadest reasonable constructions and their ordinary meanings as understood by those knowledgeable in the technologies described herein unless an explicit indication to the contrary in made herein. In particular, use of the singular articles such as a, the, said, etc. should be read to recite one or more of the indicated elements unless a claim recites an explicit limitation to the contrary.