A MOLD TOOL FOR INJECTION MOLDING
20240165864 ยท 2024-05-23
Assignee
Inventors
Cpc classification
B29C33/306
PERFORMING OPERATIONS; TRANSPORTING
B33Y80/00
PERFORMING OPERATIONS; TRANSPORTING
B29C33/3842
PERFORMING OPERATIONS; TRANSPORTING
B29C45/2673
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C33/38
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An injection-molding tool comprising at least two separate mold plates each having a mold insert socket with a mold insert attached in the mold insert socket. Each mold plate have mutually opposite and parallel abutting side faces defining the thickness of the mold plate and a number of mutually aligned guide bushings forming through holes adapted for axially sliding one of the mold plates with respect to the other on a common guide pin in a direction perpendicular to the abutting side faces of the mold plates. The guide bushings and the mold insert socket of at least one mold plate am interconnected via one or more connection plates each extending parallel to the abutting side faces and having a thickness of less than half the thickness of the mold plate.
Claims
1. An injection-molding tool configured for being mounted in an injection-molding apparatus for automated molding of work pieces in plastics, said injection-molding tool, in its closed position, comprising: at least two separate mold plates each having: a mold insert-socket with a mold insert attached in the mold insert socket, mutually opposite and parallel abutting side faces defining the thickness of the mold plate, and a number of mutually aligned guide bushings forming through holes adapted for axially sliding one of the at least two separate mold plates with respect to the other on a common guide pin in a direction perpendicular to the abutting side faces of the mold plates, wherein the guide bushings and the mold insert socket of at least one mold plate of the at least two separate mold plates are interconnected via one or more connection plates each extending parallel to the abutting side faces and having a thickness of less than half the at least one mold plate of the at least two separate mold plates thickness of the mold plate.
2. An injection molding tool according to claim 1, wherein the guide bushings and the mold insert socket of at least one mold plate of the at least two separate mold plates are interconnected via two mutually spaced connection plates.
3. An injection molding tool according to claim 2, wherein each of the two mutually spaced connection plates forms one of the mutually opposite and parallel abutting side faces.
4. An injection molding tool according to claim 2, wherein the mold insert socket and the guide bushings extends between the two connection plates.
5. An injection molding tool according to claim 4, further comprising a number of reinforcing flanges or rods extending between the two mutually spaced connection plates.
6. An injection molding tool according one of the claim 2, wherein the outer periphery of the two mutually spaced connection plates are at least partly interconnected by a peripheral flange.
7. An injection molding tool according to claim 6, wherein the peripheral flange extends perpendicular to the mutually opposite and parallel abutting side faces.
8. An injection molding tool according to claim 7, wherein the at least two separate mold plates forms a closed space extending between the two mutually spaced connection plates and the peripheral flange.
9. An injection molding tool according to claim 1, wherein the at least two separate mold plates are produced by additive manufacturing as single integral unit.
10. An injection molding tool according to claim 9, wherein the at least two separate mold plates are made from a polymer material.
11. An injection molding tool according to claim 8, wherein a support material used for additive manufacturing of the at least two separate mold plates is left inside the closed space.
12. An injection molding tool according to claim 1, wherein the mold insert is made from a metal material.
13. An injection molding tool according to claim 1, wherein the guide bushings each comprises a metal bushing mounted in a bushing socket formed as an integral part of the at least two separate mold plates.
14. An injection molding tool comprising: two mold clamps positioned parallel each other via abutting side faces, the two mold clamps together forming a stack of a clamping plate, support plate, runner plate, runner channel plate, and a mold plate when the injection molding tool is in a closed position, wherein each plate of the stack defines: a centrally disposed mold insert socket; and two peripheral guide bushings such that one peripheral guide bushing on one plate of the stack is aligned with a similar peripheral guide bushing on another plate of the stack, wherein the two mold clamps are configured for axial movement relative to one another along an axis defined by the peripheral guide bushings.
15. The injection molding tool of claim 14, wherein each plate of the stack is formed by additive manufacturing from a polymer material.
16. The injection molding tool of claim 14, wherein each plate of the stack forms an enclosure via two connection plates, the two connection plates joined by a peripheral flange.
17. An injection molding tool comprising: a clamping plate; a support plate; a runner plate; a runner channel plate; and a mold plate, each of the clamping, support, runner, runner channel, and mold plates defining a centrally disposed mold insert socket and two peripheral guide bushings, wherein the plates are configured for alignment such that one peripheral guide bushing on all of the plates is aligned, forming a through hole extending through all of the plates when the injection molding tool is in a closed position, the plates configured for axial movement relative to each other along an axis of the through hole.
18. The injection molding tool of claim 17, wherein each plate is formed by additive manufacturing from a polymer material.
19. The injection molding tool of claim 17, wherein each plate forms an enclosure via two connection plates, the two connection plates joined by a peripheral flange.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order that the disclosure may be more clearly understood, one or more embodiments thereof will now be described, by way of example only, with reference to the accompanying drawings.
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024] The subject technology overcomes many of the prior art problems associated with mold tools. The advantages, and other features of the technology disclosed herein, will become more readily apparent to those having ordinary skill in the art from the following detailed description of certain preferred embodiments taken in conjunction with the drawings which set forth representative embodiments of the present technology and wherein like reference numerals identify similar structural elements. Directional indications such as upward, downward, right, left and the like are used with respect to the figures and not meant in a limiting manner.
[0025]
[0026] The mold plates thereby forms a stack, where each mold plate 1, 2, 3, 4 and 5 have mutually opposite and parallel abutting side faces (14, 15, defining the thickness of the mold plate 1, 2, 3, 4, 5).
[0027] Each of the mold plates 1, 2, 3, 4 and 5 according to
[0028] The injection molding tool shown in
[0029] According to the present disclosure, however, one or more of the injection mold plates may be made from one or more connection plates connecting the guide bushings with the mold insert sockets and where the connection plates are thinner than the thickness of the injection mold plate.
[0030] Furthermore, according to one embodiment of the present disclosure, and as shown in
[0031] Each of the mold plates 1, 2, 3, 4 and 5 further comprises a mold insert socket 12, 13 for releasably insertion of a mold insert 6, 7.
[0032] According to the embodiment of the disclosure shown in
[0033] The periphery of the connection plates 19, 20 are furthermore connected along their complete periphery by a peripheral flange 21 so that the connection plates 19, 20 form a closed space together with the peripheral flange 21. Although it is not shown in
[0034]
[0035] The one or more embodiments are described above by way of example only. Many variations are possible without departing from the scope of protection afforded by the appended claims.
[0036] It will be appreciated by those of ordinary skill in the pertinent art that the functions of several elements may, in alternative embodiments, be carried out by fewer elements, or a single element. Similarly, in some embodiments, any functional element may perform fewer, or different, operations than those described with respect to the illustrated embodiments. Also, functional elements shown as distinct for purposes of illustration may be incorporated within other functional elements in a particular implementation.
[0037] While the subject technology has been described with respect to preferred embodiments, those skilled in the art will readily appreciate that various changes and/or modifications can be made to the subject technology without departing from the spirit or scope of the subject technology as exemplified by the appended claims.