CN203447829U - Vacuum exhausting machine for sealant - Google Patents

Vacuum exhausting machine for sealant Download PDF

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Publication number
CN203447829U
CN203447829U CN201320477724.6U CN201320477724U CN203447829U CN 203447829 U CN203447829 U CN 203447829U CN 201320477724 U CN201320477724 U CN 201320477724U CN 203447829 U CN203447829 U CN 203447829U
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CN
China
Prior art keywords
vacuum
base
cover assembly
fluid sealant
hoop component
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201320477724.6U
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Chinese (zh)
Inventor
钱煜
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CHENGDU GUIBAO SCIENCE AND TECHNOLOGY INDUSTRIAL Co Ltd
Original Assignee
CHENGDU GUIBAO SCIENCE AND TECHNOLOGY INDUSTRIAL Co Ltd
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Priority to CN201320477724.6U priority Critical patent/CN203447829U/en
Application granted granted Critical
Publication of CN203447829U publication Critical patent/CN203447829U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model discloses a vacuum exhausting machine for a sealant, belonging to a defoaming device of viscous liquid. The vacuum defoaming device comprises a base, wherein a vacuum cover assembly is further arranged above the base; a hoop assembly for fixing a material barrel body is arranged on the base; a charging hole is further formed on the vacuum cover assembly; a cutter pore plate and a flange plate for sealing are arranged on the charging hole; the cutter pore plate is arranged near the inner side edge of the charging hole and below the flange plate; a plurality of strip-shaped holes are further formed above the cutter pore plate. Under the action of the cutter pore plate on the charging hole of the vacuum cover assembly, viscous liquid is cut into a plurality of thin sheets in a process of entering the material barrel body, and if the viscous liquid contains air bubbles, the air bubbles are burst in the process, so that air inside the material barrel body is greatly reduced, and the quality guarantee period of the viscous liquid product is not affected by much air.

Description

Vacuum row machine for fluid sealant
Technical field
The utility model relates to a kind of defoaming device of thick liquid, and in particular, the utility model relates generally to a kind of row of the vacuum for fluid sealant machine.
Background technology
In sealing adhesive production industry, air content in product is had to strict requirement, especially One component Sealant, its curing mechanism is to absorb airborne moisture content to complete curing, once wherein sneak into bubble, to greatly be shortened the shelf-life of product, yet in the production process of sealing adhesive, due to the phenomenon such as vibration occurs often and flow, thereby cause sneaking into unavoidably in fluid sealant product a large amount of bubbles, therefore be necessary, for the bubble in fluid sealant or similar thick liquid product, the structure of its supporting process units to be made further research and improved.
Utility model content
One of the purpose of this utility model is for above-mentioned deficiency, a kind of row of the vacuum for fluid sealant machine is provided, to exist a large amount of bubbles to remove in fluid sealant or other thick liquid products in expectation solution prior art, affect thus the technical problems such as shelf-life of product.
For solving above-mentioned technical problem, the utility model by the following technical solutions:
A kind of row of the vacuum for fluid sealant machine provided by the utility model, described vacuum defoaming device comprises base, and for placing material cylindrical shell, and base top is also provided with vacuum cover assembly, for by vacuum cover assembly, material cylindrical shell being sealed, thereby make the within of material cylindrical shell form vacuum; Hoop component for fixture barrel body is installed on described base, and in a wherein side of base, cylinder assembly and slide rail are also installed, described slide rail is provided with slide block, slide block is fixedly connected with clutch end and the vacuum cover assembly of cylinder assembly respectively by connector, for being moved on slide rail by air cylinder driven slide block, thereby drive vacuum cover assembly to rise and decline; On described vacuum cover assembly, be also provided with charging aperture, cutting knife orifice plate and the ring flange for sealing are installed on described charging aperture, described cutting knife orifice plate is arranged near the inward flange of charging aperture, and is placed in the below of ring flange, and the top of cutting knife orifice plate is also provided with a plurality of bar holes.
As preferably, further technical scheme is: in a side of described base, be also provided with column, described cylinder and slide rail are installed on column.
Further technical scheme is: on described vacuum cover assembly, be also provided with extraction vacuum port, observation panel and illumination mouth, described extraction vacuum port is provided with sealing flange, and on observation panel and illumination mouth, all sealing is embedded with transparent material.
Further technical scheme is: the below of described base is provided with a plurality of action rollers.
Further technical scheme is: in described vacuum defoaming device, also comprise stationary roll cartridge module, a plurality of rollers are side by side installed on described stationary roll cartridge module, and one end of stationary roll cartridge module is placed on base, for the discrepancy on base by a plurality of roller directing material cylindrical shells side by side.
Further technical scheme is: described hoop component is three layers that connect as one, and hoop component is divided into first half and latter half, described first half is by connecting axle or be hinged on latter half, for being rotated centered by described junction by first half, hoop component is opened or closed.
Further technical scheme is: the other end of described hoop component first half is fixedly connected with the latter half of hoop component by the handle on every layer, for adjust the tightness of hoop component fixture barrel body by handle.
Further technical scheme is: a side of described ring flange is hinged on vacuum cover assembly.
Further technical scheme is: described cutting knife orifice plate integral body is rounded, and the width of a plurality of bar holes on its top is 2 to 5 millimeters.
Compared with prior art, one of the beneficial effects of the utility model are: under the cutting knife orifice plate effect on vacuum cover assembly charging aperture, thick liquid is cut into a plurality of thin slices in the process that enters material cylindrical shell, as wherein comprised bubble, in this process, bursts open; In the follow-up process that material cylindrical shell is vacuumized, the air that bubble eruption produces is drawn out of, and then the air of material inner barrel is significantly reduced, avoid the shelf-life of a large amount of air impact thick liquid product, a kind of row of the vacuum for fluid sealant machine simultaneously provided by the utility model is simple in structure, be particularly suited in fluid sealant production process, as defoaming device, also can be used for processing other similar thick liquid products, range of application is wide.
Accompanying drawing explanation
Fig. 1 is for the structural representation of an embodiment of the utility model is described;
Fig. 2 is for the vacuum cover modular construction schematic diagram of another embodiment of the utility model is described;
Fig. 3 for for illustrate another embodiment of the utility model cutting knife AND DEWATERING FOR ORIFICE STRUCTURE schematic diagram;
In figure, 1 is that base, 2 is for material cylindrical shell, 3 is for vacuum cover assembly, 31 is for charging aperture, 32 is for ring flange, 33 is for extraction vacuum port, 34 is for observation panel, 35 is for illumination mouthful, 4 is for hoop component, 41 is for handle, 5 is for cylinder assembly, 6 is for slide rail, 7 is for slide block, 8 is for cutting knife orifice plate, 81 is for bar hole, 9 is for column, 10 is for action roller, 11 is for stationary roll cartridge module, 12 is for connector.
The specific embodiment
Below in conjunction with accompanying drawing, the utility model is further elaborated.
Shown in figure 1, an embodiment of the present utility model is a kind of row of the vacuum for fluid sealant machine, this vacuum defoaming device comprises base 1, be used for placing material cylindrical shell 2, and base 1 top is also provided with vacuum cover assembly 3, for by vacuum cover assembly 3, material cylindrical shell 2 being sealed, thereby make the within of material cylindrical shell 2 form vacuum; Hoop component 4 for fixture barrel body 2 is installed on described base 1, and cylinder assembly 5 and slide rail 6 are also installed in a wherein side of base 1, described slide rail 6 is provided with slide block 7, slide block 7 is fixedly connected with clutch end and the vacuum cover assembly 3 of cylinder assembly 5 respectively by connector 8, for being moved on slide rail 6 by air cylinder driven slide block 7, thereby drive vacuum cover assembly 3 to rise and decline; On described vacuum cover assembly 3, be also provided with charging aperture 31, cutting knife orifice plate 8 and the ring flange 32 for sealing are installed on described charging aperture 31, described cutting knife orifice plate 8 is arranged near the inward flange of charging aperture 31, and be placed in the below of ring flange 32, and the top of cutting knife orifice plate 8 is also provided with a plurality of bar holes 81.
In the present embodiment, under cutting knife orifice plate 8 effects on vacuum cover assembly 3 charging apertures 31, thick liquid is cut into a plurality of thin slices in the process that enters material cylindrical shell 2, as wherein comprised bubble, in this process, can burst open; In the follow-up process that material cylindrical shell 2 is vacuumized, the air that bubble eruption produces is drawn out of, and then the air of material cylindrical shell 2 inside is significantly reduced, avoid the shelf-life of a large amount of air impact thick liquid product, in the inside of material cylindrical shell 2, form units of vacuum after the time, the material cylindrical shell after elimination bubble can be taken off and packs.
Just as described above, the improvement of the utility model maximum is the cutting knife orifice plate 8 arranging at vacuum subassembly 3 charging apertures 31, therefore, for ease of cleaning cutting knife orifice plate 8, a side of above-mentioned ring flange 32 can be hinged on vacuum cover assembly 3, with for convenience detach.
Shown in figure 3, the preferred structure of above-mentioned cutting knife orifice plate 8 is to be circle by its whole installation, and the width of a plurality of bar holes 81 on its top is preferably set to 2 to 5 millimeters.
Shown in Fig. 1, in another embodiment of the present utility model, be to increase cylinder assembly 5 and the stability of slide rail 6 on base 1, be preferably in a side of base 1 and set up column 9, thereby above-mentioned cylinder assembly 5 and slide rail 6 can be installed on column 9.
Shown in Fig. 2, just as described above, in the process of product deaeration, need in material cylindrical shell 2, form vacuum, therefore need on above-mentioned vacuum cover assembly 3, set up extraction vacuum port 33, simultaneously for convenience of observe the situation of material cylindrical shell 2 inside under vacuum state, also can on vacuum cover assembly 3, set up observation panel 34 and illumination mouth 35, and be provided with sealing flange on aforementioned extraction vacuum port 33, on observation panel 34 and illumination mouth 35, all sealing is embedded with transparent material.
Further, for convenience of the movement of base 1, can below above-mentioned base 1, set up a plurality of action rollers 10.
The conveying on base 1 for ease of material cylindrical shell 2 simultaneously, can be on the basis of above-described embodiment, in vacuum defoaming device, set up stationary roll cartridge module 11, a plurality of rollers are side by side installed on described stationary roll cartridge module 11, and one end of stationary roll cartridge module 11 is placed on base 1, for the discrepancy on base 1 by a plurality of roller directing material cylindrical shells 2 side by side.In actual use, base can be prevented on weighbridge, at weighbridge edge, adopt stationary roll cartridge module 11 that material cylindrical shell 1 is delivered on base 1, by vacuum cover assembly 3, to its inside, add material to carry out vacuum defoamation processing, prevent that the object on weighbridge from adding weight corresponding to reaching of material for determining.
According to another embodiment of the present utility model, the effect of above-mentioned hoop component 4 is strength imparting material cylindrical shells 2, can bear the atmospheric pressure forming because of extracting vacuum, preferred structure about above-mentioned hoop component 4 is three layers that are set to connect as one, and hoop component 4 is divided into first half and latter half, described first half is by connecting axle or be hinged on latter half, for being rotated centered by described junction by first half, hoop component 4 is opened or closed.
Further, for adjusting the tightness between hoop component 4 and material cylindrical shell 2, also can be fixedly connected with the latter half of hoop component 4 by the handle 41 on by every layer at the other end of hoop component 4 first halfs, by handle 41, adjust the tightness of hoop component 4 fixture barrel bodies 2.
Except above-mentioned, also it should be noted that " embodiment ", " another embodiment " that spoken of in this manual, " embodiment " etc., refer to specific features, structure or the feature in conjunction with this embodiment, described and be included at least one embodiment that the application's generality describes.In description, a plurality of local appearance statement of the same race is not necessarily to refer to same embodiment.Furthermore, while describing a specific features, structure or feature in conjunction with arbitrary embodiment, what advocate is in conjunction with other embodiment, to realize this feature, structure or feature also to drop in scope of the present utility model.
Although the utility model is described with reference to a plurality of explanatory embodiment of the present utility model here, but, should be appreciated that, those skilled in the art can design a lot of other modification and embodiments, and these are revised and within embodiment will drop on the disclosed principle scope and spirit of the application.More particularly, in the scope of, accompanying drawing open in the application and claim, can carry out multiple modification and improvement to the building block of subject combination layout and/or layout.Except modification that building block and/or layout are carried out with improving, to those skilled in the art, other purposes will be also obvious.

Claims (9)

1. the vacuum for fluid sealant is arranged machine, it is characterized in that: described vacuum defoaming device comprises base (1), be used for placing material cylindrical shell (2), and base (1) top is also provided with vacuum cover assembly (3), for by vacuum cover assembly (3), material cylindrical shell (2) being sealed, thereby make the within of material cylindrical shell (2) form vacuum; Hoop component (4) for fixture barrel body (2) is installed on described base (1), and cylinder assembly (5) and slide rail (6) are also installed in a wherein side of base (1), described slide rail (6) is provided with slide block (7), slide block (7) is fixedly connected with clutch end and the vacuum cover assembly (3) of cylinder assembly (5) respectively by connector (12), for upper mobile at slide rail (6) by air cylinder driven slide block (7), thereby drive vacuum cover assembly (3) to rise and decline; On described vacuum cover assembly (3), be also provided with charging aperture (31), cutting knife orifice plate (8) and the ring flange (32) for sealing are installed on described charging aperture (31), described cutting knife orifice plate (8) is arranged near the inward flange of charging aperture (31), and be placed in the below of ring flange (32), and the top of cutting knife orifice plate (8) is also provided with a plurality of bar holes (81).
2. the row of the vacuum for fluid sealant machine according to claim 1, is characterized in that: in a side of described base (1), be also provided with column (9), described cylinder assembly (5) is installed on column (9) with slide rail (6).
3. the vacuum for fluid sealant according to claim 1 is arranged machine, it is characterized in that: on described vacuum cover assembly (3), be also provided with extraction vacuum port (33), observation panel (34) and illumination mouthful (35), described extraction vacuum port (33) is provided with sealing flange, and in observation panel (34) and illumination mouthful (35), all sealing is embedded with transparent material.
4. the row of the vacuum for fluid sealant machine according to claim 1, is characterized in that: the below of described base (1) is provided with a plurality of action rollers (10).
5. according to the row of the vacuum for the fluid sealant machine described in claim 1 or 4, it is characterized in that: in described vacuum defoaming device, also comprise stationary roll cartridge module (11), a plurality of rollers are side by side installed on described stationary roll cartridge module (11), and it is upper that one end of stationary roll cartridge module (11) is placed on base (1), for the discrepancy on base (1) by a plurality of roller directing material cylindrical shells (2) side by side.
6. the vacuum for fluid sealant according to claim 1 is arranged machine, it is characterized in that: described hoop component (4) is three layers that connect as one, and hoop component (4) is divided into first half and latter half, described first half is by connecting axle or be hinged on latter half, for being rotated centered by described junction by first half, hoop component (4) is opened or closed.
7. the vacuum for fluid sealant according to claim 6 is arranged machine, it is characterized in that: the other end of described hoop component (4) first half is fixedly connected with the latter half of hoop component (4) by the handle (41) on every layer, for adjust the tightness of hoop component (4) fixture barrel body (2) by handle (41).
8. the row of the vacuum for fluid sealant machine according to claim 1, is characterized in that: a side of described ring flange (32) is hinged on vacuum cover assembly (3).
9. the row of the vacuum for fluid sealant machine according to claim 1, is characterized in that: described cutting knife orifice plate (8) is whole rounded, and the width of a plurality of bar holes (81) on its top is 2 to 5 millimeters.
CN201320477724.6U 2013-08-06 2013-08-06 Vacuum exhausting machine for sealant Withdrawn - After Issue CN203447829U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320477724.6U CN203447829U (en) 2013-08-06 2013-08-06 Vacuum exhausting machine for sealant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320477724.6U CN203447829U (en) 2013-08-06 2013-08-06 Vacuum exhausting machine for sealant

Publications (1)

Publication Number Publication Date
CN203447829U true CN203447829U (en) 2014-02-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320477724.6U Withdrawn - After Issue CN203447829U (en) 2013-08-06 2013-08-06 Vacuum exhausting machine for sealant

Country Status (1)

Country Link
CN (1) CN203447829U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103432774A (en) * 2013-08-06 2013-12-11 成都硅宝科技股份有限公司 Vacuum defoamation device for high-viscosity material

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103432774A (en) * 2013-08-06 2013-12-11 成都硅宝科技股份有限公司 Vacuum defoamation device for high-viscosity material
CN103432774B (en) * 2013-08-06 2015-04-22 成都硅宝科技股份有限公司 Vacuum defoamation device for high-viscosity material

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140226

Effective date of abandoning: 20150422