CN208197085U - A kind of new-type 3DP porous ceramics rapid molding device - Google Patents
A kind of new-type 3DP porous ceramics rapid molding device Download PDFInfo
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- CN208197085U CN208197085U CN201820513621.3U CN201820513621U CN208197085U CN 208197085 U CN208197085 U CN 208197085U CN 201820513621 U CN201820513621 U CN 201820513621U CN 208197085 U CN208197085 U CN 208197085U
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- porous ceramics
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Abstract
The utility model provides a kind of new-type 3DP porous ceramics rapid molding device, is related to technical field of ceramic production.The new-type 3DP porous ceramics rapid molding device, including device noumenon and bearing, the left side of described device bodies top is fixedly connected by fixed block with the bottom of first servo motor, the output end of the first servo motor is fixedly connected by rotor with the left end of output shaft, it is fixedly connected on the left of the right end of the output shaft and primary gear speed reducing device, the right side of the primary gear speed reducing device is fixedly connected with the left end of screw rod.The new-type 3DP porous ceramics rapid molding device, by being provided with first servo motor, output shaft, screw rod, sliding block, porcelain mud input cylinder, infrared receptor, printing nozzle, binder input cylinder, binder nozzle, electric telescopic rod, lifting box, the second servo motor, shaft and rotating circular disk, first servo motor is connected to power supply with conducting wire, after starting first servo motor.
Description
Technical field
The utility model relates to technical field of ceramic production, specially a kind of new-type 3DP porous ceramics rapid molding device.
Background technique
Currently, the most common method is SLS in 3DP printing porous ceramics field, its working principle is using infrared
Laser makees the energy, and the Modeling Material used is mostly dusty material, and when processing, powder is preheating to slightly less than its fusing point first
Then temperature paves powder under the action of striking off rod, laser beam under the control of the computer according to layering cross section information into
Row is selectively sintered, and is carried out next layer of sintering after the completion of one layer again, is removed extra powder after being all sintered, then
The part sintered, SLS technique have many advantages, such as the intensity of material is very high, and optional material range is very extensive,
Can be from metal to polystyrene etc., while it is with short production cycle, stock utilization is high, and does not need support construction, with biography
System process combines, it can be achieved that quick cast, rapid mold manufacture, the works energy such as parts in small batch output, is conventionally manufactured
Method is filled with new vitality, but it the shortcomings that be sometimes for more complicated auxiliary process, in terms of stable molding
It is not that very well, also inconvenience clears up equipment.
Utility model content
(1) the technical issues of solving
In view of the deficiencies of the prior art, the utility model provides a kind of new-type 3DP porous ceramics rapid molding device, solution
It has determined problem inconvenient for operation.
(2) technical solution
In order to achieve the above object, the utility model is achieved by the following technical programs: a kind of new-type porous pottery of 3DP
The left side of porcelain rapid molding device, including device noumenon and bearing, described device bodies top passes through fixed block and the first servo
The bottom of motor is fixedly connected, and the output end of the first servo motor is fixedly connected by rotor with the left end of output shaft, institute
It states and is fixedly connected on the left of the right end and primary gear speed reducing device of output shaft, the right side of the primary gear speed reducing device and screw rod
Left end is fixedly connected, and the right end of the screw rod is flexibly connected with the left side of supporting block, and the bottom of supporting block and device noumenon top
It is fixedly connected on the right side of portion, the side surface of the screw rod is equipped with sliding block, and the bottom of the sliding block is fixedly connected with porcelain mud investment
Cylinder, the sliding slot opened up at the top of device noumenon and the inside for extending to device noumenon are run through in the bottom of the porcelain mud input cylinder, described
Infrared receptor is fixedly connected on the left of porcelain mud input cylinder, the bottom of the porcelain mud input cylinder is fixedly connected with printing spray
Mouth, the bottom on the right side of the porcelain mud input cylinder are fixedly connected with binder input cylinder, the discharge outlet of the binder input cylinder
It is plugged with binder nozzle, the bottom of described device inner body wall is fixedly connected with electric telescopic rod, the electric telescopic rod
Free end is fixedly connected with lifting box, and the inside of the lifting box is inlaid with the second servo motor, second servo motor
Output end is fixedly connected by shaft with the bottom of rotating circular disk, and the side surface of the shaft and the inner wall activity of lifting box connect
It connects, the back side of described device ontology is fixedly connected with third servo motor, the output end and threaded rod of the third servo motor
One end be fixedly connected, the other end of the threaded rod is flexibly connected with the side of device noumenon inner wall, the side of the threaded rod
There are two riffled tube, the inside of described device ontology is socketed with two motion bars for surface socket, the left end of the motion bar with
The right side of riffled tube side surface is hinged, and the right end of the motion bar and the left side of scraper are hinged, described device inner body wall
Front and rear sides are fixedly connected by fixed plate, and the top of the fixed plate and the top of scraper overlap.
Preferably, thread groove is offered on the left of the sliding block, and the side surface screw thread of the inner wall of thread groove and screw rod connects
It connects.
Preferably, the side surface of the inner wall of the bearing and shaft overlaps, the outer surface of the bearing with go up and down the interior of box
Wall overlap joint.
Preferably, the left and right sides at the top of the lifting box is fixedly connected to vertical bar, and the fixed company in the top of vertical bar
It is connected to universal wheel, the top of the universal wheel and the bottom of rotating circular disk overlap.
Preferably, the internal activity socket of described device ontology is there are two riffled tube, the inner wall of the riffled tube with
The side surface of threaded rod is threadedly coupled.
Preferably, the front and rear sides of described device inner body wall are fixedly connected by transverse slat, are opened up on the left of the transverse slat
There is through slot, and the side surface of the inner wall of through slot and motion bar overlaps.
Preferably, the fixed plate is located at the lower left of rotating circular disk, and the length of the fixed plate is the three of scraper length
/ bis-.
(3) beneficial effect
The utility model provides a kind of new-type DP porous ceramics rapid molding device.Have it is following the utility model has the advantages that
1, new-type DP porous ceramics rapid molding device, by being provided with first servo motor, output shaft, screw rod, cunning
Block, porcelain mud input cylinder, infrared receptor, printing nozzle, binder input cylinder, binder nozzle, electric telescopic rod, lifting
Box, the second servo motor, shaft and rotating circular disk are connected to power supply first servo motor with conducting wire, starting the first servo electricity
After machine, first servo motor drives output shaft rotation, and screw rod rotation, sliding block edge are driven with the help of primary gear speed reducing device
The side surface of screw rod move left and right, to drive porcelain mud input cylinder mobile, electric telescopic rod is connected to power supply with conducting wire, is opened
It moves and controls electric telescopic rod elongation or shorten, after determining good position, connected to power supply the second servo motor with conducting wire,
After starting the second servo motor, the second servo motor drives shaft rotation, and shaft drives rotating circular disk rotation, is convenient for changing and beats
Position is printed, simple to operate, convenient for the user to operate, reasonable in design, layout is ingenious, and cost is relatively low, effectively raises production
The quality of product.
2, new-type DP porous ceramics rapid molding device, by being provided with third servo motor, threaded rod, internal screw thread
Pipe, motion bar and scraper, when control electric telescopic rod is retracted to shortest first, with conducting wire by third servo motor and power supply
Connection after starting third servo motor, drives threaded rod rotation, and two riffled tubes are mobile in the side surface of threaded rod, and two
A riffled tube starts to be located remotely from each other, to push motion bar mobile, motion bar pushes scraper to move right, and starts the second servo
Motor rotates rotating circular disk, and scraper clears up the remaining residue of rotating circular disk, when terminating cleaning, starts third
After servo motor, threaded rod is driven to reversely rotate, motion bar pushes scraper to be moved to the left, and moves as needed to control scraper
It is dynamic, so that the surface of rotating circular disk keeps clean, avoids residue from influencing the production of product, ensure that the efficiency of production.
Detailed description of the invention
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the enlarged diagram of structure at A in the utility model Fig. 1;
Fig. 3 is the top view of the utility model screw thread rod structure.
In figure: 1 device noumenon, 2 first servo motors, 3 output shafts, 4 primary gear speed reducing devices, 5 screw rods, 6 sliding blocks, 7 porcelain
Mud input cylinder, 8 infrared receptors, 9 printing nozzles, 10 binder input cylinders, 11 binder nozzles, 12 electric telescopic rods, 13
Go up and down box, 14 second servo motors, 15 shafts, 16 bearings, 17 rotating circular disks, 18 third servo motors, 19 threaded rods, in 20
Screwed pipe, 21 motion bars, 22 scrapers, 23 fixed plates, 24 universal wheels, 25 transverse slats.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, 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 embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-3 is please referred to, the utility model provides a kind of technical solution: a kind of new-type 3DP porous ceramics rapid shaping dress
It sets, including device noumenon 1 and bearing 16, the left side at 1 top of device noumenon is solid by the bottom of fixed block and first servo motor 2
Fixed connection, the output end of first servo motor 2 are fixedly connected by rotor with the left end of output shaft 3, the right end of output shaft 3 and one
The left side of grade gear reduction unit 4 is fixedly connected, and is primary gear speed reducing device 4 by being provided with, primary gear speed reducing device 4 plays biography
The right side of the effect passed and slowed down, primary gear speed reducing device 4 is fixedly connected with the left end of screw rod 5, the right end and supporting block of screw rod 5
Left side be flexibly connected, and the right side at 1 top of the bottom of supporting block and device noumenon is fixedly connected, and the side surface of screw rod 5 is installed
There is sliding block 6, the left side of sliding block 6 offers thread groove, and the inner wall of thread groove is threadedly coupled with the side surface of screw rod 5, sliding block 6
Bottom is fixedly connected with porcelain mud input cylinder 7, and by being provided with porcelain mud input cylinder 7, porcelain mud input cylinder 7 can be by ready ceramics
Pug is entered in cylinder by cylinder mouth, and the sliding slot that the bottom of porcelain mud input cylinder 7 opens up at the top of device noumenon 1 simultaneously extends to device
The left side of the inside of ontology 1, porcelain mud input cylinder 7 is fixedly connected with infrared receptor 8, by being provided with infrared receptor 8,
Infrared ray can control the materials of ceramic material and binder, and the bottom of porcelain mud input cylinder 7 is fixedly connected with printing nozzle 9, lead to
It crosses and is provided with printing nozzle 9, ceramic material can be sprayed from printing nozzle 9, and the bottom on 7 right side of porcelain mud input cylinder is fixedly connected with
Binder input cylinder 10, by being provided with binder input cylinder 10, ready binder is put into wherein, binder input cylinder 10
Discharge outlet be plugged with binder nozzle 11, by being provided with binder nozzle 11, binder can spray from nozzle, dress
The bottom for setting 1 inner wall of ontology is fixedly connected with electric telescopic rod 12, by being provided with electric telescopic rod 12, electric telescopic rod 12
It can extend or shorten with the needs of user after energization, the free end of electric telescopic rod 12 is fixedly connected with lifting box
13, the inside of lifting box 13 is inlaid with the second servo motor 14, and the output end of the second servo motor 14 passes through shaft 15 and rotation
The bottom of disk 17 is fixedly connected, and the inner wall of bearing 16 and the side surface of shaft 15 overlap, the outer surface of bearing 16 and lifting box
The side surface of 13 inner wall overlap joint, shaft 15 is flexibly connected with the inner wall of lifting box 13, and the left and right sides at 13 top of lifting box is equal
It is fixedly connected with vertical bar, and the top of vertical bar is fixedly connected to universal wheel 24, top and the rotating circular disk 17 of universal wheel 24
Bottom overlap joint, by being provided with universal wheel 24, universal wheel 24 is contacted with rotating circular disk 17, and guarantees the steady of rotating circular disk 17
It is fixed, by being provided with first servo motor 2, output shaft 3, screw rod 5, sliding block 6, porcelain mud input cylinder 7, infrared receptor 8, printing
Nozzle 9, binder input cylinder 10, binder nozzle 11, electric telescopic rod 12, lifting box 13, the second servo motor 14, shaft 15
With rotating circular disk 17, first servo motor 2 is connected to power supply with conducting wire, after starting first servo motor 2, the first servo electricity
Machine 2 drive output shaft 3 rotate, with the help of primary gear speed reducing device 4 drive screw rod 5 rotate, sliding block 6 along screw rod 5 side
Surface moves left and right, to drive porcelain mud input cylinder 7 mobile, connects to power supply electric telescopic rod 12 with conducting wire, starts and control
The elongation of electric telescopic rod 12 processed is shortened, and after determining good position, connects to power supply the second servo motor 14 with conducting wire, opens
After dynamic second servo motor 14, the second servo motor 14 drives shaft 15 to rotate, and shaft 15 drives rotating circular disk 17 to rotate,
It is convenient for changing print position, simple to operate, convenient for the user to operate, reasonable in design, layout is ingenious, and cost is relatively low, effectively
The quality for improving product, the back side of device noumenon 1 is fixedly connected with third servo motor 18, third servo motor 18 it is defeated
Outlet is fixedly connected with one end of threaded rod 19, and the other end of threaded rod 19 is flexibly connected with the side of 1 inner wall of device noumenon, spiral shell
There are two riffled tubes 20 for the side surface socket of rasp bar 19, and the inside of device noumenon 1 is socketed with two motion bars 21, motion bar 21
Left end and 20 side surface of riffled tube right side it is hinged, there are two riffled tubes 20 for the socket of the internal activity of device noumenon 1, interior
The inner wall of screwed pipe 20 is threadedly coupled with the side surface of threaded rod 19, and the left side of the right end and scraper 22 of motion bar 21 is hinged, dress
The front and rear sides of 1 inner wall of ontology are set to be fixedly connected by transverse slat 25, the left side of transverse slat 25 offers through slot, and the inner wall of through slot with
The side surface of motion bar 21 overlaps, and the front and rear sides of 1 inner wall of device noumenon are fixedly connected by fixed plate 23, the top of fixed plate 23
Portion and the top of scraper 22 overlap, and fixed plate 23 is located at the lower left of rotating circular disk 17, and the length of fixed plate 23 is long for scraper 22
2/3rds of degree, it is first by being provided with third servo motor 18, threaded rod 19, riffled tube 20, motion bar 21 and scraper 22
When first control electric telescopic rod 12 is retracted to shortest, third servo motor 18 is connected to power supply with conducting wire, starts third
After servo motor 18, threaded rod 19 is driven to rotate, two riffled tubes 20 are mobile in the side surface of threaded rod 19, two interior spiral shells
Line pipe 20 starts to be located remotely from each other, to push motion bar 21 mobile, motion bar 21 pushes scraper 22 to move right, starting second
Servo motor 14 rotates rotating circular disk 17, and scraper 22 clears up the remaining residue of rotating circular disk 17, terminates cleaning
When, after starting third servo motor 18, threaded rod 19 is driven to reversely rotate, motion bar 21 pushes scraper 22 to be moved to the left,
It is mobile to control scraper 22 as needed, so that the surface of rotating circular disk 17 keeps clean, residue is avoided to influence the production of product,
It ensure that the efficiency of production.
The electric elements occurred in this article are electrically connected with extraneous main controller and 220V alternating current, and main controller can be meter
Calculation machine etc. plays the conventionally known equipment of control.
Working principle: being connected to power supply electric telescopic rod 12 with conducting wire, start and control electric telescopic rod 12 elongation or
Person shortens, and after determining good position, is connected to power supply first servo motor 2 with conducting wire, after starting first servo motor 2,
First servo motor 2 drive output shaft 3 rotate, with the help of primary gear speed reducing device 4 drive screw rod 5 rotate, sliding block 6 along
The side surface of screw rod 5 moves left and right, to drive porcelain mud input cylinder 7 mobile, is connected the second servo motor 14 with power supply with conducting wire
It connects, after starting the second servo motor 14, the second servo motor 14 drives shaft 15 to rotate, and shaft 15 drives rotating circular disk 17 to revolve
Turn, replaces print position, powdering operation is first carried out on rotating circular disk 17, then sprays viscous binder again, infrared receptor 8 can
With the dosage feedback to the computer for the mud that will make pottery, then computer issues the instruction for stopping powdering, then starts to spray binder, cycle operation
Go down, until printing is completed, when needing to clear up rotating circular disk 17, when control electric telescopic rod 12 is retracted to shortest first
It waits, is connected to power supply third servo motor 18 with conducting wire, after starting third servo motor 18, threaded rod 19 is driven to rotate,
Two riffled tubes 20 are mobile in the side surface of threaded rod 19, and two riffled tubes 20 start to be located remotely from each other, thus promotion activity
Bar 21 is mobile, and motion bar 21 pushes scraper 22 to move right, and the second servo motor 14 of starting rotates rotating circular disk 17, scraper
22 pairs of remaining residues of rotating circular disk 17 are cleared up, and when terminating cleaning, after starting third servo motor 18, drive spiral shell
Rasp bar 19 reversely rotates, and motion bar 21 pushes scraper 22 to be moved to the left.
It should be noted that, in this document, relational terms such as first and second and the like are used merely to a reality
Body or operation are distinguished with another entity or operation, are deposited without necessarily requiring or implying between these entities or operation
In any actual relationship or order or sequence.Moreover, the terms "include", "comprise" or its any other variant are intended to
Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those
Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment
Intrinsic element.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art,
It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired
Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.
Claims (7)
1. a kind of new-type 3DP porous ceramics rapid molding device, including device noumenon (1) and bearing (16), it is characterised in that: institute
It states the left side at the top of device noumenon (1) to be fixedly connected by fixed block with the bottom of first servo motor (2), first servo
The output end of motor (2) is fixedly connected by rotor with the left end of output shaft (3), the right end and level-one tooth of the output shaft (3)
Wheel decelerator is fixedly connected on the left of (4), and the right side of the primary gear speed reducing device (4) is fixedly connected with the left end of screw rod (5),
The right end of the screw rod (5) is flexibly connected with the left side of supporting block, and the right side at the top of the bottom of supporting block and device noumenon (1)
It is fixedly connected, the side surface of the screw rod (5) is equipped with sliding block (6), and the bottom of the sliding block (6) is fixedly connected with porcelain mud investment
Cylinder (7), the bottom of the porcelain mud input cylinder (7) run through the sliding slot opened up at the top of device noumenon (1) and extend to device noumenon (1)
Inside, be fixedly connected with infrared receptor (8) on the left of the porcelain mud input cylinder (7), the bottom of the porcelain mud input cylinder (7)
Portion is fixedly connected with printing nozzle (9), and the bottom on the right side of the porcelain mud input cylinder (7) is fixedly connected with binder input cylinder
(10), the discharge outlet of the binder input cylinder (10) is plugged with binder nozzle (11), described device ontology (1) inner wall
Bottom is fixedly connected with electric telescopic rod (12), and the free end of the electric telescopic rod (12) is fixedly connected with lifting box (13),
The inside of lifting box (13) is inlaid with the second servo motor (14), and the output end of second servo motor (14) is by turning
Axis (15) is fixedly connected with the bottom of rotating circular disk (17), the side surface of the shaft (15) and the inner wall activity of lifting box (13)
Connection, the back side of described device ontology (1) is fixedly connected with third servo motor (18), the third servo motor (18) it is defeated
Outlet is fixedly connected with the one end of threaded rod (19), the other end of the threaded rod (19) and the side of device noumenon (1) inner wall
It is flexibly connected, there are two riffled tube (20), the internal sleeves of described device ontology (1) for the side surface socket of the threaded rod (19)
There are two connecing motion bar (21), the right side of the left end and riffled tube (20) side surface of the motion bar (21) is hinged, the work
The right end of lever (21) and the left side of scraper (22) are hinged, and the front and rear sides of described device ontology (1) inner wall pass through fixed plate
(23) it is fixedly connected, the top of the fixed plate (23) and the top of scraper (22) overlap.
2. a kind of new-type 3DP porous ceramics rapid molding device according to claim 1, it is characterised in that: the sliding block
(6) thread groove is offered on the left of, and the inner wall of thread groove is threadedly coupled with the side surface of screw rod (5).
3. a kind of new-type 3DP porous ceramics rapid molding device according to claim 1, it is characterised in that: the bearing
(16) side surface of inner wall and shaft (15) overlaps, and the outer surface of the bearing (16) and the inner wall of lifting box (13) overlap.
4. a kind of new-type 3DP porous ceramics rapid molding device according to claim 1, it is characterised in that: the lifting
The left and right sides at the top of box (13) is fixedly connected to vertical bar, and the top of vertical bar is fixedly connected to universal wheel (24), described
The top of universal wheel (24) and the bottom of rotating circular disk (17) overlap.
5. a kind of new-type 3DP porous ceramics rapid molding device according to claim 1, it is characterised in that: described device
There are two riffled tube (20), inner wall and threaded rod (19) of the riffled tube (20) for the internal activity socket of ontology (1)
Side surface is threadedly coupled.
6. a kind of new-type 3DP porous ceramics rapid molding device according to claim 1, it is characterised in that: described device
The front and rear sides of ontology (1) inner wall are fixedly connected by transverse slat (25), offer through slot, and through slot on the left of the transverse slat (25)
Inner wall and motion bar (21) side surface overlap.
7. a kind of new-type 3DP porous ceramics rapid molding device according to claim 1, it is characterised in that: the fixation
Plate (23) is located at the lower left of rotating circular disk (17), and the length of the fixed plate (23) is 2/3rds of scraper (22) length.
Priority Applications (1)
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CN201820513621.3U CN208197085U (en) | 2018-04-12 | 2018-04-12 | A kind of new-type 3DP porous ceramics rapid molding device |
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CN201820513621.3U CN208197085U (en) | 2018-04-12 | 2018-04-12 | A kind of new-type 3DP porous ceramics rapid molding device |
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CN208197085U true CN208197085U (en) | 2018-12-07 |
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CN201820513621.3U Expired - Fee Related CN208197085U (en) | 2018-04-12 | 2018-04-12 | A kind of new-type 3DP porous ceramics rapid molding device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111993540A (en) * | 2020-08-17 | 2020-11-27 | 江苏盛容醇金科技发展有限公司 | Integrated roll forming device for unglazed pottery jar |
CN112008833A (en) * | 2020-08-17 | 2020-12-01 | 江苏盛容醇金科技发展有限公司 | Glaze-free pottery jar integrated into one piece device |
-
2018
- 2018-04-12 CN CN201820513621.3U patent/CN208197085U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111993540A (en) * | 2020-08-17 | 2020-11-27 | 江苏盛容醇金科技发展有限公司 | Integrated roll forming device for unglazed pottery jar |
CN112008833A (en) * | 2020-08-17 | 2020-12-01 | 江苏盛容醇金科技发展有限公司 | Glaze-free pottery jar integrated into one piece device |
CN111993540B (en) * | 2020-08-17 | 2022-03-18 | 江苏盛容醇金科技发展有限公司 | Integrated roll forming device for unglazed pottery jar |
CN112008833B (en) * | 2020-08-17 | 2022-08-19 | 江苏盛容醇金科技发展有限公司 | Glaze-free pottery jar integrated into one piece device |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
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Granted publication date: 20181207 Termination date: 20210412 |