CN211891759U - Injection molding device of silica gel sealing member - Google Patents

Injection molding device of silica gel sealing member Download PDF

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Publication number
CN211891759U
CN211891759U CN202020277909.2U CN202020277909U CN211891759U CN 211891759 U CN211891759 U CN 211891759U CN 202020277909 U CN202020277909 U CN 202020277909U CN 211891759 U CN211891759 U CN 211891759U
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cavity insert
mold
core
injection molding
lower mold
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CN202020277909.2U
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吕永虎
黄九发
莫畏
王战华
顾道敏
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Shenzhen Ailijia Material Technology Co Ltd
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Shenzhen Ailijia Material Technology Co Ltd
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Abstract

The utility model discloses an injection molding device of a silica gel sealing element, which comprises a material substrate and a silica gel part coated on the upper end of the material substrate; the injection molding device comprises a molding matched mold; the forming matched mould comprises an upper mould core and a lower mould core, wherein an upper mould cavity insert is arranged at the upper mould core, and a lower mould cavity insert is arranged at the lower mould core; the material substrate is inserted into the lower die cavity insert, and the inner shape of the upper die cavity insert is matched with the silica gel part; after the upper mold core and the lower mold core are assembled, an injection mold cavity is formed between the upper mold cavity insert and the lower mold cavity insert; the upper die cavity insert is a metal piece, and the lower die cavity insert is a plastic piece. Adopt the utility model provides an injection moulding device can reduce the product required precision, very big promotion the product yield to reduce deckle edge and lead to the manpower increase of back process, improved the production efficiency of silica gel sealing member product.

Description

Injection molding device of silica gel sealing member
Technical Field
The utility model belongs to the technical field of the shaping, concretely relates to injection moulding device of silica gel sealing member.
Background
The silica gel product is a product which is popular with consumers and manufacturers, is made of liquid silica gel, has good elasticity and water resistance and moisture resistance, can resist corrosion of various chemical substances such as acid, alkali and the like, does not contain any harmful substance, and is not easy to deform. The silica gel milk bottle is generally used for replacing plastic articles for daily use, and is a silica gel product which is popular and popular. At present, with the development of sealing requirements in the 3C industry, more and more silica gel sealing element products enter the consumption field.
On one hand, the silica gel sealing element has high requirements on products, such as high product precision, no burr on the appearance and the like; on the other hand, the requirements on the mold are high. The existing silica gel sealing piece has low yield of product precision after injection molding, and easy edge raising leads to the need of increasing the process after burr removing, and the process after burr removing needs to increase manpower, so that the production efficiency is greatly reduced, and the cost is increased.
SUMMERY OF THE UTILITY MODEL
In order to solve the prior art not enough, the utility model provides an injection moulding device of silica gel sealing member, the silica gel sealing member includes the material basement and the silica gel portion of cladding in material basement upper end. The utility model discloses specific embodiment as follows:
the utility model discloses a matched mould for injection molding device; the forming matched mould comprises an upper mould core and a lower mould core which are matched with each other, an upper mould cavity insert is arranged at the upper mould core, and a lower mould cavity insert is arranged at the lower mould core; the material substrate is inserted into the lower die cavity insert, and the inner shape of the upper die cavity insert is matched with the silica gel part; after the upper mold core and the lower mold core are assembled, an injection mold cavity is formed between the upper mold cavity insert and the lower mold cavity insert; the upper die cavity insert is a metal piece, and the lower die cavity insert is a plastic piece.
As a further improvement, the material substrate is a metal member.
As a further improvement, the lower mold cavity insert comprises a lower mold outer cavity insert and a lower mold inner cavity insert, and the material substrate is inserted between the lower mold outer cavity insert and the lower mold inner cavity insert.
As a further improvement, an upper die auxiliary screw is arranged on the outer side of the upper die core, and a lower die auxiliary screw is arranged on the outer side of the lower die core.
As a further improvement, the injection molding device is further provided with a lower mold interchange mating mold for quick replacement, and the lower mold interchange mating mold comprises a lower mold core and a lower mold cavity insert.
As a further improvement, the injection molding device is further provided with an upper mold interchange mating mold for quick replacement, and the upper mold interchange mating mold comprises an upper mold core and an upper mold cavity insert.
As a further improvement scheme, N groups of matched upper mold cavity inserts and lower mold cavity inserts are respectively arranged at the upper mold core and the lower mold core, and N is 32 or 64.
As a further improvement, the injection molding device further comprises an upper template and a lower template; the upper die core is detachably and fixedly connected with the upper die plate, and the lower die core is detachably and fixedly connected with the lower die plate.
As a further improvement scheme, the injection molding device further comprises a sprue, a flow channel, a panel and a stripper plate, wherein the panel, the stripper plate, the upper die plate and the upper die core are sequentially stacked from top to bottom.
As a further improvement, the injection molding device further comprises a lower die push plate, an ejector rod and a bottom plate; the lower die push plate is arranged between the lower die plate and the bottom plate;
one end of the ejector rod is fixedly connected with the lower die push plate, and the other end of the ejector rod penetrates through the lower die plate and abuts against the lower die inner cavity insert; the ejector rod is driven by the lower die push plate to move up and down;
and a positioning column is arranged between the lower template and the lower die push plate, and the lower die push plate moves up and down along the positioning column under the action of external force.
The utility model discloses following technological effect has:
by adopting the injection molding device of the utility model, the product precision requirement can be reduced, for example, the product precision is widened from the original 0.005mm to +/-0.05 mm, and the product yield is greatly improved; after the injection molding device is adopted, the burrs of the product are reduced, and the increase of manpower in the post process is avoided; therefore, the production efficiency of the silica gel sealing element product is improved, and the cost is reduced.
Drawings
FIG. 1 is a schematic structural view of an injection molding apparatus for a silica gel sealing member of the present invention
FIG. 2 is a partial cross-sectional view of the injection molding cavity of the injection molding apparatus of the present invention;
fig. 3 is the utility model discloses embodiment's silica gel sealing member, go up mould cavity mold insert and the structural sketch of lower mould outer cavity mold insert.
Reference numerals:
the device comprises a panel 1, a stripper plate 2, an upper template 3, a sprue 4, a runner 5, an upper mold core 6, an upper mold auxiliary screw 7, a lower mold core 8, a lower mold auxiliary screw 9, a lower template 10, an ejector rod 11, a positioning column 12, a bottom plate 13, a lower mold push plate 14, an upper mold cavity insert 15, a lower mold outer cavity insert 16, a lower mold inner cavity insert 17, a silica gel sealing element 20, a silica gel part 21, a material base 22 and a pouring gate 30.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and examples.
Fig. 1 to 3 are schematic structural diagrams of an injection molding device of a silicone sealing element provided in this embodiment.
The silica gel sealing member comprises a material substrate and a silica gel part coated on the upper end of the material substrate. During injection molding, the material substrate is put into an injection molding device in advance, and the silica gel part is directly encapsulated on the hard material substrate in an injection molding way. The silica gel sealing element is a primary encapsulated product. The base material is a hard material, such as a plastic part or a metal part. Preferably, the base material is a metal member. The silica gel portion is used as the functional part of silica gel sealing member, is used for playing actual sealed effect, therefore silica gel portion has higher product requirement.
The injection molding device of the silica gel sealing member 20 comprises a sprue 4, a runner 5 and a molding matched mold.
The forming matched mould comprises an upper mould core 6 and a lower mould core 8, wherein the upper mould core 6 is matched with the lower mould core 8.
An upper die cavity insert 15 is arranged on the parting surface of the upper die core 6. The upper die core 6 has a first groove, and the upper die cavity insert 15 is embedded in the first groove. A lower mold cavity insert is arranged on the parting surface of the lower mold core 8. The lower die core 8 is provided with a second groove, and the lower die cavity insert is embedded in the second groove.
During injection molding, the material substrate 22 is inserted into the lower mold cavity insert. After the upper mold core 6 and the lower mold core 8 are closed, an injection molding cavity is formed between the upper mold cavity insert 15 and the lower mold cavity insert. Wherein, the inner shape of the upper die cavity insert 15 is matched with the shape of the silica gel part 21. During injection molding, molten liquid silica gel flows into an injection molding cavity through the sprue 4, the flow channel 5 and the sprue 30.
The lower die cavity insert of this application is the plastic part, goes up die cavity insert 15 and is the metalwork.
Burrs easily appear in a silica gel product-silica gel part 21 at the joint of the parting surface of the upper mold cavity insert 15 and the parting surface of the lower mold cavity insert in the conventional design. To avoid burrs, the tightness of the upper mold cavity insert 15 and the lower mold cavity insert at the parting plane needs to be improved to avoid the molten silica gel from flowing out of the gap. In the prior art, the upper mold cavity insert 15 and the lower mold cavity insert are hardware, and are pure hardware sealing glue; improve the machining precision of mould on the one hand and tend to cause the promotion by a wide margin of processing cost, on the other hand, silica gel sealing member 20 is as the functional part, and its this application requires extremely high. Under the existing conditions, the production efficiency is low and the cost is high.
And the lower mould die cavity mold insert of this application is the plastic part, goes up mould die cavity mold insert 15 and is the metalwork, and the lower mould die cavity mold insert of plastic material and the last mould die cavity mold insert 15 cooperation of metal material, and the plastic part is softer than the metalwork, has the variability characteristic under pressure. By designing the proper overpressure quantity of the lower mold cavity insert plastic part, the lower mold cavity insert and the upper mold cavity insert 15 can be tightly matched, so that the phenomenon of burrs is avoided, and the increase of manpower in the subsequent process is avoided; the production efficiency of the silica gel sealing element 20 product is improved, and the cost is reduced.
The upper die cavity insert 15 is still a metal die and has high precision, so that the requirement of the silica gel part 21 on higher dimensional precision can be ensured. The material substrate 22 is mainly arranged in the lower mold cavity insert, and the plastic part adopted by the lower mold cavity insert does not influence the product function.
The lower mold cavity insert of the present application includes a lower mold outer cavity insert 16 and a lower mold inner cavity insert 17. The material base 22 is inserted between the lower mold outer cavity insert 16 and the lower mold inner cavity insert 17.
Preferably, the material substrate is a metal piece-hardware piece. By using the lower die cavity insert as a plastic part and the upper die cavity insert 15 as a metal part, the precision requirement on the silica gel sealing element 20 is greatly reduced, burrs are run at 0.005mm of the original pure hardware sealing glue, the product precision can be widened to +/-0.05 mm, the yield of the material substrate 22 is greatly improved, and the manpower of the subsequent process is greatly reduced; because the traditional pure hardware sealing glue cannot be overpressured, otherwise, the material substrate is crushed or deformed, and the precision requirement on a mold and a product is higher. Through changing the lower mould chamber mold insert into the plastic, can carry out the excessive pressure, the material base is the metalwork, does not have the crushing risk. Through the improvement, the yield of the material substrate 22 can be improved by at least 50%, and the manpower can be saved by more than 50%. Meanwhile, the problems of internal and external shoveling and crushing caused by traditional hardware sealing glue can be reduced, and the appearance yield of products is improved.
The lower mold cavity insert may be made of PC, PMMA or PEEK, but it is understood that other plastic materials may be used, and the invention is not limited thereto. The specific material can be adjusted according to different requirements of the silicone sealing member 20 product.
In order to further improve the productivity, N sets of upper mold cavity inserts 15 and lower mold cavity inserts which are matched with each other are respectively arranged at the upper mold core 6 and the lower mold core 8, so that a design with more mold cavities is realized. N is preferably 32 or 64, so that thirty-two or sixty-four can be formed in one injection molding cycle, the productivity of each set of die is greatly improved, and the traditional four-out, eight-out and sixteen production modes can be avoided. If the conventional design is one-eight and the solution is one-thirty-two, assuming a molding cycle of 60s, the throughput can be increased from 9.6K to 38.4K, and the yield and the burr removal capacity of the rear section are higher.
Because the lower mould cavity insert is a plastic part, the strength is lower, and therefore, the loss is larger in injection molding. As the scheme of further improvement, the outer side of the lower mold core 8 is provided with a lower mold auxiliary screw 9, and the lower mold auxiliary screw 9 can enable the lower mold core 8 to be conveniently taken down, so that the stability of a product can be ensured by replacing the lower mold cavity insert.
As a preferred embodiment, the injection molding apparatus is further provided with a lower mold interchange kit for quick replacement, which includes a lower core 8 and a lower cavity insert. For example, two sets of the lower mold core 8 and the lower mold cavity insert are provided, and besides the set of the lower mold core 8 and the lower mold cavity insert for production, the set of the lower mold core 8 and the lower mold cavity insert are additionally added to serve as a lower mold exchange matched mold.
The application discloses injection moulding device is mould outer material, and when lower mould chamber mold insert loss was great during production, can load outside the mould with last mould benevolence 6 and last mould chamber mold insert 15 as exchanging supporting mould to one set of lower mould benevolence 8 and the lower mould chamber mold insert in the direct replacement injection molding machine.
The injection molding device of the application further comprises an upper template 3 and a lower template 10. Preferably, the upper mold core 6 is detachably and fixedly connected with the upper mold plate 3. Preferably, the lower die core 8 and the lower template 10 are detachably and fixedly connected. This facilitates the replacement of the mold core at a later stage.
The injection molding apparatus is also provided with an upper mold exchange mating mold for quick replacement if a new product is to be produced. The upper die interchanging matched die comprises an additional set of upper die core 6 and an upper die cavity insert 15. When the mold needs to be replaced, the upper mold core 6 and the upper mold cavity insert 15 can be assembled on the outside of the mold. An upper die auxiliary screw 7 is arranged on the outer side of the upper die core 6. The upper mold core 6 and the lower mold core 8 are conveniently replaced, the existing upper template 3 and the lower template 10 can be still used when a new product is produced, and only the upper mold core 6 and the lower mold core 8 need to be replaced, so that the development period of a new mold is shortened, and the cost is saved.
The injection molding device of this application still includes panel 1 and takes off the flitch. Panel 1, take off flitch, cope match-plate pattern 3 and go up the mould benevolence 6 from the top and stack up the setting in proper order, fixed connection between panel 1, take off flitch, the cope match-plate pattern 3. The sprue 4 and the runner 5 are embedded in the panel 1, the stripper plate, the upper template 3 and the upper mould core 6.
The injection molding device of the application also comprises a lower die push plate 14, a top rod 11 and a bottom plate 13. The lower mold push plate 14 is disposed between the lower mold plate 10 and the bottom plate 13, and the lower mold push plate 14 can move up and down. One end of the ejector rod 11 is fixedly connected with the lower die push plate 14, and the ejector rod 11 is driven by the lower die push plate 14 to move up and down. The other end of the ejector rod 11 passes through the lower die plate 10 and abuts against the lower die inner cavity insert 17, and when the lower die push plate 14 moves upwards, the ejector rod 11 can eject the product. A positioning column 12 is arranged between the lower template 10 and the lower mold push plate 14, and the lower mold push plate 14 moves up and down along the positioning column 12 under the action of external force.
The utility model discloses following technological effect has:
by adopting the injection molding device of the utility model, the product precision requirement can be reduced, for example, the product precision is widened from the original 0.005mm to +/-0.05 mm, and the product yield is greatly improved; after the injection molding device is adopted, the burrs of the product are reduced, and the increase of manpower in the post process is avoided; the production efficiency of silica gel sealing member product has been improved.
It should be finally noted that the above embodiments are only used for illustrating the technical solutions of the embodiments of the present invention and not for limiting the same, and although the embodiments of the present invention are described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the embodiments of the present invention can still be modified or replaced with equivalents, and these modifications or equivalent replacements cannot make the modified technical solutions depart from the scope of the technical solutions of the embodiments of the present invention.

Claims (10)

1. An injection molding device of a silica gel sealing element comprises a material substrate and a silica gel part coated on the upper end of the material substrate; the injection molding device comprises a molding matched mold; the method is characterized in that:
the forming matched mould comprises an upper mould core and a lower mould core which are matched with each other, an upper mould cavity insert is arranged at the upper mould core, and a lower mould cavity insert is arranged at the lower mould core;
the material substrate is inserted into the lower die cavity insert, and the inner shape of the upper die cavity insert is matched with the silica gel part; after the upper mold core and the lower mold core are assembled, an injection mold cavity is formed between the upper mold cavity insert and the lower mold cavity insert;
the upper die cavity insert is a metal piece, and the lower die cavity insert is a plastic piece.
2. The injection molding apparatus of claim 1, wherein the stock substrate is a metal piece.
3. The injection molding apparatus of claim 1, wherein the lower mold cavity insert comprises a lower mold outer cavity insert and a lower mold inner cavity insert, and the material substrate is inserted between the lower mold outer cavity insert and the lower mold inner cavity insert.
4. The injection molding apparatus as claimed in claim 1, wherein an upper mold auxiliary screw is disposed outside the upper mold core, and a lower mold auxiliary screw is disposed outside the lower mold core.
5. The injection molding apparatus of claim 1, further configured with a lower mold interchange kit for quick change, the lower mold interchange kit comprising a lower mold core and a lower mold cavity insert.
6. The injection molding apparatus of claim 5, further configured with an upper mold exchange kit for quick change, the upper mold exchange kit comprising an upper mold core and an upper mold cavity insert.
7. The injection molding apparatus of claim 1, wherein the upper and lower mold cores have N sets of mating upper and lower cavity inserts, respectively, where N is 32 or 64.
8. The injection molding apparatus of claim 1, further comprising an upper mold plate and a lower mold plate; the upper die core is detachably and fixedly connected with the upper die plate, and the lower die core is detachably and fixedly connected with the lower die plate.
9. The injection molding apparatus of claim 8, further comprising a sprue, a runner, a face plate, and a stripper plate, wherein the face plate, the stripper plate, the upper platen, and the upper mold core are sequentially stacked from top to bottom.
10. The injection molding apparatus of claim 9, further comprising a lower mold push plate, a top bar, and a bottom plate; the lower die push plate is arranged between the lower die plate and the bottom plate;
one end of the ejector rod is fixedly connected with the lower die push plate, and the other end of the ejector rod penetrates through the lower die plate and abuts against the lower die inner cavity insert; the ejector rod is driven by the lower die push plate to move up and down;
and a positioning column is arranged between the lower template and the lower die push plate, and the lower die push plate moves up and down along the positioning column under the action of external force.
CN202020277909.2U 2020-03-09 2020-03-09 Injection molding device of silica gel sealing member Active CN211891759U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020277909.2U CN211891759U (en) 2020-03-09 2020-03-09 Injection molding device of silica gel sealing member

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020277909.2U CN211891759U (en) 2020-03-09 2020-03-09 Injection molding device of silica gel sealing member

Publications (1)

Publication Number Publication Date
CN211891759U true CN211891759U (en) 2020-11-10

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Application Number Title Priority Date Filing Date
CN202020277909.2U Active CN211891759U (en) 2020-03-09 2020-03-09 Injection molding device of silica gel sealing member

Country Status (1)

Country Link
CN (1) CN211891759U (en)

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