CN212666549U - Environment-friendly plastic production equipment with continuous feeding function - Google Patents

Environment-friendly plastic production equipment with continuous feeding function Download PDF

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Publication number
CN212666549U
CN212666549U CN202021730270.5U CN202021730270U CN212666549U CN 212666549 U CN212666549 U CN 212666549U CN 202021730270 U CN202021730270 U CN 202021730270U CN 212666549 U CN212666549 U CN 212666549U
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China
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plate
rod
frame
injection molding
environment
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CN202021730270.5U
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Inventor
邓凯
陈纯
黄军梅
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Qingdao Juhe Innovative Materials Co.,Ltd.
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Dongguan Qiqu Robot Technology Co Ltd
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Abstract

The invention discloses environment-friendly plastic production equipment with a continuous feeding function, which comprises a frame, a top plate stress block, an injection molding frame, a water outlet, a connecting rod and a water tank, wherein a material storage box is arranged on the surface of the frame, a push plate is arranged at the top of a pushing device, a separation plate is arranged at the top of the pushing device in a deviating way, a sealing plate is arranged at the inner side of the bottom of a material limiting groove, a left transmission plate is arranged at the bottom of the sealing plate, the top plate stress block is positioned on the inner surface of the left side of the frame, a connecting plate is arranged on the side surface of a first hydraulic rod, a stress rod is arranged on the side surface of a top rod, a positioning plate is arranged at the side surface of the injection molding frame in a deviating and dark rotating way, a protective cover is arranged on the side surface of the positioning plate, a stirring rod is arranged inside an injection, and through the inclined arrangement of the water outlet, water can be discharged more conveniently.

Description

Environment-friendly plastic production equipment with continuous feeding function
Technical Field
The invention relates to the technical field of environment-friendly plastic production, in particular to environment-friendly plastic production equipment with a continuous feeding function.
Background
The environment-friendly plastic is also called as green plastic, is a plastic product without open sea to the environment, has excellent plasticity, high temperature resistance and impact resistance, is widely applied to the fields of buildings, medical devices, household electrical appliances and the like, has a plurality of varieties of green plastics, mainly comprises photodegradable plastics, natural polymer plastics, microbial polymer type plastics, transgenic type plastics and the like, and is operated by mechanical equipment in the production and processing of the existing environment-friendly plastic.
Although the existing plastic production and processing equipment brings great convenience to plastic production, a lot of existing plastic production and processing equipment have many defects, a lot of plastic production and processing equipment need manual emptying, and the interior of a machine is not easy to clean after processing, so that the environment-friendly plastic production equipment with the continuous feeding function is provided.
Disclosure of Invention
The invention aims to provide environment-friendly plastic production equipment with a continuous feeding function, and aims to solve the problems that many plastic production and processing equipment in the background art need manual feeding and the interior of a machine is not easy to clean after processing.
In order to achieve the purpose, the invention provides the following technical scheme: an environment-friendly plastic production device with a continuous feeding function comprises a frame, a top plate stress block, an injection molding frame, a water outlet, a joint rod and a water tank, wherein the surface of the frame is provided with a storage box, the bottom side inside the storage box is provided with a pushing device, the top of the pushing device is provided with a push plate, the top of the pushing device is provided with a separating plate in a deviating way, the top of the separating plate is provided with a material limiting groove in a deviating way, the inner side of the bottom of the material limiting groove is provided with a sealing plate, the bottom of the sealing plate is provided with a left transmission plate, the side of the left transmission plate is provided with a right transmission plate in a deviating way, the top plate stress block is positioned on the inner surface of the left side of the frame, the side of the top plate stress block is provided with a first hydraulic rod in a deviating way, the side of the first hydraulic rod is provided, and the spring is installed on the side surface of the stress rod, a spring transmission rod is installed on the side surface of the spring, the injection molding frame is installed on the side surface of the stress rod in a deviating way, a mold hole is etched in the inner side of the injection molding frame, a positioning plate is arranged on the side surface of the injection molding frame in a deviating way, an injection molding opening is etched in the inner side of the positioning plate, a protective cover is installed on the side surface of the positioning plate, an injection molding pipe is installed on the inner side of the protective cover, a heating wire is installed on the surface of the injection molding pipe, a stirring rod is installed inside the injection molding pipe, a second hydraulic rod is installed on the side surface of the stirring rod, a first motor is installed on the side surface of the second hydraulic rod, the connecting rod is located on the side surface of the protective cover, a storage battery is installed on the top portion of the connecting rod, a feed, and a sealing plug is arranged in the water outlet.
Preferably, pusher includes second motor, drive wheel, rotary rod, agrees with piece, atress gear, threaded rod, lug, slide bar, slide and conversion piece, the second motor is located the inboard bottom of storage case, and the side-mounting of second motor has the drive wheel, the side-mounting of drive wheel has the rotary rod, the skew of side of drive wheel installs the atress gear, and the side-mounting of atress gear has the threaded rod, and the afterbody of threaded rod installs the lug, the slide bar is installed at the top of threaded rod, and the surface mounting of slide bar has the slide, the side-mounting of slide bar has agrees with the piece, and the skew of side of agreeing with the piece installs the conversion piece.
Preferably, the rotating rod and the stressed gear are mutually staggered, and the driving wheel is electrically connected with the second motor and drives the stressed gear through the rotating rod to form a rotating structure.
Preferably, the sizes of the screw threads on the fitting block and the screw rod are matched, and the sliding plate forms a reciprocating moving structure through the fitting block and the screw rod.
Preferably, the top of the push plate penetrates through the isolation plate to be in contact with the sealing plate, and the push plate is in sliding connection with the isolation plate.
Preferably, the closing plate is sliding connection with the material spacing groove, and length and material spacing groove's size phase-match, and the closing plate constitutes sliding construction through left driving plate, right driving plate and push pedal moreover.
Preferably, the spring transmission rod penetrates through the inner side of the injection molding frame entering the mold hole, and the spring transmission rod pushes the spring through the ejector rod to form a telescopic structure.
Preferably, the injection molding frame is in sliding connection with the positioning plate, and the injection molding frame drives the mold hole through the first hydraulic rod to form a telescopic structure.
Preferably, the water outlet penetrates through the surface of the protective cover, the water outlet is designed to be inclined at 30 degrees, and the tail part of the sealing plug and the inner side surface of the injection molding pipe are located on the same horizontal straight line.
Compared with the prior art, the invention has the beneficial effects that:
1. this environmental protection plastics production facility with continuous pay-off function, through pusher's setting, reciprocating type removal can be carried out to the push pedal for this equipment has the function of intermittent type formula continuous pay-off, need not artifical guard and manual blowing.
2. This environmental protection plastics production facility with pay-off function in succession through the position relation setting of closing plate and material spacing groove, when the push pedal drives the closing plate through doing left driving plate and right driving plate and removes, can make the material spacing groove constitute closed and open formula structure, and the material can be followed the downward packing of material spacing groove as required.
3. This environmental protection plastics production facility with continuous pay-off function, through the setting of water tank and valve, after whole equipment work finishes, the valve is opened to the accessible for water in the water tank gets into in the feed inlet, washs equipment inside.
4. This environmental protection plastics production facility with pay-off function in succession sets up through the position relation of outlet and safety cover, can make abluent waste water from moulding plastics intraductal the external world of discharging, and sets up through the slope of outlet, can make the log raft more convenient.
5. This environmental protection plastics production facility with continuous pay-off function, through the setting of spring transmission pole, after the material solidifies the shaping in the die hole, spring transmission pole can be under the effect of ejector pin and spring with the ejecting die hole of fashioned plastics, realize automatic unloading.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a pushing apparatus according to the present invention;
FIG. 3 is a schematic side view of a pushing apparatus according to the present invention;
FIG. 4 is a schematic diagram of a matching block of the present invention;
fig. 5 is a schematic view of the interior of the protective cover of the present invention.
In the figure: 1. a frame; 2. a first motor; 3. a pushing device; 301. a second motor; 302. a driving wheel; 303. rotating the rod; 304. fitting blocks; 305. a stressed gear; 306. a threaded rod; 307. a bump; 308. a slide bar; 309. a slide plate; 310. a conversion block; 4. a separator plate; 5. pushing the plate; 6. a material limiting groove; 7. a sealing plate; 8. a left drive plate; 9. a right drive plate; 10. a material storage box; 11. a top plate stress block; 12. a first hydraulic lever; 13. a connector tile; 14. a top rod; 15. a stress beam; 16. a spring; 17. a spring transmission rod; 18. injection molding the frame; 19. a mold; 20. positioning a plate; 21. an injection molding port; 22. a protective cover; 23. a water outlet; 24. a sealing plug; 25. a connecting rod; 26. a feed inlet; 27. a water tank; 28. a valve; 29. a second hydraulic rod; 30. an accumulator case; 31. a stirring rod; 32. a heater; 33. and (5) injection molding of the pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative efforts based on the embodiments of the present invention belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: an environment-friendly plastic production device with a continuous feeding function comprises a frame 1, a top plate stress block 11, an injection molding frame 18, a water outlet 23, a connecting rod 25 and a water tank 27, wherein the surface of the frame 1 is provided with a storage tank 10, the bottom inside the storage tank 10 is provided with a pushing device 3, the pushing device 3 comprises a second motor 301, a driving wheel 302, a rotating rod 303, a fitting block 304, a stress gear 305, a threaded rod 306, a bump 307, a sliding rod 308, a sliding plate 309 and a conversion block 310, the second motor 301 is positioned at the bottom inside the storage tank 10, the side surface of the second motor 301 is provided with the driving wheel 302, the side surface of the driving wheel 302 is provided with the rotating rod 303, the side surface of the driving wheel 302 is eccentrically provided with the stress gear 305, the side surface of the stress gear 305 is provided with the threaded rod 306, the tail of the threaded rod 306 is provided with the bump 307, the top of, the side surface of the sliding plate 309 is provided with a conjunction block 304, the side surface of the conjunction block 304 is eccentrically provided with a conversion block 310, the rotary rod 303 and the force-bearing gear 305 are mutually staggered, the driving wheel 302 and the second motor 301 are electrically connected, the force-bearing gear 305 is driven by the rotary rod 303 to form a rotary structure, the thread sizes on the conjunction block 304 and the threaded rod 306 are matched, the sliding plate 309 forms a reciprocating moving structure by the conjunction block 304 and the threaded rod 306, through the arrangement of the pushing device 3, the pushing plate 5 can move in a reciprocating manner, so that the equipment has the function of intermittent continuous feeding, manual watching and manual feeding are not needed, the top of the pushing device 3 is provided with the pushing plate 5, the top of the pushing plate 5 penetrates through the isolation plate 4 to be contacted with the sealing plate 7, the pushing plate 5 is in sliding connection with the isolation plate 4, the top of the pushing device 3 is eccentrically provided with the isolation plate 4, and the top, the inner side of the bottom of the material limiting groove 6 is provided with a sealing plate 7, the material limiting groove 6 can form a closed and opened structure through the position relation arrangement of the sealing plate 7 and the material limiting groove 6 when the push plate 5 drives the sealing plate 7 to move by making a left driving plate 8 and a right driving plate 9, materials can be filled downwards from the material limiting groove 6 according to needs, the bottom of the sealing plate 7 is provided with the left driving plate 8, the sealing plate 7 is connected with the material limiting groove 6 in a sliding way, the length of the sealing plate is matched with the size of the material limiting groove 6, the sealing plate 7 forms a sliding structure through the left driving plate 8, the right driving plate 9 and the push plate 5, the side surface of the left driving plate 8 is eccentrically provided with the right driving plate 9, the top plate stress block 11 is positioned on the inner surface of the left side of the frame 1, the side surface of the top plate stress block 11 is eccentrically provided with a first hydraulic rod 12, and, and the side of the connecting plate 13 is provided with an ejector rod 14, the side of the ejector rod 14 is provided with a stress rod 15, the side of the stress rod 15 is provided with a spring 16, the side of the spring 16 is provided with a spring transmission rod 17, the injection frame 18 is eccentrically arranged on the side of the stress rod 15, the inner side of the injection frame 18 is etched with a mold hole 19, the spring transmission rod 17 penetrates through the injection frame 18 and enters the inner side of the mold hole 19, the spring transmission rod 17 pushes the spring 16 through the ejector rod 14 to form a telescopic structure, through the arrangement of the spring transmission rod 17, after materials are solidified and molded in the mold hole 19, the spring transmission rod 17 can push the molded plastic out of the mold hole 19 under the action of the ejector rod 14 and the spring 16, so as to realize automatic blanking, the side of the injection frame 18 is eccentrically provided with a positioning plate 20, the inner side of the positioning plate 20 is etched with an injection port 21, the side of the positioning plate, the surface of an injection molding pipe 33 is provided with a heating wire 32, the inside of the injection molding pipe 33 is provided with a stirring rod 31, the side surface of the stirring rod 31 is provided with a second hydraulic rod 29, the side surface of the second hydraulic rod 29 is provided with a first motor 2, a connecting rod 25 is positioned on the side surface of a protective cover 22, the top of the connecting rod 25 is provided with a storage battery box 30, the side surface of the storage battery box 30 is eccentrically provided with a feed port 26, a water tank 27 is eccentrically arranged on the top of the protective cover 22, the side surface of the water tank 27 is provided with a valve 28, a water outlet 23 penetrates through the surface of the protective cover 22, the water outlet 23 is designed to be inclined at 30 degrees, the tail part of a sealing plug 24 and the inner side surface of the injection molding pipe 33 are positioned on the same horizontal straight line, and through the arrangement of the water tank 27 and the valve 28, when, through the positional relationship setting of outlet 23 and safety cover 22, can make abluent waste water discharge to the external world from injection molding pipe 33, and through the slope setting of outlet 23, can make the water discharge more convenient, outlet 23 is located injection molding pipe 33 surface, and outlet 23 internally mounted has sealing plug 24.
The working principle is as follows: when the environment-friendly plastic production equipment with the continuous feeding function is used, the second motor 301 is firstly turned on, the driving wheel 302 drives the rotating rod 303 to start rotating, the stressed gear 305 and the rotating rod 303 are designed to be meshed with each other, the rotating rod 303 drives the stressed gear 305 to start rotating when rotating, the matching block 304 is matched with threads on the threaded rod 306, when the driving wheel 302 and the stressed gear 305 drive the threaded rod 306 to rotate, the matching block 304 drives the sliding plate 309 to move on the sliding rod 308 along the threads, the sliding plate 309 drives the pushing plate 5 to move forwards, when the pushing plate 5 touches the left driving plate 8, the sealing plate 7 is driven to slide towards the left side, the material limiting groove 6 is in a sealing state, materials are pushed into the feeding hole 26 from the storage box 10, when the pushing plate moves to the tail part of the threaded rod 306, the lug 307 can knock the conversion block 310 to convert the matching block 304 to the threaded rod 306 on the other side, the conjunction block 304 drives the sliding plate 309 to move in the opposite direction, the right transmission plate 9 is pushed to make the material fall from the material limiting groove 6, after the material enters the feed inlet 26, the material enters the inside of the connecting rod 25, the stirring rod 31 continuously drives the material to be transported forward under the action of the first motor 2, during the transportation, the solid material is melted into liquid under the action of the heating wire 32, when the material is transported to the tail part of the stirring rod 31, the second hydraulic rod 29 can make the stirring rod 31 push the material to enter the mold hole 19 from the injection port 21, after the material is cooled, under the action of the first hydraulic rod 12, the injection frame 18 can be driven to move to the left side, when the top rod 14 touches the top plate stress block 11, the top plate stress block 11 pushes the top rod 14 forward under the action of the first hydraulic rod 12, the spring 16 can push the spring transmission rod 17 forward under the action of the top rod 14, the molded plastic is withdrawn from the mold hole 19, the automatic material returning is realized, then the valve 28 is opened, water flows out from the water tank 27 into the feeding hole 26 and enters the injection molding pipe 33 along the feeding hole 26, then the sealing plug 24 is pulled out from the water outlet 23, and the water flows out along the water outlet 23, so that the cleaning of the interior of the equipment is completed, namely the whole working principle of the environment-friendly plastic production equipment with the continuous feeding function.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (9)

1. The utility model provides an environmental protection plastics production facility with pay-off function in succession, includes frame (1), roof atress piece (11), frame (18), outlet (23), links up pole (25) and water tank (27) of moulding plastics, its characterized in that: the surface mounting of the frame (1) is provided with a storage box (10), the bottom side of the interior of the storage box (10) is provided with a pushing device (3), the top of the pushing device (3) is provided with a push plate (5), the top of the pushing device (3) is provided with a separating plate (4) in a deviating manner, the top of the separating plate (4) is provided with a material limiting groove (6) in a deviating manner, the inner side of the bottom of the material limiting groove (6) is provided with a sealing plate (7), the bottom of the sealing plate (7) is provided with a left transmission plate (8), the side of the left transmission plate (8) is provided with a right transmission plate (9) in a deviating manner, the top plate stress block (11) is positioned on the inner surface of the left side of the frame (1), the side of the top plate stress block (11) is provided with a first hydraulic rod (12) in a deviating manner, the side of the first hydraulic rod (12) is provided, the side-mounting of ejector pin (14) has atress pole (15), and atress pole (15) side-mounting has spring (16), the side-mounting of spring (16) has spring transfer line (17), the frame of moulding plastics (18) skew is installed in the side of atress pole (15), and the inboard sculpture of the frame of moulding plastics (18) has mould hole (19), the side skew of the frame of moulding plastics (18) is dark to be changeed and has locating plate (20), and the inboard sculpture of locating plate (20) has mouth (21) of moulding plastics, the side-mounting of locating plate (20) has safety cover (22), and the inboard of safety cover (22) installs injection molding pipe (33), the surface mounting of injection molding pipe (33) has heater (32), the internally mounted of injection molding pipe (33) has puddler (31), and the side-mounting of puddler (31) has second hydraulic stem (29), the side-mounting of second hydraulic stem (29) has first motor (2), join in pole (25) and be located the side of safety cover (22), and join in the top of pole (25) and install accumulator case (30), the side deviation of accumulator case (30) installs feed inlet (26), water tank (27) are deviated to be installed in the top of safety cover (22), and the side-mounting of water tank (27) has valve (28), outlet (23) are located injection molding pipe (33) surface, and outlet (23) internally mounted has sealing plug (24).
2. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 1, wherein: the pushing device (3) comprises a second motor (301), a driving wheel (302), a rotating rod (303), a fitting block (304), a stressed gear (305), a threaded rod (306), a convex block (307), a sliding rod (308), a sliding plate (309) and a conversion block (310), wherein the second motor (301) is positioned at the bottom of the inner side of the storage box (10), the driving wheel (302) is installed on the side surface of the second motor (301), the rotating rod (303) is installed on the side surface of the driving wheel (302), the stressed gear (305) is installed on the side surface of the driving wheel (302) in a deviating mode, the threaded rod (306) is installed on the side surface of the stressed gear (305), the convex block (307) is installed at the tail part of the threaded rod (306), the sliding rod (308) is installed at the top part of the threaded rod (306), the sliding plate (309) is installed on the surface of the sliding rod (308), the, and the side surface of the fitting block (304) is provided with a conversion block (310) in a deviating way.
3. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 2, wherein: the rotating rod (303) and the stressed gear (305) are mutually staggered, and the driving wheel (302) and the second motor (301) are electrically connected and drive the stressed gear (305) through the rotating rod (303) to form a rotating structure.
4. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 2, wherein: the sizes of the screw threads on the conjunction block (304) and the screw rod (306) are matched, and the sliding plate (309) forms a reciprocating movement structure through the conjunction block (304) and the screw rod (306).
5. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 1, wherein: the top of the push plate (5) penetrates through the isolation plate (4) to be contacted with the sealing plate (7), and the push plate (5) is in sliding connection with the isolation plate (4).
6. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 1, wherein: the sealing plate (7) is in sliding connection with the material limiting groove (6), the length of the sealing plate is matched with the size of the material limiting groove (6), and the sealing plate (7) forms a sliding structure through the left driving plate (8), the right driving plate (9) and the push plate (5).
7. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 1, wherein: the spring transmission rod (17) penetrates through the inner side of the injection molding frame (18) entering the mold hole (19), and the spring transmission rod (17) pushes the spring (16) through the ejector rod (14) to form a telescopic structure.
8. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 1, wherein: the injection molding frame (18) is in sliding connection with the positioning plate (20), and the injection molding frame (18) drives the mold hole (19) through the first hydraulic rod (12) to form a telescopic structure.
9. The environment-friendly plastic production equipment with the continuous feeding function as claimed in claim 1, wherein: the water outlet (23) penetrates through the surface of the protective cover (22), the water outlet (23) is designed to be inclined at an angle of 30 degrees, and the tail part of the sealing plug (24) and the inner side surface of the injection molding pipe (33) are positioned on the same horizontal straight line.
CN202021730270.5U 2020-08-19 2020-08-19 Environment-friendly plastic production equipment with continuous feeding function Active CN212666549U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021730270.5U CN212666549U (en) 2020-08-19 2020-08-19 Environment-friendly plastic production equipment with continuous feeding function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021730270.5U CN212666549U (en) 2020-08-19 2020-08-19 Environment-friendly plastic production equipment with continuous feeding function

Publications (1)

Publication Number Publication Date
CN212666549U true CN212666549U (en) 2021-03-09

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CN202021730270.5U Active CN212666549U (en) 2020-08-19 2020-08-19 Environment-friendly plastic production equipment with continuous feeding function

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114368107A (en) * 2021-04-13 2022-04-19 无锡安森源通讯科技有限公司 Using method of injection molding device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114368107A (en) * 2021-04-13 2022-04-19 无锡安森源通讯科技有限公司 Using method of injection molding device
CN114368107B (en) * 2021-04-13 2023-11-28 无锡安森源通讯科技有限公司 Using method of injection molding device

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GR01 Patent grant
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Effective date of registration: 20221130

Address after: 266300 Daguhe Industrial Park, Ligezhuang Town, Jiaozhou City, Qingdao City, Shandong Province

Patentee after: Qingdao Juhe Innovative Materials Co.,Ltd.

Address before: 523808 room 2020, 2nd floor, building 8, Ruiying international science and Technology Innovation Park, No. 9, Daxue Road, Songshanhu high tech Industrial Development Zone, Dongguan City, Guangdong Province

Patentee before: DONGGUAN QIQU ROBOT TECHNOLOGY Co.,Ltd.

TR01 Transfer of patent right