Molding apparatus
10226890 ยท 2019-03-12
Assignee
Inventors
Cpc classification
B29C48/0019
PERFORMING OPERATIONS; TRANSPORTING
B29K2021/00
PERFORMING OPERATIONS; TRANSPORTING
B29C48/0016
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A molding apparatus includes an extrusion die having an extruding orifice and a projection forming orifice, and a rotor rotatably installed in a middle portion of the extrusion die and having a forming recess adjacent to the projection forming orifice.
Claims
1. A molding apparatus comprising: an extrusion die having an extruding orifice and a projection forming orifice; and a rotor rotatably installed in a middle portion of the extrusion die and having a forming recess adjacent to the projection forming orifice, wherein the extruding orifice includes a first extruding orifice disposed at an upstream side of the forming recess and a second extruding orifice disposed at a downstream side of the forming recess, and wherein the projection forming orifice includes a first projection forming orifice disposed at the upstream side of the forming recess and a second projection forming orifice disposed at the downstream side of the forming recess.
2. The molding apparatus according to claim 1, wherein the extruding orifice has an extrusion shape, and the projection forming orifice forms has a projection shape in cooperation with the forming recess.
3. The molding apparatus according to claim 1, wherein the first extruding orifice and the second extruding orifice have the same shape and the same size.
4. The molding apparatus according to claim 3, wherein the first projection forming orifice has a cross-sectional area larger than that of the second projection forming orifice.
5. The molding apparatus according to claim 4, wherein the extrusion die includes a first extrusion die positioned in a direction in which a material is introduced and a second extrusion die positioned in a direction in which the material is discharged.
6. The molding apparatus according to claim 5, wherein the first extruding orifice and the first projection forming orifice are in the first extrusion die, and the second extruding orifice and the second projection forming orifice are in the second extrusion die.
7. The molding apparatus according to claim 5, wherein the rotor is rotatably installed between the first extrusion die and the second extrusion die.
8. The molding apparatus according to claim 7, wherein an accommodation surface rotatably accommodating the rotor is provided in portions of the first extrusion die and the second extrusion die facing each other.
9. The molding apparatus according to claim 8, wherein the accommodation surface corresponds to an outer surface of the rotor.
10. A molding apparatus for forming an extrusion product having an extrusion shape and including one or more projections integrally formed thereon, the molding apparatus comprising: an extrusion die having an extruding orifice for the extrusion shape and a projection forming orifice for a projection shape; and a rotor rotatably installed in a middle portion of the extrusion die and having a forming recess for the projection shape in cooperation with the projection forming orifice, wherein the extrusion die includes: a first extrusion die positioned in a direction in which a material is introduced; and a second extrusion die positioned in a direction in which the material is discharged.
11. The molding apparatus according to claim 10, wherein the first extrusion die has a first extruding orifice and a first projection forming orifice, the second extrusion die has a second extruding orifice and a second projection forming orifice, the first extruding orifice and the second extruding orifice communicate with each other, and the first projection forming orifice and the second projection forming orifice communicate with each other.
12. The molding apparatus according to claim 11, wherein the rotor is rotatably installed between the first extrusion die and the second extrusion die.
13. The molding apparatus according to claim 12, wherein an accommodation surface rotatably accommodating the rotor is provided in portions of the first extrusion die and the second extrusion die facing each other.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other objects, features and advantages of the present disclosure will be more apparent from the following detailed description taken in conjunction with the accompanying drawings.
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DETAILED DESCRIPTION
(10) Hereinafter, exemplary embodiment of the present disclosure will be described in detail with reference to the accompanying drawings. For reference, dimensions of elements or thicknesses of lines illustrated in the drawings referred to describe the present disclosure may be exaggerated to aid understanding. Also, the terms used henceforth have been defined in consideration of the functions of the present disclosure, and may be altered according to the intent of a user or operator, or conventional practice. Therefore, the terms should be defined on the basis of the entire content of this specification.
(11) As illustrated in
(12) As illustrated in
(13) The first extrusion die 11 may have a first extruding orifice 13 and a first projection forming orifice 15.
(14) The second extrusion die 12 may have a second extruding orifice 14 and a second projection forming orifice 16.
(15) As illustrated in
(16) Also, as the first extrusion die 11 and the second extrusion die 12 may be assembled as illustrated in
(17) The pair of rotors 21 and 22 may be rotatably installed in mutually opposite directions between the first extrusion die 11 and the second extrusion die 12, and the forming recesses 23 and 24 for forming the projections 2 of
(18) The first extrusion die 11 and the second extrusion die 12 each may have accommodation surfaces 17 and 18 rotatably accommodating the rotors 21 and 22 in portions thereof facing each other.
(19) As illustrated in
(20) Although not shown in
(21) As illustrated in
(22) The pair of forming recesses 23 and 24 may be disposed between the first projection forming orifice 15 of the first extrusion die 11 and the second projection forming orifice 16 of the second extrusion die 12. Thus, when a material is transferred through the first projection forming orifice 15, the pair of rotors 21 and 22 may rotate to face each other and the pair of forming recesses 23 and 24 may first form the material to have a shape corresponding to the projection 2 of
(23) That is, the pair of forming recesses 23 and 24 may be parts for forming the projection 2, and the first projection forming orifice 15 may be a transfer path for transferring an introduced material to the forming recesses 23 and 24 and the second projection forming orifice 16 may be a finishing path finishing a shape of the projection 2 formed by the forming recesses 23 and 24 of the rotors 21 and 22 as described hereinafter.
(24) In particular, as illustrated in
(25) The second projection forming orifice 16 may have the same shape and the same size as those of the projection 2 of a product, and in particular, the second projection forming orifice 16 may have substantially the same shape and size as those of the pair of forming recesses 23 and 24 as illustrated in
(26) In the molding apparatus according to the present disclosure configured as described above, an extrusion forming process and a projection forming process performed in the process of introducing a material to the first extrusion die 11 and subsequently discharging the material through the second extrusion die 12 will be described in detail.
(27) When a material is introduced to the first extruding orifice 13 and the first projection forming orifice 15 of the first extrusion die 11, the material may be extruded, while passing through the first extruding orifice 13 and the second extruding orifice 14, to form the body part 1 having a fixed cross-sectional profile in the length direction as illustrated in
(28) Also, the material transferred through the first projection forming orifice 15 may be formed as the projection 2 integrally formed in the body part 1 as illustrated in
(29) A projection forming process for forming the projection 2 will be described in detail. When the pair of rotors 21 and 22 rotate in opposite directions such that the pair of forming recesses 23 and 24 face each other as illustrated in
(30) In a case where a plurality of projections 2 are intended to be formed in a lower end of the body part 1 at a predetermined interval, a rotating speed of the rotors 21 and 22 may be adjusted to appropriately adjust a space between the projections 2.
(31) In the above descriptions, it is described that shapes and sizes of the first extruding orifice 13, the second extruding orifice 14, the first projection forming orifice 15, and the second projection forming orifice 16 may correspond to those of the product illustrated in
(32) As described above, according to an exemplary embodiment of the present disclosure, since one or more rotors having forming recesses for forming a projection may be configured to rotate in a middle portion of the extrusion die, extrusion forming and projection forming may be performed through a single process, whereby a product having an extrusion shape in which one or more projections may be integrally formed may be rapidly and precisely formed.
(33) Hereinabove, although the present disclosure has been described with reference to exemplary embodiments and the accompanying drawings, the present disclosure is not limited thereto, but may be variously modified and altered by those skilled in the art to which the present disclosure pertains without departing from the spirit and scope of the present disclosure claimed in the following claims.