CN207524618U - A kind of silicon rubber feed device of multidirectional conveying - Google Patents
A kind of silicon rubber feed device of multidirectional conveying Download PDFInfo
- Publication number
- CN207524618U CN207524618U CN201721616721.0U CN201721616721U CN207524618U CN 207524618 U CN207524618 U CN 207524618U CN 201721616721 U CN201721616721 U CN 201721616721U CN 207524618 U CN207524618 U CN 207524618U
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- China
- Prior art keywords
- feed pipe
- pipe
- material storing
- storing box
- silicon rubber
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Abstract
The utility model discloses a kind of silicon rubber feed device of multidirectional conveying, including stent, press pump, material storing box, air pump, charging line, collecting box, connect hole, motor, compression bar, four-way pipe, the first feed pipe, the second feed pipe, hose, third feed pipe, discharging are taken over, the first connector, the second connector, hand-operated valve, interface, baffle and PLC processor.The beneficial effects of the utility model are:By the charging line that decussate texture is connected in material storing box bottom, criss-cross charging line is made of four-way pipe and the first feed pipe being connected on four nozzles of four-way pipe, the second feed pipe, third feed pipe, hose, third feed pipe is connected by being connected to the discharging of one end and taking over the discharge port of material storing box bottom, dismountable hose is connected with the collecting box that stent side is placed so that material storing box can be conveyed in feeding from multiple and different directions.By installing hand-operated valve in the middle part of four-way pipe.
Description
Technical field
The utility model is related to a kind of feed device, specially a kind of silicon rubber feed device of multidirectional conveying belongs to silicon
Rubber processing field.
Background technology
Silicon rubber refers to the rubber that main chain is alternately made of silicon and oxygen atom, usually connects that there are two organic groups on silicon atom
Rubber, common silicon rubber is mainly made of the silica chain link containing methyl and a small amount of vinyl.Liquid silastic is processed
The processing step by some is needed in journey, and these processing steps often require to use feed device in switching and carry out silicon
The transfer conveying of rubber.
But existing silicon rubber feed device is when in use there are still certain defect, since the structure of conveyance conduit limits
System so that conveying direction is single, can not meet the needs of flexibly switching in silicon rubber whole process, and in transmission process
Easily residual silicon rubber is not completely exhausted out inside the pipeline of middle conveying, and not only there are the waste of raw material and remaining silicon rubbers
Glue also has inner wall of the pipe certain damage.
Utility model content
The purpose of this utility model is that solve the conveyance conduit of above-mentioned silicon rubber feed device because structure limits,
So that conveying direction is single, can not meet the needs of flexibly switching in silicon rubber whole process, and in transmission process
Easily residual silicon rubber is not completely exhausted out inside the pipeline of conveying, and not only there are the waste of raw material and remaining silicon rubber
Also there is the problem of certain damage to inner wall of the pipe and a kind of silicon rubber feed device of multidirectional conveying is provided.
The utility model is achieved through the following technical solutions above-mentioned purpose, a kind of silicon rubber feeding dress of multidirectional conveying
It puts, including stent and charging line, press pump is installed on the stent, material storing box is installed in the press pump side, outside the material storing box
PLC processor, and installation motor at the top of the material storing box on wall are installed, compression bar, the stent bottom are installed inside the material storing box
Charging line is installed in portion, and air pump is placed in the charging line side;
The charging line is sent by four-way pipe and the first feed pipe being connected on described four nozzles of four-way pipe, second
Expects pipe, third feed pipe and hose are formed, and the first connector is installed in described first feed pipe one end, and described second feed pipe one end connects
The second connector is connect, connecting discharging at the top of the third feed pipe takes over, and the discharging, which is taken over, is connected to the material storing box bottom, institute
It states hose one end and is connected with the collecting box that stent side is placed, the third feed pipe and the connection between taking over that discharges
Place's setting interface, the four-way pipe middle part are installed hand-operated valve, are welded on the side wall that the hand-operated valve is extended to inside the four-way pipe
Connect two adjacent baffles.
Preferably, the material storing box connects hole with being both provided on the stent of press pump bottom, the discharging of the material storing box bottom
Mouth and the pipeline of press pump bottom are separately mounted to two and connect inside hole.
Preferably, the specification of the compression bar is adapted with material storing box internal diameter, and the transmission of the top of the compression bar and motor
In drive connection between axis.
Preferably, the interface on the third feed pipe is connect by conduit with press pump, and the third feed pipe and four
Junction between siphunculus is connected by another conduit and air pump.
Preferably, two baffles of hand-operated valve bottom connection form L-shaped structure, and the specification of baffle and four-way pipe
Spout diameter size is adapted.
Preferably, the discharging is taken over being respectively mounted non-return valve on the first connector, the second connector side wall.
Compared with prior art, the beneficial effects of the utility model are:
1st, by material storing box bottom connect decussate texture charging line, criss-cross charging line by four-way pipe with
And the first feed pipe, the second feed pipe, third feed pipe, the hose being connected on four nozzles of four-way pipe are formed, third feeding
Pipe is connected by being connected to the discharging of one end and taking over the discharge port of material storing box bottom, dismountable hose and stent side
The collecting box of placement is connected so that material storing box can be conveyed in feeding from multiple and different directions.
2nd, by installing hand-operated valve in the middle part of four-way pipe, hand-operated valve bottom extends on the side wall inside four-way pipe and installs two
The baffle that a specification is adapted with four-way bore, and two baffles form L-type structures, when needing from the first feed pipe direction
During feeding, two baffles is driven to rotate and block the second feed pipe and hose by turning hand-operated valve manually;When needing from hose
During the feeding of direction, turn hand-operated valve and two baffles is driven to block the first feed pipe and the second feed pipe;When need clear up feed pipe
During road, from the second feed pipe water flowing, its excess-three pipeline is opened successively, cleaning can be realized.
3rd, the pipeline being connected by the junction installation between third feed pipe and four-way pipe with air pump so that feeding
Pipeline can be discharged the material of charging line internal residual by air pump when having conveyed silicon rubber, avoid remaining.
Description of the drawings
Fig. 1 is the utility model overall structure diagram.
Fig. 2 is the structure diagram of the utility model stent.
Fig. 3 is the utility model material storing box internal structure plan view.
Fig. 4 is the utility model charging line structure diagram.
Fig. 5 is the utility model charging line internal structure plan view.
In figure:1st, stent, 2, press pump, 3, material storing box, 4, air pump, 5, charging line, 6, collecting box, 7, connect hole, 8, motor,
9th, compression bar, 10, four-way pipe, the 11, first feed pipe, the 12, second feed pipe, 13, hose, 14, third feed pipe, 15, discharging connects
Pipe, the 16, first connector, the 17, second connector, 18, hand-operated valve, 19, interface, 20, baffle, 21, PLC processor.
Specific embodiment
The following is a combination of the drawings in the embodiments of the present utility model, and the technical scheme in the embodiment of the utility model is carried out
It clearly and completely describes, it is clear that the described embodiments are only a part of the embodiments of the utility model rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are without making creative work
All other embodiments obtained shall fall within the protection scope of the present invention.
Embodiment 1
It please refers to Fig.1 shown in -5, a kind of silicon rubber feed device of multidirectional conveying, including stent 1 and charging line 5, branch
Press pump 2 is installed, 2 side of press pump installs material storing box 3, PLC processor 21 is installed, and material storing box 3 pushes up on 3 outer wall of material storing box on frame 1
Motor 8 is installed in portion, and 3 inside installation compression bar 9 of material storing box utilizes the 21 (model of PLC processor of PLC technology:CPM1A it) controls
The startup of motor 8 processed, to drive the extruding rate of compression bar 9 and degree, so as to fulfill the automation control in feeding process.Stent
Charging line 5 is installed in 1 bottom, and air pump 4 is placed in 5 side of charging line, by between third feed pipe 14 and four-way pipe 10
The pipeline that junction installation is connected with air pump 4 so that charging line 5 can will be sent when having conveyed silicon rubber by air pump 4
The material discharge of 5 internal residual of pipe material, avoids remaining.Charging line 5 is by four-way pipe 10 and is connected to four-way pipe 10 4
The first feed pipe 11, the second feed pipe 12, third feed pipe 14 and hose 13 on nozzle are formed, 11 one end of the first feed pipe peace
The first connector 16 is filled, 12 one end of the second feed pipe connects the second connector 17, and 14 top connection discharging take over 15 of third feed pipe goes out
Material take over 15 is connected to 3 bottom of material storing box, and 13 one end of hose is connected with the collecting box 6 that 1 side of stent is placed, third feed pipe
Junction setting interface 19 between 14 and discharging take over 15,10 middle part installation hand-operated valve 18 of four-way pipe, hand-operated valve 18 extend to
Two adjacent baffles 20 are welded on side wall inside four-way pipe 10,18 bottom of hand-operated valve extends to the side wall inside four-way pipe 10
The baffle 20 that is adapted with 10 internal diameter of four-way pipe of two specifications of upper installation, and two baffles 20 form L-type structures, when needs from
During the 11 direction feeding of the first feed pipe, two baffles 20 is driven to rotate and block the second feed pipe by turning hand-operated valve 18 manually
12 with hose 13;When needing from 13 direction feeding of hose, turn hand-operated valve 18 and two baffles 20 is driven to block the first feed pipe
11 and second feed pipe 12;When needing to clear up charging line 5, from 12 water flowing of the second feed pipe, turn hand-operated valve 18 and beat successively
It opens its excess-three pipeline and cleaning can be realized.
Embodiment 2
In addition, please continue to refer to Fig. 1-5, with embodiment 1 difference lies in:On material storing box 3 and the stent 2 of 2 bottom of press pump
It is both provided with and connects hole 7, the pipeline of 2 bottom of discharge port and press pump of 3 bottom of material storing box is separately mounted to two and connects inside hole 7.
The specification of compression bar 2 is adapted with 3 internal diameter of material storing box, and in drive connection between the transmission shaft of the top of compression bar 2 and motor 8.The
Interface 19 on three feed pipes 14 is connect, and the junction between third feed pipe 14 and four-way pipe 10 by conduit with press pump 2
It is connected by another conduit with air pump 4, passes through the junction installation between third feed pipe 14 and four-way pipe 10 and air pump 4
The pipeline being connected so that charging line 5 can be by air pump 4 by 5 internal residual of charging line when having conveyed silicon rubber
Material is discharged, and avoids remaining.Two baffles 20 of 18 bottom of hand-operated valve connection form L-shaped structure, and the specification of baffle 20 and four
The spout diameter size of siphunculus 10 is adapted, and 18 bottom of hand-operated valve extends to two specifications of installation on the side wall inside four-way pipe 10
The baffle 20 being adapted with 10 internal diameter of four-way pipe, and two baffles 20 form L-type structures, when needing from 11 side of the first feed pipe
To during feeding, two baffles 20 is driven to rotate by turning hand-operated valve 18 manually and block the second feed pipe 12 and hose 13;When
It needs two baffles 20 to be driven to block the first feed pipes 11 and the second feed pipe from during 13 direction feeding of hose, turning hand-operated valve 18
12;When needing to clear up charging line 5, from 12 water flowing of the second feed pipe, turn hand-operated valve 18 and open its excess-three pipeline successively
Cleaning can be realized.Non-return valve is respectively mounted on 15 and first connector 16 of discharging take over, 17 side wall of the second connector so that discharging is taken over
15 and first connector 16, the second connector 17 can effectively avoid backflow phenomenon when connecting feeding.
When the utility model is used, first, whole device is assembled, by connecting decussate texture in 3 bottom of material storing box
Charging line 5, criss-cross charging line 5 is by four-way pipe 10 and the first feeding being connected on 10 4 nozzles of four-way pipe
Pipe 11, the second feed pipe 12, third feed pipe 14, hose 13 are formed, and third feed pipe 14 is by being connected to the discharging of one end
Take over 15 is connected with the discharge port of 3 bottom of material storing box, and dismountable hose 13 is connected with the collecting box 6 that 1 side of stent is placed
It connects so that material storing box 3 can be conveyed in feeding from multiple and different directions.By installing hand-operated valve 18 at 10 middle part of four-way pipe,
The baffle that two specifications are adapted with 10 internal diameter of four-way pipe is installed on the side wall that 18 bottom of hand-operated valve is extended to inside four-way pipe 10
20, and two baffles 20 form L-type structure, when needing from the 11 direction feeding of the first feed pipe, by turning manually manually
Valve 18 drives two baffles 20 to rotate and blocks the second feed pipe 12 and hose 13;When needing from 13 direction feeding of hose, twist
Dynamic hand-operated valve 18 drives two baffles 20 to block the first feed pipe 11 and the second feed pipe 12;When needing to clear up charging line 5,
From 12 water flowing of the second feed pipe, turn hand-operated valve 18 and open its excess-three pipeline successively cleaning can be realized.By being sent in third
The pipeline that junction installation between expects pipe 14 and four-way pipe 10 is connected with air pump 4 so that charging line 5 is conveying silicon rubber
The material of 5 internal residual of charging line can be discharged by air pump 4 during glue, avoid remaining.
It is obvious to a person skilled in the art that the utility model is not limited to the details of above-mentioned exemplary embodiment, and
And in the case of the spirit or essential attributes without departing substantially from the utility model, it can realize that this practicality is new in other specific forms
Type.Therefore, in all respects, the present embodiments are to be considered as illustrative and not restrictive, this practicality is new
The range of type is indicated by the appended claims rather than the foregoing description, it is intended that by containing in the equivalent requirements of the claims is fallen
All changes in justice and range are embraced therein.Any reference numeral in claim should not be considered as limitation
Involved claim.
In addition, it should be understood that although this specification is described in terms of embodiments, but not each embodiment is only wrapped
Containing an independent technical solution, this description of the specification is merely for the sake of clarity, and those skilled in the art should
It considers the specification as a whole, the technical solutions in each embodiment can also be properly combined, forms those skilled in the art
The other embodiment being appreciated that.
Claims (6)
1. a kind of silicon rubber feed device of multidirectional conveying, including stent (1) and charging line (5), it is characterised in that:The branch
Press pump (2) is installed, press pump (2) side is installed material storing box (3), installed at PLC on material storing box (3) outer wall on frame (1)
Device (21), and installation motor (8) at the top of the material storing box (3) are managed, compression bar (9), the stent are installed inside the material storing box (3)
(1) air pump (4) is placed in bottom installation charging line (5), charging line (5) side;
The charging line (5) is by four-way pipe (10) and the first feed pipe being connected on described (10) four nozzles of four-way pipe
(11), the second feed pipe (12), third feed pipe (14) and hose (13) are formed, the first feed pipe (11) one end installation the
One connector (16), described second feed pipe (12) one end connect the second connector (17), are connected at the top of the third feed pipe (14)
Discharging is taken over (15), and the discharging takes over (15) and is connected to the material storing box (3) bottom, described hose (13) one end and stent
(1) collecting box (6) that side is placed is connected, and the junction between (15) is taken in the third feed pipe (14) and the discharging
Interface (19) is set, hand-operated valve (18) is installed in the middle part of the four-way pipe (10), the hand-operated valve (18) extends to the four-way pipe
(10) two adjacent baffles (20) are welded on internal side wall.
2. a kind of silicon rubber feed device of multidirectional conveying according to claim 1, it is characterised in that:The material storing box
(3) hole (7) is connect with being both provided on the stent (1) of press pump (2) bottom, the discharge port and press pump of material storing box (3) bottom
(2) pipeline of bottom is separately mounted to two and connects hole (7) inside.
3. a kind of silicon rubber feed device of multidirectional conveying according to claim 1, it is characterised in that:The compression bar (9)
Specification be adapted with material storing box (3) internal diameter, and between the transmission shaft of the top of the compression bar (9) and motor (8) in transmission connect
It connects.
4. a kind of silicon rubber feed device of multidirectional conveying according to claim 1, it is characterised in that:The third feeding
Interface (19) on pipe (14) is connect by conduit with press pump (2), and between the third feed pipe (14) and four-way pipe (10)
Junction pass through another conduit and air pump (4) and connect.
5. a kind of silicon rubber feed device of multidirectional conveying according to claim 1, it is characterised in that:The hand-operated valve
(18) two baffles (20) of bottom connection form L-shaped structure, and the specification of baffle (20) and the spout diameter of four-way pipe (10)
Size is adapted.
6. a kind of silicon rubber feed device of multidirectional conveying according to claim 1, it is characterised in that:The discharging is taken over
(15) with being respectively mounted non-return valve on the first connector (16), the second connector (17) side wall.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721616721.0U CN207524618U (en) | 2017-11-28 | 2017-11-28 | A kind of silicon rubber feed device of multidirectional conveying |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721616721.0U CN207524618U (en) | 2017-11-28 | 2017-11-28 | A kind of silicon rubber feed device of multidirectional conveying |
Publications (1)
Publication Number | Publication Date |
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CN207524618U true CN207524618U (en) | 2018-06-22 |
Family
ID=62580994
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201721616721.0U Expired - Fee Related CN207524618U (en) | 2017-11-28 | 2017-11-28 | A kind of silicon rubber feed device of multidirectional conveying |
Country Status (1)
Country | Link |
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CN (1) | CN207524618U (en) |
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2017
- 2017-11-28 CN CN201721616721.0U patent/CN207524618U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180622 Termination date: 20181128 |