CN206234610U - Damper inflator - Google Patents
Damper inflator Download PDFInfo
- Publication number
- CN206234610U CN206234610U CN201620770317.8U CN201620770317U CN206234610U CN 206234610 U CN206234610 U CN 206234610U CN 201620770317 U CN201620770317 U CN 201620770317U CN 206234610 U CN206234610 U CN 206234610U
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- CN
- China
- Prior art keywords
- feeding
- cabinet
- inflation
- leading screw
- air tube
- 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.)
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Abstract
A kind of damper inflator, including cabinet, the bottom of the cabinet is provided with pedestal, electric cabinet is installed on rear side of the cabinet, the front end of the cabinet is provided with loading assemblies, seal assembly, inflatable component, support is also equipped with the pedestal, the loading assemblies, seal assembly, inflatable component are installed on the front end of cabinet successively from top to bottom.Its advantage is:Realize the nitrogen automation inflation of air filling type shock absorber, it is ensured that the connection of damper and air tube during inflation, it is to avoid potential safety hazard.
Description
Technical field
The utility model is related to non-standard automatic mechanical field, particularly a kind of damper process equipment.
Background technology
Air filling type shock absorber has simple structure, a good damping effect compared with traditional shock absorber, the small advantage of noise, and
And air filling type shock absorber inside uses air shock absorption, compared with traditional oil storage cylinder damper, solves the problems, such as that fluid is ostentatious,
Extend service life.But air filling type shock absorber in damper in process of production, it is necessary to being filled with nitrogen, its gas replenishment process
It is complex, increase production cost.Existing manufacturer is using artificial production, low production efficiency, due to nitrogen gas in damper
Pressure is higher, and very big difficulty is carried out to aeration zone, and high pressure nitrogen in inflation, it is necessary to after strict guarantee damper is connected with air tube
It is inflated again, not so serious production accident can occurs.
The content of the invention
The purpose of this utility model is, in order to solve the above problems, to devise a kind of damper inflator.Specific design side
Case is:
A kind of damper inflator, including cabinet, the bottom of the cabinet are provided with pedestal, and the rear side of the cabinet is installed
The front end for having electric cabinet, the cabinet is provided with loading assemblies, seal assembly, inflatable component, and branch is also equipped with the pedestal
Frame, the loading assemblies, seal assembly, inflatable component are installed on the front end of cabinet, the support, sealing group successively from top to bottom
Sensor group is installed on part, inflatable component, noise reduction component is installed on the inflatable component, the sensor group includes quick
Operation switch, photosensitive sensor, baroceptor, pressure sensor, the photosensitive sensor, sharp work switch are located at described
On support, the baroceptor is installed in the seal assembly, and the pressure sensor is located on the inflatable component.
The electric cabinet is connected with the cabinet riveted, and the electric cabinet is connected with main control box, auxiliary control by data wire
Case processed, the main control box is installed on the left side front end of the cabinet, before the auxiliary control cabinet is located at the right side of the cabinet
End, the bottom of the main control box is fixedly connected with the support, and the bottom of the auxiliary control cabinet passes through angle iron and the machine
Case is fixedly connected, and is embedded in the cabinet for the electric cabinet and main control box, auxiliary control cabinet.
The loading assemblies include feeding substrate, the front end bolt connection of the feeding substrate and the cabinet, the machine
Case inner bottom is provided with feeding motor, stock shelf, and the front end of the feeding motor is provided with feeding screw rod, on the stock shelf
Feeding leading screw is installed, the feeding screw rod horizontal positioned, the feeding leading screw is placed vertically, the feeding screw rod and feeding silk
Connected by feeding connector between thick stick, the feeding connector is loop configuration, the feeding connector is placed on the feeding
On leading screw, the outer shroud of the feeding connector is provided with sawtooth, and the feeding connector is connected with feeding screw rod engagement, institute
The inner ring for stating feeding connector is bonded with the feeding leading screw and connects, and the bottom of the feeding leading screw is provided with feeding support, described
Feeding support is connected with the feeding threads of lead screw, and the feeding support sequentially passes through the cabinet, feeding substrate from the front to the back,
The front end of the feeding support is provided with damper fixed block, and the damper fixed block is the vertical column construction placed, institute
Feeding substrate is stated for rectangular ring structure, the photosensitive sensor is located at the upper front end of the feeding substrate.
The seal assembly includes seal bracket, and the upper end of the seal bracket is provided with seal box, sealing cylinder and fixes
Frame, the quantity of the sealing cylinder fixed mount is two, and described two sealing cylinder fixed mounts are distributed in left and right, the seal box
Between two sealing cylinder fixed mounts, sealing cylinder, the sealing are mounted on described two sealing cylinder fixed mounts
Cylinder is connected with sealing block through the sealing cylinder fixed mount, and the quantity of the sealing block is two, described two sealing blocks
It is connected with two sealing cylinders respectively, described two sealing blocks are internally formed annular seal space, and the baroceptor is located at described
In annular seal space, the top of the sealing block is provided with position-arresting disk, and the position-arresting disk is two sheet metal closeds of arcuate structure
Into ring discoid structure.
The inflatable component includes inflation substrate, inflation motor, inflation leading screw is provided with the inflation substrate, is inflated and is led
Bar, air tube position limiting clamp, the inflation motor are fixed on the top of the inflation leading screw, the inflation motor and the inflation leading screw
Connected by shaft coupling, the inflation leading screw, inflation guide rod are placement vertically, and the quantity of the inflation guide rod is two, institute
State two inflation guide rods to be distributed in left and right, the inflation leading screw is located between two inflation guide rods, the inflation leading screw passes through silk
Thick stick fixing bearing is fixed on the front end of the inflation substrate, and the front end of the inflation guide rod is provided with air tube support, the air tube
Support is slidably connected by sliding sleeve with the inflation guide rod, and the air tube support can be slided along the axial direction of the inflation guide rod
Dynamic, the air tube support is connected by nut sleeve with the inflation threads of lead screw, and the nut sleeve is placed on the inflation silk
On thick stick, air tube is installed on the air tube support, the air tube runs through the air tube position limiting clamp from top to bottom and insertion is described close
In sealing assembly, the noise reduction component is wrapped in the outside of the air tube, and the pressure sensor is located at the air tube and the gas
The junction of needle rack.
The horizontal cross-section of the support be in " n " shape structure, the left and right sides of the support, the front end of the inflatable component,
Bunch groove is mounted on the inside of the cabinet, the bunch groove is the bonding jumper of the L-shaped structure of radial section.
The damper inflator obtained by above-mentioned technical proposal of the present utility model, its advantage is:
Realize the nitrogen automation inflation of air filling type shock absorber, it is ensured that the connection of damper and air tube during inflation, it is to avoid peace
Full hidden danger.
Brief description of the drawings
Fig. 1 is the structural representation of damper inflator described in the utility model;
Fig. 2 is the structural representation of inflatable component described in the utility model;
Fig. 3 is the side structure schematic view of inflatable component described in the utility model;
Fig. 4 is the structural representation of seal assembly described in the utility model;
Fig. 5 is the configuration schematic diagram of seal assembly described in the utility model;
Fig. 6 is the structural representation of loading assemblies described in the utility model;
Fig. 7 is the side structure schematic view of loading assemblies described in the utility model;
In figure, 1, cabinet;2nd, pedestal;3rd, electric cabinet;31st, main control box;32nd, auxiliary control cabinet;33rd, angle iron;4th, feeding
Component;41st, feeding substrate;42nd, feeding motor;43rd, feeding screw rod;44th, feeding leading screw;45th, feeding connector;46th, damper
Fixed block;47th, feeding support;48th, stock shelf;5th, seal assembly;51st, seal bracket;52nd, seal box;53rd, sealing cylinder is fixed
Frame;54th, sealing cylinder;55th, sealing block;56th, position-arresting disk;6th, inflatable component;61st, substrate is inflated;62nd, motor is inflated;63rd, fill
Gas leading screw;64th, guide rod is inflated;65th, leading screw fixing bearing;66th, shaft coupling;67th, air tube support;68th, sliding sleeve;69th, air tube;610、
Air tube position limiting clamp;7th, support;71st, bunch groove;81st, sharp work switch;82nd, photosensitive sensor;83rd, baroceptor;84th, press
Force snesor;9th, noise reduction component.
Specific embodiment
The utility model is specifically described below in conjunction with the accompanying drawings.
Fig. 1 is the structural representation of damper inflator described in the utility model, as shown in figure 1, a kind of damper is inflated
Machine, including cabinet 1, the bottom of the cabinet 1 are provided with pedestal 2, and the rear side of the cabinet 1 is provided with electric cabinet 3, the cabinet
1 front end is provided with loading assemblies 4, seal assembly 5, inflatable component 6, and support 7, the feeding are also equipped with the pedestal 2
Component 4, seal assembly 5, inflatable component 6 are installed on the front end of cabinet 1 successively from top to bottom, the support 7, seal assembly 5, fill
Sensor group is installed on pneumatic module 6, noise reduction component 9 is installed on the inflatable component 6, the sensor group includes quick work
Industry switch 81, photosensitive sensor 82, baroceptor 83, pressure sensor 84, the photosensitive sensor 82, sharp work switch
81 are located on the support 7, and the baroceptor 83 is installed in the seal assembly 5, and the pressure sensor 84 is located at
On the inflatable component 6.
The electric cabinet 3 is connected with the riveted of the cabinet 1, the electric cabinet 3 by data wire be connected with main control box 31,
Auxiliary control cabinet 32, the main control box 31 is installed on the left side front end of the cabinet 1, and the auxiliary control cabinet 32 is located at the cabinet
1 right side front, the bottom of the main control box 31 is fixedly connected with the support 7, and the bottom of the auxiliary control cabinet 32 passes through
Angle iron 33 is fixedly connected with the cabinet 1, and the machine is embedded in for the electric cabinet 3 and main control box 31, auxiliary control cabinet 32
In case 1.
Fig. 6 is the structural representation of loading assemblies described in the utility model;Fig. 7 is loading assemblies described in the utility model
Side structure schematic view, as shown in Figure 6, Figure 7, the loading assemblies 4 include feeding substrate 41, the feeding substrate 41 with it is described
The front end bolt connection of cabinet 1, the inner bottom of the cabinet 1 is provided with feeding motor 42, stock shelf 48, the feeding motor 42
Front end feeding screw rod 43 is installed, feeding leading screw 44 is installed on the stock shelf 48, the level of feeding screw rod 43 is put
Put, the feeding leading screw 44 is placed vertically, is connected by feeding connector 45 between the feeding screw rod 43 and feeding leading screw 44,
The feeding connector 45 is loop configuration, and the feeding connector 45 is placed on the feeding leading screw 44, the feeding connection
The outer shroud of part 45 is provided with sawtooth, and the feeding connector 45 is connected with the feeding screw rod 43 engagement, the feeding connector
45 inner ring is bonded with the feeding leading screw 44 and connects, and the bottom of the feeding leading screw 44 is provided with feeding support 47, the feeding
Support 47 is threadedly coupled with the feeding leading screw 44, and the feeding support 47 sequentially passes through the cabinet 1, feeding base from the front to the back
Plate 41, the front end of the feeding support 47 is provided with damper fixed block 46, and the damper fixed block 46 is vertical placement
Column construction, the feeding substrate 41 is rectangular ring structure, before the photosensitive sensor 82 is located at the feeding substrate 41
End top.
Fig. 4 is the structural representation of seal assembly described in the utility model;Fig. 5 is seal assembly described in the utility model
Configuration schematic diagram, as shown in Figure 4, Figure 5, the seal assembly 5 includes seal bracket 51, the upper end of the seal bracket 51
Seal box 52, sealing cylinder fixed mount 53 are installed, the quantity of the sealing cylinder fixed mount 53 is two, described two sealings
Air cylinder supporting structure 53 is distributed in left and right, and the seal box 52 is located between two sealing cylinder fixed mounts 53, described two sealings
Sealing cylinder 54 is mounted in air cylinder supporting structure 53, the sealing cylinder 54 is connected with through the sealing cylinder fixed mount 53
Sealing block 55, the quantity of the sealing block 55 is two, and described two sealing blocks 55 are connected with two sealing cylinders 54 respectively, institute
The annular seal space that is internally formed of two sealing blocks 55 is stated, the baroceptor 83 is located in the annular seal space, the sealing block 55
Top position-arresting disk 56 is installed, the position-arresting disk 56 closes the ring discoid knot to be formed for the sheet metal of two arcuate structures
Structure.
Fig. 2 is the structural representation of inflatable component described in the utility model;Fig. 3 is inflatable component described in the utility model
Side structure schematic view, the inflatable component 6 is including inflating substrate 61, installation on the inflation substrate 61 as shown in Figure 2 and Figure 3
There are inflation motor 62, inflation leading screw 63, inflation guide rod 64, air tube position limiting clamp 610, the inflation motor 62 is fixed on the inflation
The top of leading screw 63, the inflation motor 62 is connected with the inflation leading screw 63 by shaft coupling 66, described to inflate leading screw 63, fill
Conductance bar 64 is placement vertically, and the quantity of the inflation guide rod 64 is two, and described two inflation guide rods 64 are distributed in left and right,
The inflation leading screw 63 is located between two inflation guide rods 64, and the inflation leading screw 63 is fixed on by leading screw fixing bearing 65
The front end of the inflation substrate 61, the front end of the inflation guide rod 64 is provided with air tube support 67, and the air tube support 67 passes through
Sliding sleeve 68 is slidably connected with the inflation guide rod 64, and the air tube support 67 can be slided along the axial direction of the inflation guide rod 64
Dynamic, the air tube support 67 is connected by nut sleeve with the inflation leading screw 63, and the nut sleeve is placed on described filling
On gas leading screw 63, air tube 69 is installed on the air tube support 67, the air tube 69 runs through the air tube position limiting clamp from top to bottom
610 and the insertion seal assembly 5 in, the noise reduction component 9 is wrapped in the outside of the air tube 69, the pressure sensor 84
Positioned at the junction of the air tube 69 and the air tube support 67.
The horizontal cross-section of the support 7 is in " n " shape structure, before the left and right sides of the support 7, the inflatable component 6
End, the inner side of the cabinet 1 are mounted on bunch groove 71, and the bunch groove 71 is the metal of the L-shaped structure of radial section
Bar.
The main control box 31 is used for the control to drive components such as each motor and cylinders, and auxiliary control cabinet 32 is then negative
Duty pair and its work be configured and adjust, because the connecting line between auxiliary control cabinet 32 and main control box 31 is more, so
Relatively near installation is needed, but is not easy to operation, the auxiliary control cabinet 32 after the setup, and need not repeat to set, so
By singular association line, auxiliary control cabinet 32 is connected with sharp work switch 81, and sharp work switch 81 can be installed
In position easy to use, improve production efficiency.
, it is necessary to be equipped with nitrogen air accumulator during installation, and nitrogen air accumulator is docked with the air tube 69 by wireway, can
To connect high pressure nitrogen air accumulator, or booster pump is installed in wireway of the connection nitrogen air accumulator with air tube 69, while carrying
For the nitrogen of enough air pressure.
During production, damper is fixed by the damper fixed block 46, then starts feeding motor 42, it is described
Feeding motor 42 passes sequentially through feeding screw rod 43, feeding connector 45, feeding leading screw 44 and is driven, and makes the damper fixed block 46
Lift damper to move up, the inflation inlet of the damper is entered in the annular seal space.
In said process, the photosensitive sensor 82 is located at the upper front end of the feeding substrate 41, when filling for damper
Gas port enters when in the annular seal space, and the photosensitive sensor 82 can be blocked by damper, it is ensured that damper position is normal.
After the inflation inlet of damper enters in the annular seal space, the sealing cylinder 54 promotes the sealing block 55 to move,
After the sealing block 55 of left and right two is closed, the top of the sealing block 55, damper, position-arresting disk 56 form the box-packed of upper end open
Structure.
After the sealing block 55 is closed, start inflation motor 62, the inflation motor 62 drives inflation leading screw 63 to rotate, from
And the air tube support 67 is moved down along the inflation guide rod 64, the air tube 69 sequentially passes through the air tube position limiting clamp
610th, position-arresting disk 56, and docked with the inflation inlet of damper.
In said process, during the inflation inlet of damper is docked with air tube 69, air tube 69 is moved downward, and docking is completed
Afterwards, the inflation inlet of the damper can have a upward thrust to air tube 69, and the pressure sensor 84 is examined to thrust
Survey, it is ensured that air tube 69 is docked completely with the inflation inlet of damper.
After completing docking, by air tube 69 to being inflated in damper.
In said process, during nitrogen outlet, larger noise is had, the noise reduction component 9 can reduce noise.
In said process, if the pressure sensor 84, all errors in judgement of photosensitive sensor 82, and damper not with
Air tube 69 is docked completely, if now starting inflation, nitrogen will be leaked into annular seal space, because air tube 69 moves down rear annular seal space
It is enclosed construction, so while part nitrogen leakage is had, but first can substantially slow down leakage rate, and second can make institute
The air pressure stated in annular seal space increases, and the pressure sensor 83 can sense pressure change, and production accident is avoided by alarm.
After the completion of inflation, the inflation motor 62 drives air tube 69 to reset, and the sealing cylinder 54 drives sealing block 55 to answer
Position, the feeding motor 42 drives damper to move down, and completes inflation operation.
Above-mentioned technical proposal only embodies the optimal technical scheme of technical solutions of the utility model, the technology of the art
Personnel's some that to be made to some of which part variations embody principle of the present utility model, belong to the utility model
Protection domain within.
Claims (6)
1. a kind of damper inflator, including cabinet (1), the bottom of the cabinet (1) is provided with pedestal (2), the cabinet (1)
Rear side electric cabinet (3) is installed, the front end of the cabinet (1) is provided with loading assemblies (4), seal assembly (5), inflatable component
(6) support (7), is also equipped with the pedestal (2), the loading assemblies (4), seal assembly (5), inflatable component (6) are by upper
It is installed on the front end of cabinet (1) successively downwards, it is characterised in that the support (7), seal assembly (5), on inflatable component (6)
Sensor group is installed, noise reduction component (9) is installed on the inflatable component (6), the sensor group is opened including sharp work
Close (81), photosensitive sensor (82), baroceptor (83), pressure sensor (84), the photosensitive sensor (82), quick work
Industry switchs (81) on the support (7), and the baroceptor (83) is installed in the seal assembly (5), the pressure
Force snesor (84) is on the inflatable component (6).
2. the damper inflator according to claim 1, it is characterised in that the electric cabinet (3) and the cabinet (1)
Riveted is connected, and the electric cabinet (3) is connected with main control box (31), auxiliary control cabinet (32), the main control box by data wire
(31) be installed on the left side front end of the cabinet (1), the auxiliary control cabinet (32) positioned at the cabinet (1) right side front, institute
The bottom for stating main control box (31) is fixedly connected with the support (7), and the bottom of the auxiliary control cabinet (32) passes through angle iron
(33) it is fixedly connected with the cabinet (1), institute is embedded in for the electric cabinet (3) and main control box (31), auxiliary control cabinet (32)
State in cabinet (1).
3. the damper inflator according to claim 1, it is characterised in that the loading assemblies (4) include feeding base
Plate (41), the front end bolt connection of the feeding substrate (41) and the cabinet (1), cabinet (1) inner bottom is provided with
Feeding motor (42), stock shelf (48), the front end of the feeding motor (42) are provided with feeding screw rod (43), the stock shelf
(48) feeding leading screw (44) is installed, feeding screw rod (43) horizontal positioned, the feeding leading screw (44) is placed vertically, institute on
State and be connected by feeding connector (45) between feeding screw rod (43) and feeding leading screw (44), the feeding connector (45) is ring
Shape structure, the feeding connector (45) is placed on the feeding leading screw (44), is set on the outer shroud of the feeding connector (45)
There is sawtooth, the feeding connector (45) is connected with the feeding screw rod (43) engagement, the inner ring of the feeding connector (45)
It is bonded with the feeding leading screw (44) and is connect, the bottom of the feeding leading screw (44) is provided with feeding support (47), the feeding branch
Frame (47) is threadedly coupled with the feeding leading screw (44), the feeding support (47) sequentially pass through from the front to the back the cabinet (1),
Feeding substrate (41), the front end of the feeding support (47) is provided with damper fixed block (46), the damper fixed block
(46) it is the vertical column construction placed, the feeding substrate (41) is rectangular ring structure, photosensitive sensor (82) position
In the upper front end of the feeding substrate (41).
4. the damper inflator according to claim 1, it is characterised in that the seal assembly (5) includes sealing support
Frame (51), the upper end of the seal bracket (51) is provided with seal box (52), sealing cylinder fixed mount (53), the sealing cylinder
The quantity of fixed mount (53) is two, and described two sealing cylinder fixed mounts (53) are distributed in left and right, seal box (52) position
Between two sealing cylinder fixed mounts (53), sealing cylinder is mounted on described two sealing cylinder fixed mounts (53)
(54), the sealing cylinder (54) is connected with sealing block (55), the sealing block through the sealing cylinder fixed mount (53)
(55) quantity is two, and described two sealing blocks (55) are connected with two sealing cylinders (54) respectively, described two sealing blocks
(55) be internally formed annular seal space, the baroceptor (83) in the annular seal space, the top of the sealing block (55)
Position-arresting disk (56) is installed, the position-arresting disk (56) is that the sheet metal of two arcuate structures closes the ring discoid structure to be formed.
5. the damper inflator according to claim 1, it is characterised in that the inflatable component (6) includes inflation base
Plate (61), is provided with inflation motor (62), inflation leading screw (63), inflation guide rod (64), air tube limit on inflation substrate (61)
Position folder (610), it is described inflation motor (62) be fixed on it is described inflation leading screw (63) top, the inflation motor (62) with it is described
Inflation leading screw (63) is connected by shaft coupling (66), and inflation leading screw (63), inflation guide rod (64) are placement vertically, described
The quantity of inflation guide rod (64) is two, and described two inflations guide rod (64) are distributed in left and right, and inflation leading screw (63) is located at
Between two inflation guide rods (64), inflation leading screw (63) is fixed on the inflation substrate by leading screw fixing bearing (65)
(61) front end, the front end of the inflation guide rod (64) is provided with air tube support (67), and the air tube support (67) is by sliding sleeve
(68) it is slidably connected with inflation guide rod (64), the air tube support (67) can be along the axial direction of inflation guide rod (64)
Direction is slided, and the air tube support (67) is connected by nut sleeve with inflation leading screw (63), the nut sleeve
It is placed on inflation leading screw (63), air tube (69) is installed on the air tube support (67), the air tube (69) is from top to bottom
In the air tube position limiting clamp (610) and the insertion seal assembly (5), the noise reduction component (9) is wrapped in the air tube
(69) outside, the pressure sensor (84) is positioned at the junction of the air tube (69) and the air tube support (67).
6. the damper inflator according to claim 1, it is characterised in that the horizontal cross-section of the support (7) is in " n "
Shape structure, the left and right sides of the support (7), the front end of the inflatable component (6), the cabinet are mounted on the inside of (1)
Bunch groove (71), the bunch groove (71) is the bonding jumper of the L-shaped structure of radial section.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620770317.8U CN206234610U (en) | 2016-07-19 | 2016-07-19 | Damper inflator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620770317.8U CN206234610U (en) | 2016-07-19 | 2016-07-19 | Damper inflator |
Publications (1)
Publication Number | Publication Date |
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CN206234610U true CN206234610U (en) | 2017-06-09 |
Family
ID=58989193
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620770317.8U Expired - Fee Related CN206234610U (en) | 2016-07-19 | 2016-07-19 | Damper inflator |
Country Status (1)
Country | Link |
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CN (1) | CN206234610U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107631168A (en) * | 2016-07-19 | 2018-01-26 | 天津西青区瑞博生物科技有限公司 | Damper inflator |
WO2019134283A1 (en) * | 2018-01-05 | 2019-07-11 | 深圳市新沧海机械有限公司 | Inflation and flanging machine |
-
2016
- 2016-07-19 CN CN201620770317.8U patent/CN206234610U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107631168A (en) * | 2016-07-19 | 2018-01-26 | 天津西青区瑞博生物科技有限公司 | Damper inflator |
WO2019134283A1 (en) * | 2018-01-05 | 2019-07-11 | 深圳市新沧海机械有限公司 | Inflation and flanging machine |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
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Granted publication date: 20170609 Termination date: 20200719 |