CN212097164U - Silica gel tectorial membrane device based on calabash container - Google Patents
Silica gel tectorial membrane device based on calabash container Download PDFInfo
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- CN212097164U CN212097164U CN201922071780.XU CN201922071780U CN212097164U CN 212097164 U CN212097164 U CN 212097164U CN 201922071780 U CN201922071780 U CN 201922071780U CN 212097164 U CN212097164 U CN 212097164U
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- container
- silica gel
- control valve
- calabash
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Abstract
The utility model discloses a silica gel tectorial membrane device based on calabash container, silica gel tectorial membrane device based on calabash container includes calabash container, silica gel blender, pan feeding pipe, control flap A, piston pressure bucket, power telescopic link, control flap B, material discharging pipe, container stopper, container cassette, container material discharging pipe, discharge bucket and operation panel, control flap A fixed mounting is on the pan feeding pipe, be equipped with the cavity in the piston pressure bucket, the flexible end of power telescopic link extends to in the cavity, the pan feeding mouth has been seted up to the bottom of piston pressure bucket, the material discharging mouth has been seted up on the upper portion of piston pressure bucket, the fixed intercommunication of pan feeding pipe and pan feeding mouth, control flap B fixed mounting is on the material discharging mouth. The utility model discloses an to the inside tectorial membrane of containers such as calabash, and can adjust according to the height of container, realized the upset of the top down formula of calabash container, be favorable to the abundant tectorial membrane in the calabash container.
Description
Technical Field
The utility model relates to a for container inner layer adheres to container processingequipment of prevention of seepage silica gel inner membrance, especially relate to a silica gel inner membrance's device and equipment of antiseep for calabash container installs additional.
Background
The calabash is used as a natural container and is used as a kettle and a wine pot since ancient times, but the problem is that although the natural calabash can be used for containing wine, the natural calabash cannot be stored, the calabash used for containing wine can continuously leak along with the increase of time, and even though the process such as beeswax seepage prevention is adopted, the problem of leakage and storage of the calabash cannot be completely solved on a large scale.
SUMMERY OF THE UTILITY MODEL
To prior art not enough, the utility model provides a silica gel tectorial membrane device based on calabash container is used for carrying out the tectorial membrane of food level silica gel to the inside of containers such as calabash, makes containers such as calabash can be processed for can long-term wine of adorning, prevent the container of seepage for a long time in batches and use for the user.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a silica gel film coating device based on a gourd container comprises the gourd container, a silica gel mixer, a feeding pipe, a control valve A, a piston pressure barrel, a power telescopic rod, a control valve B, a feeding and discharging pipe, a container plug, a container clamping seat, a container feeding and discharging pipe, a discharging barrel, an operation table, a liquid level sensor A, a liquid level sensor B, a lower support, a rotating shaft, an upper support, a sliding rod, a container bottom support and a buckle, wherein the control valve A is fixedly arranged on the feeding pipe, a cavity is arranged in the piston pressure barrel, the telescopic end of the power telescopic rod extends into the cavity, a feeding hole is formed in the bottom piston of the piston pressure barrel, a feeding and discharging hole is formed in the upper part of the piston pressure barrel, the feeding pipe is fixedly communicated with the feeding hole, the control valve B is fixedly arranged on the feeding and discharging hole, and the top of containers such as the gourd can be sealed by the container, the container plug on run through and seted up container business turn over mouth and container feed inlet, and container business turn over mouth, container business turn over mouth all with the lower part level of container plug, just the feed inlet and container business turn over mouth's intercommunication is realized to the feed inlet pipe, the container business turn over material pipe links to each other discharge bucket and container business turn over mouth, the rear end of feed inlet pipe is equipped with level sensor A, with the container business turn over material pipe the front end be equipped with level sensor B, the container cassette links to each other with the operation panel is fixed, just the container cassette is fixed container and container plug mutually, and realizes the upper and lower 180 upsets of container.
The container clamping seat comprises a lower support fixedly arranged on the upper surface of the operating platform, an upper support fixedly connected with the container plug, a rotating shaft used for connecting and rotating the lower support and the upper support, a sliding rod fixedly connected with the upper support, a container bottom support capable of moving up and down on the sliding rod, and a buckle fixedly connected with the lower part of the container bottom support.
Preferably, the silica gel mixer is one of a mixing stirrer and an AB glue mixing tube.
Preferably, the power telescopic rod is one of an air cylinder driven by an air compressor, a hydraulic telescopic rod driven by a hydraulic press and an electric telescopic rod, and the power telescopic rod is fixedly installed on the operating platform through a base or the upper part of the power telescopic rod.
Preferably, the control valve B is one of a manual valve, an electric valve and a pneumatic valve.
Preferably, the container bottom support is vertically penetrated and provided with a sliding hole, and the container bottom support is sleeved on the sliding rod through the sliding hole in a sliding manner.
Preferably, the power telescopic rod, the control valve A, the control valve B, the liquid level sensor A and the liquid level sensor B are all electrically controlled and can be connected to a PLC computer system together for automatic control.
Preferably, the control valve A and the control valve B are both manually controlled.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model realizes the film coating of the inner part of the calabash container through the silica gel mixer, the feeding pipe, the power telescopic rod, the piston pressure barrel, the feeding and discharging port, the control valve B, the feeding and discharging pipe, the container clamping seat, the discharging and discharging pipe of the container and the discharging barrel, so that the container such as the calabash can be processed into the container which can be used for filling wine for a long time and preventing leakage for a long time in batches for users;
2. the utility model discloses a fastening to the calabash container has been realized to container cassette, upper bracket, lower carriage, slide bar, container collet and buckle, can adjust according to the height of calabash container, and fastens easy operation convenience, and has realized the upset of the formula of overturning from top to bottom of calabash container through the rotation axis, is favorable to the abundant tectorial membrane in the calabash container.
Drawings
Fig. 1 is a schematic structural diagram of a silica gel film coating device based on a gourd container provided by the present invention;
fig. 2 is the utility model provides a structural schematic diagram of silica gel tectorial membrane device container cassette based on calabash container.
In the figure: 1 silica gel mixer, 2 feeding pipes, 3 control valves A, 4 piston pressure barrels, 5 power telescopic rods, 6 feeding ports, 7 discharging ports, 8 control valves B, 9 discharging pipes, 10 container plugs, 11 container discharging ports, 12 container discharging ports, 13 container clamping seats, 14 container discharging pipes, 15 discharging barrels, 16 rotating shafts, 17 lower supports, 18 upper supports, 19 sliding rods, 20 container bottom supports, 21 buckles, 22 operation tables, 23 liquid level sensors A and 24 liquid level sensors B.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Referring to fig. 1-2, a silica gel film coating device based on a gourd container comprises a gourd container, a silica gel mixer 1, a feeding pipe 2, a control valve A3, a piston pressure barrel 4, a power telescopic rod 5, a control valve B8, a feeding and discharging pipe 9, a container plug 10, a container clamping seat 13, a container feeding and discharging pipe 14, a discharging barrel 15, an operation table 22, a liquid level sensor a23, a liquid level sensor B24, a lower bracket 17, a rotating shaft 16, an upper bracket 18, a sliding rod 19, a container bottom bracket 20 and a buckle 21, wherein the control valve A3 is fixedly arranged on the feeding pipe 2, a cavity is arranged in the piston pressure barrel 4, the telescopic end of the power telescopic rod 5 extends into the cavity, a feeding port 6 is arranged at the bottom piston of the piston pressure barrel 4, a feeding and discharging port 7 is arranged at the upper part of the piston pressure barrel 4, the feeding pipe 2 is fixedly communicated with the, control flap B8 fixed mounting is on going out material pipe 9, container stopper 10 can seal the top of container such as calabash, container stopper 10 on run through and seted up container business turn over mouth 11 and container business turn over mouth 12, and container business turn over mouth 11, container business turn over mouth 12 all is horizontal with the lower part of container stopper 10, and going out material pipe 9 and realizing going out the intercommunication of material mouth 7 and container business turn over mouth 11, container business turn over material pipe 14 links to each other discharge bucket 15 and container business turn over mouth 12, the rear end of going out material pipe 9 is equipped with level sensor A23, and the front end of container business turn over material pipe 14 is equipped with level sensor B24, container cassette 13 is fixed continuous with operation panel 22, and container cassette 13 can be fixed with container stopper 10 through different modes, and can realize the upper and lower 180 upsets of container.
The container clamping seat 13 comprises a lower bracket 17 fixedly arranged on the upper surface of an operating platform 22, an upper bracket 18 fixedly connected with the container plug 10, a rotating shaft 16 for connecting and rotating the lower bracket 17 and the upper bracket 18, a sliding rod 19 fixedly connected with the upper bracket 18, a container bottom support 20 capable of moving up and down on the sliding rod 19, and a buckle 21 fixedly connected with the lower part of the container bottom support.
It should be noted that, referring to fig. 1 of the specification, the silica gel mixer 1 is a mixing stirrer or an AB gel mixing tube, the level sensor a23 on the material inlet and outlet tube 9 is electrically connected to the power expansion link 5, the control valve A3 and the control valve B8, the level sensor 24 on the material inlet and outlet tube 14 of the container is electrically connected to the control valve A3 and the power expansion link 5, the material inlet tube 2 is connected to two material barrels for feeding silica gel, the control valve A3 can be located in front of the silica gel mixer 1 or behind the silica gel mixer 1 for controlling the material inlet to suck the mixed silica gel, when A, B two kinds of silica gel are mixed by the silica gel mixer 1, the two kinds of silica gel are sucked into the cavity of the piston pressure barrel 4 from the material inlet 6, then the control valve A3 is closed, the telescopic end of the power expansion link 5 extends out and ejects the silica gel to the material inlet and outlet 7 by the piston, and then the material inlet and outlet tube 9 and the container 11 are used for coating the silica, the overturning of the containers such as a gourd and the like in an upside-down manner is realized through the rotating shaft 16, so that sufficient film covering in the containers is facilitated, during film covering, redundant silica gel can be conveyed to the discharging barrel 15 through the container material inlet and outlet port 12 and the container material inlet and outlet pipe 14, or the discharging of the redundant silica gel is stopped after the container is closed through the liquid level sensor B24 electric control valve B8 and the power telescopic rod, when the container film covering is finished, the container is stored in an inverted state, the control valve B8 is opened, the telescopic end of the power telescopic rod 5 is downwards pulled along with the piston, so that the sucking back of the silica gel in the container, the container material inlet and outlet pipe 14 and the discharging barrel 15 is realized, after the silica gel is sucked to the piston pressure barrel 4 through the container material inlet and outlet port 12, the container material inlet and outlet port 11, the container material inlet and outlet pipe 14 and the material outlet port, the control valve B8 and the power telescopic rod 5 are manually closed, or the liquid level sensor A23 electric control valve B8 and the Finally, taking out the coated container, finishing the processing of silica gel coating of the container such as a gourd and the like, and performing the cycle of processing the next container, wherein the clamping seat mode is only one mode, and other modes can be implemented;
the power telescopic rod 5 is one of an air cylinder driven by an air compressor, a hydraulic telescopic rod driven by a hydraulic press and an electric telescopic rod, and the power telescopic rod 5 is fixedly arranged on the operating platform 22 through a base or the upper part;
it should be noted that the telescopic end of the power telescopic rod 5 controls the piston to slide up and down in the cavity, so that the silica gel can be sent out from the cavity to the material inlet and outlet pipe 9 and sent into the container through the material inlet and outlet pipe 9 and the container material inlet and outlet port 11;
wherein, the control valve B8 is one of a manual valve and an electrodynamic valve;
it should be noted that the manual valve has the characteristics of simple structure and low use cost, and the electrodynamic valve has the characteristics of convenient control but higher use cost;
wherein, a sliding hole is vertically penetrated on the container bottom support 20, and the container bottom support 20 is sleeved on the sliding rod 19 in a sliding way through the sliding hole;
it should be noted that the container bottom support 20 is sleeved on the slide rod 19 through a slide hole, and the height of the container bottom support can be adjusted by sliding along the slide rod 19 through the slide hole;
when the control valve A3 and the control valve B8 are manually controlled, the liquid level sensor A23 and the liquid level sensor B24 can be detached;
it should be noted that, the direct control of the PLC system improves the automation degree of the entire apparatus, but the installation cost is high, and when a manual control valve with low installation cost is used, the liquid level sensor a23 and the liquid level sensor B24 do not need to be installed, but manual operation by a worker is required.
The utility model discloses in, when the user used the device, silica gel sent into in the pan feeding pipe 2 in the material bucket, silica gel sent into the cavity from pan feeding mouth 6 through the stirring of silica gel blender 1 to stretch out through power telescopic link 5 flexible end and utilize the piston ejecting silica gel to go into discharge gate 7, and send into the calabash container by going into discharge gate 9 and container and go into discharge gate 11 and carry out the tectorial membrane, realized the upset of calabash container top-to-bottom upset formula through rotation axis 16, be favorable to the abundant tectorial membrane in the calabash container, unnecessary silica gel sends to discharge bucket 15 through container discharge gate 12 and container discharge gate 14;
can adjust according to the height of calabash container, through slide bar 19 slidable container collet 20 to suitable height to can realize the support and the location to container collet 20 through buckle 21.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.
Claims (7)
1. The silica gel film coating device based on the gourd container is characterized by comprising the gourd container, a silica gel mixer (1), a feeding pipe (2), a control valve A (3), a piston pressure barrel (4), a power telescopic rod (5), a control valve B (8), a feeding and discharging pipe (9), a container plug (10), a container clamping seat (13), a container feeding and discharging pipe (14), a discharging barrel (15), an operating platform (22), a liquid level sensor A (23), a liquid level sensor B (24), a lower bracket (17), a rotating shaft (16), an upper bracket (18), a sliding rod (19), a container bottom bracket (20) and a buckle (21), wherein the control valve A (3) is fixedly installed on the feeding pipe (2), a cavity is arranged in the piston pressure barrel (4), and the telescopic end of the power telescopic rod (5) extends into the cavity, pan feeding mouth (6) have been seted up to the bottom piston department of piston pressure bucket (4), go out feed inlet (7) have been seted up on the upper portion of piston pressure bucket (4), pan feeding pipe (2) and pan feeding mouth (6) fixed intercommunication, control flap B (8) fixed mounting is on go out feed inlet pipe (9), container stopper (10) can be sealed the top of container such as calabash, container stopper (10) on run through and seted up container business turn over discharge gate (11) and container business turn over material mouth (12), and container business turn over discharge gate (11), container business turn over material mouth (12) all with the lower part level of container stopper (10), just go out feed inlet pipe (9) and realize the intercommunication of going out feed inlet (7) and container business turn over discharge gate (11), container business turn over material pipe (14) link to each other with discharge bucket (15) and container business turn over material mouth (12), the rear end of going out feed inlet pipe (9) is equipped with level sensor A (23), A liquid level sensor B (24) is arranged at the front end of the container feeding and discharging pipe (14), the container clamping seat (13) is fixedly connected with the operating table (22), the container and the container plug (10) are fixed by the container clamping seat (13), and the container is turned over by 180 degrees up and down;
the container clamping seat (13) comprises a lower support (17) fixedly mounted on the upper surface of an operating platform (22), an upper support (18) fixedly connected with a container plug (10), a rotating shaft (16) used for connecting and rotating the lower support (17) and the upper support (18), a sliding rod (19) fixedly connected with the upper support (18), a container bottom support (20) capable of moving up and down on the sliding rod (19), and a buckle (21) fixedly connected with the lower part of the container bottom support.
2. The silica gel film covering device based on the gourd container as claimed in claim 1, wherein the silica gel mixer is one of a mixing stirrer and an AB gel mixing tube.
3. The silica gel film coating device based on the gourd container as claimed in claim 1, wherein the power expansion link (5) is one of a cylinder driven by an air compressor, a hydraulic expansion link driven by a hydraulic press and an electric expansion link, and the power expansion link (5) is fixedly mounted on the operation table (22) through a base or an upper part.
4. The silica gel coating device based on the gourd container as claimed in claim 1, wherein the control valve B (8) is one of a manual valve, an electric valve and a pneumatic valve.
5. The silica gel tectorial membrane device based on calabash container of claim 1, characterized in that, the container collet (20) is gone up vertical through and has seted up the slide opening, container collet (20) slide through the slide opening and cup joint on slide bar (19).
6. The silica gel film covering device based on the gourd container as claimed in claim 1, wherein the power telescopic rod (5), the control valve A (3), the control valve B (8), the liquid level sensor A (23) and the liquid level sensor B (24) are all electrically controlled and can be connected to a PLC computer system for automatic control.
7. The silica gel film covering device based on the gourd container as claimed in claim 1, wherein the control valve A (3) and the control valve B (8) are both manually controlled.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922071780.XU CN212097164U (en) | 2019-11-27 | 2019-11-27 | Silica gel tectorial membrane device based on calabash container |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922071780.XU CN212097164U (en) | 2019-11-27 | 2019-11-27 | Silica gel tectorial membrane device based on calabash container |
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CN212097164U true CN212097164U (en) | 2020-12-08 |
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CN201922071780.XU Active CN212097164U (en) | 2019-11-27 | 2019-11-27 | Silica gel tectorial membrane device based on calabash container |
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2019
- 2019-11-27 CN CN201922071780.XU patent/CN212097164U/en active Active
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