A DIRECT INJECTION MOLDING APPARATUS AND A METHOD OF INJECTION MOLDING
20190315025 · 2019-10-17
Inventors
Cpc classification
B29C45/02
PERFORMING OPERATIONS; TRANSPORTING
B29C45/80
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C45/02
PERFORMING OPERATIONS; TRANSPORTING
B29C45/27
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to an apparatus (1) for injection molding, said apparatus comprising -a mold cavity member (20) having a mold cavity (22), -a melt channel, -an injection chamber (16) and -an injection gate having an injection gate hole (24). The apparatus further comprises a movable injection sleeve (10) and furthermore -the melt channel is configured for providing a flow of molten material from a source of molten material to an injection chamber (16), -the apparatus (1) is configured for transferring the molten material from the injection chamber (16) to the mold cavity (22) via said injection gate hole (24), said injection gate being controllable by a forward part of a movable filling valve (6), and -the injection chamber (16) has a volume that is controllable by movement of the movable injection sleeve (10). The invention further relates to a method of injection molding.
Claims
1. An apparatus for injection molding, said apparatus comprising a mold cavity member having a mold cavity, a melt channel, an injection chamber and an injection gate having an injection gate hole, wherein said apparatus further comprises a movable injection sleeve, wherein said melt channel is configured for providing a flow of molten material from a source of molten material to the injection chamber, said apparatus is configured for transferring the molten material from the injection chamber to the mold cavity via said injection gate hole, said injection gate being controllable by a forward part of a movable filling valve, and wherein said injection chamber has a volume that is controllable by movement of the movable injection sleeve.
2. The apparatus according to claim 1, wherein the apparatus is configured for transferring the molten material from the injection chamber to the mold cavity by controllably reducing the volume of the injection chamber.
3. The apparatus according to claim 1, wherein said injection chamber is defined at least partly by said movable injection sleeve.
4. The apparatus according to claim 3, wherein said apparatus is configured for controlling the volume of the injection chamber by axially moving said movable injection sleeve.
5. The apparatus according to claims 1-4, wherein said injection chamber and/or said melt channel is heated.
6. The apparatus according to claim 1, wherein said apparatus comprises an injection chamber body, which at least partly defines said injection chamber.
7. The apparatus according to claim 1, wherein said apparatus comprises a purge channel for transferring said molten material from said melt channel to said injection chamber, said purge channel being controllable by said movable filling valve.
8. The apparatus according to claim 1, wherein said apparatus further comprises at least one injection channel that is controllable by said movable filling valve.
9. The apparatus according to claims 7, wherein said movable filling valve configured for controlling said purge channel and said at least one injection channel is reciprocatable between a first position with said at least one injection channel closed and said purge channel open for flow of molten material to said injection chamber and a second position with said at least one injection channel open and said purge channel closed for flow of molten material to said injection chamber.
10. The apparatus according to claim 9, wherein the apparatus is configured for transferring the molten material from the injection chamber via said at least one injection channel to the mold cavity with said movable filling valve positioned in said second position.
11. The apparatus according to claim 1, wherein said movable filling valve comprises at least part of said melt channel, e.g. in the form of an inner channel, which is heated.
12. The apparatus according to claim 1, wherein said movable filling valve is further configured with an inlet for receiving said molten material supplied from said source of molten material via a heated manifold having a manifold supply channel.
13. The apparatus according to claim 12, wherein the flow of molten material in said melt channel from said heated manifold to said inlet of the movable filling valve is controllable by movement of the movable filling valve.
14. A method of injection molding, the method using an apparatus comprising a mold cavity member having a mold cavity, a melt channel, an injection chamber, an injection gate having an injection gate hole controllable by a movable filling valve a movable injection sleeve and at least one injection channel, said method comprising the steps of providing a flow of molten material from a source of molten material to the injection chamber via the melt channel, the purged melt moving the movable injection sleeve to create a desired injection volume in the injection chamber while the at least one injection channel is closed by said movable filling valve, closing the flow of molten material from the source of molten material when an amount of molten material received in the injection chamber corresponds to the mold cavity, opening the injection gate hole, transferring the amount of molten material in the injection chamber through the at least one injection channel to the mold cavity via movement of said movable injection sleeve, closing the movable filling valve and resuming the flow of molten material from the source of molten material to the injection chamber via the melt channel.
15. The method according to claim 14, said method using an apparatus according to claim 1.
Description
THE FIGURES
[0064] The invention will be explained in further detail below with reference to the figures of which
[0065]
[0066]
[0067]
[0068]
[0069]
[0070]
[0071]
[0072]
DETAILED DESCRIPTION
[0073] An example of an injection molding apparatus 1 according to an embodiment of the invention is shown in
[0074] It is noted that a mold core (not shown in the figures) or the like may be configured to be positioned within the mold cavity member 20, e.g. in order to define a cavity space in the shape of the component that it is desired to mold, as it will be apparent to a skilled person.
[0075] Furthermore, in
[0076]
[0077] Thus, it is shown in
[0078] Further, it is shown in
[0079] In
[0080]
[0081] As it further appears from
[0082] The movement of the movable injection sleeve 10 and the movable filling valve 6 may as shown be effected by means of drive means 34 and 35, respectively, that may be controlled by a shared control device 36, e.g. on the basis of input variables 37.
[0083] The drive means 34 and 35 may for example be mechanically, electrically and/or hydraulically driven servo units or the like.
[0084] In the following an example of the functioning of an injection molding apparatus 1 according to an embodiment of the invention will be explained with reference to
[0085] In
[0086] Here, the movable injection sleeve 10 and the movable filling valve 6 are both positioned to the left in the figures. The molten material thus flows in the melt channel via the inlet 33, the manifold supply channel 4 and the inlet 28 into the inner channel 8 in the movable filling valve 6, which, as it will be understood, is closed at the rear end, i.e. to the right in
[0087] In
[0088] This is shown in
[0089] Thus, the injection molding apparatus is ready to perform the injection of the molten material into the mold cavity 22 as it is shown in
[0090] Hereafter, the last step in the cycle is being performed, as it will be exemplified with reference to
[0091] It is noted that
[0092] Further, it is noted that as indicated above the movable injection sleeve 10 is adjustable as regards the position where it stops its movement rearwards, i.e. away from the mold cavity member 20, such that the size/volume of the injection chamber 16 corresponds to the size of the mold cavity 22. Thus, it will be understood that this stop position can be adjusted, when e.g. a new or larger type of component is to be molded. This can be effected via the control device 36, for example via control parameters supplied to the control device 36 as input variables 37.
[0093] As regards the injection channel 30 it is noted that this may be designed as one or more channels that are made in the forward part of the movable filling valve 6, e.g. as one or more axial channels that when the movable filling valve 6 is in its forward position is/are closed towards for example a part of the mold cavity member 20, e.g. near the entry to the injection gate hole 24.
[0094] The movable injection sleeve 10 may as shown in the figures be a body that is configured to essentially surround the movable filling valve 6, while being adapted to move at least partly within the injection chamber body 12. However, it will be understood that it may be designed in various embodiments, shapes and variations. It is apparent that its inner shape may correspond to the outer shape of the movable filling valve 6, e.g. in the form of a circular cylindrical body or any other cylindrical shape. Also, grooves or the like may be present in the inner and/or outer surface of the movable injection sleeve 10, e.g. guiding grooves or the like. Similarly, ridges or the like may be present instead or as well. Also, it will be understood that the movable injection sleeve may be a body that does not entirely surround the movable filling valve 6 but may be e.g. axially cut to define a slot or the like, which may even extend the whole length of the movable injection sleeve. Other forms and variations are possible, which will be apparent to a skilled person.
[0095] In the above description, various embodiments of the invention have been described with reference to the drawings, but it is apparent for a person skilled within the art that the invention can be carried out in an infinite number of ways, using e.g. the examples disclosed in the description in various combinations, and within a wide range of variations within the scope of the appended claims.
LIST OF REFERENCE NUMBERS
[0096] 1 Apparatus for injection molding
[0097] 2 Manifold
[0098] 4 Manifold supply channel
[0099] 6 Movable filling valve
[0100] 8 Inner channel in movable filling valve
[0101] 10 Movable injection sleeve
[0102] 12 Injection chamber body
[0103] 14 Valve means
[0104] 16 Injection chamber
[0105] 18 Purge channel
[0106] 20 Mold cavity member
[0107] 22 Mold cavity
[0108] 24 Injection gate hole
[0109] 26 Guiding part for movable valve rod
[0110] 28 Inlet to movable filling valve, e.g. to inner channel
[0111] 30 Injection channel
[0112] 32 Groove, e.g. for heating component
[0113] 33 Inlet to manifold
[0114] 34 Drive means for movable injection sleeve
[0115] 36 Drive means for movable filling valve
[0116] 37 Control device for drive means
[0117] 38 Input variables to control device
[0118] 40 Source of molten material