CN212831184U - Draw zipper head equipment to use vibration dish - Google Patents
Draw zipper head equipment to use vibration dish Download PDFInfo
- Publication number
- CN212831184U CN212831184U CN202021497699.4U CN202021497699U CN212831184U CN 212831184 U CN212831184 U CN 212831184U CN 202021497699 U CN202021497699 U CN 202021497699U CN 212831184 U CN212831184 U CN 212831184U
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- material guide
- hopper
- apron
- annular flange
- telescopic rod
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- 239000000463 material Substances 0.000 claims abstract description 145
- 238000000429 assembly Methods 0.000 claims description 7
- 230000000712 assembly Effects 0.000 claims description 7
- 230000002093 peripheral effect Effects 0.000 claims description 6
- 238000009434 installation Methods 0.000 claims description 3
- 230000003139 buffering effect Effects 0.000 description 5
- 230000006835 compression Effects 0.000 description 4
- 238000007906 compression Methods 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000005540 biological transmission Effects 0.000 description 1
- 238000000151 deposition Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 239000000203 mixture Substances 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
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Abstract
The utility model relates to a draw zipper head equipment to use vibration dish relates to the field of vibration dish, including vibration dish main part with set up in storage hopper in the vibration dish main part, be provided with the apron on the storage hopper, the vertical guide fill that is provided with on the apron, in the guide fill lower tip stretches the guide fill, two inside walls that the guide is relative all slope and are provided with the stock guide that is used for accepting the material downwards. This application can protect the material when replenishing the material.
Description
Technical Field
The application relates to the field of vibration discs, in particular to a vibration disc for assembling zipper sliders.
Background
The vibrating disk is an auxiliary feeding device for automatic assembly or automatic processing machinery. The automatic assembling machine can arrange various products in order, and is matched with automatic assembling equipment to assemble various parts of the products into a complete product, or is matched with automatic processing machinery to finish processing workpieces.
The current chinese patent with publication number CN205221952U discloses a draw zipper head vibration dish, which comprises a hopper, the blown down tank, vibrating device, the hopper below is equipped with vibrating device, it is high all around low in the middle of the hopper, the inner wall of hopper is equipped with spiral rising's advancing track, the width of advancing track is greater than the width of drawing zipper head, and be less than the length of drawing zipper head, the end of advancing track is equipped with the blown down tank, the inboard of blown down tank is equipped with turns to the device, turn to the device and include the steering column, the fixed plate, turn to the groove, the fixed plate sets up at hopper upper end edge, the left end of the upper surface of fixed plate is equipped with the steering column, the steering column is the camber line shape and faces the blown down tank, the right-hand member at the upper surface of fixed plate and the outside of blown down tank are established respectively to the.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: every period of time, the zipper head needs to be supplemented, when the zipper head is supplemented, the zipper head is poured into the hopper, and the hopper has a certain height, so that the zipper head and the hopper can generate large collision, and the zipper head can be possibly damaged.
SUMMERY OF THE UTILITY MODEL
In order to protect the slider when the slider is replenished, the present application provides a slider-assembling vibration plate.
The application provides a draw zipper head equipment to use vibration dish adopts following technical scheme:
the utility model provides a draw zipper head equipment to use vibration dish, includes vibration dish main part with set up in storage hopper in the vibration dish main part, be provided with the apron on the storage hopper, the vertical guide fill that is provided with on the apron, in the tip stretched the guide fill under the guide fill, two inside walls that the guide fill is relative all the slope be provided with downwards and be used for accepting the stock guide.
Through adopting above-mentioned technical scheme, when needs supply the material, pour the material into the guide fill in, the material can drop on the stock guide that is located the top to along this stock guide landing, then the landing drops to another relative stock guide, drops to the storage hopper in through the stock guide that is located the below, thereby reduces the phenomenon that the material directly drops on the storage hopper and causes the material to damage, thereby plays the guard action to the material.
Preferably, the concrete connection mode between stock guide and the guide fill is articulated, the articulated shaft of stock guide is the level setting, be provided with the buffering subassembly between stock guide and the guide fill inside wall, the buffering subassembly including articulate in the last telescopic link of stock guide bottom, articulate in the lower telescopic link in the stock guide inside wall and the slip cap locate the telescopic link outside, set up in the last circular slab in the last telescopic link outside, set up in the lower circular slab in the lower telescopic link outside and the cover locate the spring in the outside of last telescopic link and lower telescopic link, the length direction of going up telescopic link and lower telescopic link is perpendicular with the length direction of the articulated shaft of stock guide all the time, the spring is located between circular slab and the lower circular slab, the spring is compression state.
Through adopting above-mentioned technical scheme, in the twinkling of an eye when the material drops on the stock guide, the material passes through weight through stock guide transmission to spring department for the spring is compressed, thereby can play certain cushioning effect to the material, further protects the material.
Preferably, the middle position of apron is vertical has seted up the installing port, both sides about the installing port runs through the apron, the guide fill is vertical to slide in the installing port, the equal vertical T-slot of having seted up of two relative lateral walls of guide fill, sliding connection has the T-shaped piece in the T-shaped slot, the position that the apron top corresponds the T-shaped piece is provided with the connecting seat, one side level that the T-shaped slot was kept away from to the T-shaped piece is provided with adjusting screw, adjusting screw wears to locate the connecting seat, one side that adjusting screw kept away from the T-shaped piece stretches out the connecting seat to threaded connection has adjusting nut.
Through adopting above-mentioned technical scheme, after having a certain amount of material when storage hopper internal storage, in order to make the guide fill can not be to the inside production influence of storage hopper, the guide fill that upwards slides, this moment, the T-shaped piece slides in the T-slot, make the guide fill keep away from the storage hopper gradually, after the altitude mixture control that the guide was fought finishes, the rotation adjusting nut that corresponds makes adjusting nut tip and connecting seat tip butt for the T-shaped piece can be with T-slot inside wall butt, thereby fix the guide hopper.
Preferably, the top position in the storage hopper outside is provided with annular flange, annular flange extends along storage hopper outside circumference, apron demountable installation is on annular flange, fix through four groups of fastening components between apron and the annular flange, four groups of fastening components circumference arrange in apron department, fastening component is including setting up in the fastening screw of annular flange and threaded connection in the fastening nut of fastening screw.
Through adopting above-mentioned technical scheme, through setting up fastening screw and fastening nut, realize dismantling of apron and connect, when the material in the storage hopper takes place to block up, can pull down the apron to clear up.
Preferably, fastening screw articulates in annular flange bottom, fastening screw's articulated shaft is the level setting, four group lower bar holes, four groups have been seted up to annular flange outer peripheral face bar hole circumference arranges in annular flange department down, the bar hole runs through both sides about the annular flange, four group's last bar holes that correspond with lower bar hole, four groups are seted up to the apron outer peripheral face go up bar hole circumference arranges in apron department, go up bar hole runs through both sides about the apron, fastening screw slides and wears to locate last bar hole and lower bar hole, tip and apron top butt under the fastening nut.
By adopting the technical scheme, when the cover plate needs to be detached, the fastening nut is rotated in a small range, then the fastening screw is pulled, so that the fastening screw is separated from the upper strip-shaped hole and the lower strip-shaped hole, and the cover plate can be rapidly detached; when the cover plate is installed, the upper strip-shaped hole and the lower strip-shaped hole are aligned, then the fastening screw is pulled, the fastening screw slides into the upper strip-shaped hole and the lower strip-shaped hole, and the fastening screw rotates correspondingly to enable the fastening screw to be abutted against the top of the cover plate.
Preferably, four groups of material guide plates are arranged in the material guide hopper, and the adjacent material guide plates on the same inner side wall of the material guide hopper are arranged at intervals.
Through adopting above-mentioned technical scheme, through the quantity of appropriate increase stock guide, can reduce the speed that the material dropped when the storage hopper, can further play the guard action to the material.
Preferably, the buffer assemblies at the bottom of the material guide plate are provided with two groups, and the two buffer assemblies are respectively positioned at two ends of the bottom of the material guide plate.
By adopting the technical scheme, the buffering performance of the material guide plate on materials can be improved by properly increasing the number of the buffering assemblies.
Preferably, the outer side of the cover plate is vertically provided with an observation port, and the observation port penetrates through the upper side and the lower side of the cover plate.
Through adopting above-mentioned technical scheme, the setting of viewing aperture is convenient for observe the inside condition of storage hopper.
In summary, the present application includes at least one of the following beneficial technical effects:
1. when materials need to be supplemented, the materials are poured into the material guide hopper, can fall on the uppermost material guide plate, slide along the material guide plate, then slide to the other opposite material guide plate until the materials fall into the material storage hopper through the lowermost material guide plate, so that the phenomenon that the materials are directly fallen on the material storage hopper to cause material damage is reduced, and the materials are protected;
2. when the material drops on the stock guide in the twinkling of an eye, the material passes through the stock guide with weight and transmits to spring department for the spring is compressed, thereby can play certain cushioning effect to the material, further protects the material.
Drawings
FIG. 1 is a schematic view of a vibration plate for assembling a slider;
FIG. 2 is a schematic view of a material guide hopper and a material guide plate of the vibration plate for assembling the slider;
FIG. 3 is an enlarged partial schematic view of portion A of FIG. 2;
fig. 4 is a partially enlarged schematic view of a portion B in fig. 1.
Description of reference numerals: 1. a vibrating pan body; 2. a storage hopper; 3. an annular flange; 4. a cover plate; 5. an installation port; 6. a material guide hopper; 7. a material guide plate; 8. a first side wall; 9. a second side wall; 10. an upper telescopic rod; 11. a lower telescopic rod; 12. an upper circular plate; 13. a lower circular plate; 14. a spring; 15. a connecting seat; 16. a T-shaped slot; 17. a T-shaped block; 18. adjusting the screw rod; 19. adjusting the nut; 20. a lower strip-shaped hole; 21. forming a strip-shaped hole; 22. a fastening assembly; 23. fastening a screw rod; 24. fastening a nut; 25. a viewing port.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses draw zipper head equipment to use vibration dish. Referring to fig. 1, including vibration dish main part 1 and storage hopper 2, storage hopper 2 is fixed in on the vibration dish main part 1, and storage hopper 2 is wide hopper-shaped down, and storage hopper 2 is used for depositing the material, and vibration dish main part 1 is used for arranging the material in storage hopper 2 in order.
Referring to fig. 2, the outer side of the storage hopper 2 is fixed with an annular flange 3, the annular flange 3 extends along the outer side of the storage hopper 2 in the circumferential direction and forms a circle, a circular cover plate 4 is detachably connected to the annular flange 3, the cover plate 4 is located right above the storage hopper 2, and the cover plate 4 is arranged horizontally. The middle position of the top surface of the cover plate 4 is vertically provided with a square mounting port 5, the mounting port 5 penetrates through the upper side and the lower side of the cover plate 4, a material guide hopper 6 is vertically arranged in the mounting port 5, the top of the material guide hopper 6 extends out of the top of the cover plate 4, and the bottom of the material guide hopper 6 extends into the storage hopper 2. The material guide hopper 6 is a hollow square frame body, the upper side and the lower side of the material guide hopper 6 are arranged in an opening manner, four groups of material guide plates 7 are arranged in the material guide hopper 6 in an inward inclining and downward direction, the material guide plates 7 are used for receiving materials, the four groups of material guide plates 7 are arranged on two opposite inner side walls of the material guide hopper 6 in pairs, and the four groups of material guide plates 7 are arranged in the length direction of the inner side walls of the material guide plates 7; two opposite inner side walls of the material guide hopper 6 are respectively a first side wall 8 and a second side wall 9, wherein two groups of material guide plates 7 are connected to the first side wall 8, the other two groups of material guide plates 7 are connected to the second side wall 9, the material guide plate 7 positioned below on the first side wall 8 is positioned between the two groups of material guide plates 7 on the second side wall 9, and the material guide plate 7 positioned above on the second side wall 9 is positioned between the two groups of material guide plates 7 on the first side wall 8; in addition, a space for materials to pass through is reserved between the two adjacent groups of material guide plates 7, and on the vertical projection of the material guide hopper 6, no gap exists between the material guide plates 7 on the two opposite inner side walls of the material guide hopper 6.
When the material is needed to be supplemented, the material is poured into the material guide hopper 6, the material can fall on the material guide plate 7 located above the first side wall 8, and fall off to the material guide plate 7 located above the second side wall 9 along the material guide plate 7, then fall off to the material guide plate 7 located below the first side wall 8, then fall off to the material guide plate 7 located below the second side wall 9, and finally fall off in the material storage hopper 2, so that the phenomenon that the material is damaged due to the fact that the material falls off from a higher position on the material storage hopper 2 is reduced, and the material is protected.
Referring to fig. 2 and 3, the material guide plate 7 is hinged in the material guide hopper 6, a hinge shaft of the material guide plate 7 is horizontally arranged, two opposite end portions of the material guide plate 7 are respectively attached to two inner side walls opposite to the material guide hopper 6, two sets of buffer assemblies are arranged at the bottom of the material guide plate 7, and the two sets of buffer assemblies are respectively located at positions, close to the two end portions, at the bottom of the material guide plate 7. Buffering subassembly includes telescopic link 10 and lower telescopic link 11, it articulates in the stock guide 7 bottom surface to go up telescopic link 10, the length direction of the articulated shaft of going up telescopic link 10 is parallel with the length direction of the articulated shaft of stock guide 7, lower telescopic link 11 articulates in the corresponding position of guide fill 6 inside walls, the length direction of the articulated shaft of lower telescopic link 11 is parallel with the length direction of the articulated shaft of last telescopic link 10, lower telescopic link 11 is hollow setting, and the tip that guide fill 6 was kept away from to lower telescopic link 11 is the opening setting, the telescopic link 10 outside is located to lower telescopic link 11 slip cap. The buffer assembly further comprises an upper circular plate 12, a lower circular plate 13 and a spring 14, wherein the upper circular plate 12 is circumferentially fixed on the outer side of the upper telescopic rod 10, the lower circular plate 13 is circumferentially fixed on the outer side of the lower telescopic rod 11, the spring 14 is sleeved on the outer sides of the upper telescopic rod 10 and the lower telescopic rod 11, the spring 14 is located between the upper circular plate 12 and the lower circular plate 13, two ends of the spring 14 are respectively fixed with the upper circular plate 12 and the lower circular plate 13, and the spring 14 is in a compression state.
When the material drops on the stock guide 7 in the twinkling of an eye, the momentum of material can pass through the stock guide 7 and transmit for spring 14, makes spring 14 by further compression for the stock guide 7 can cushion the material, thereby further protects the material.
Referring to fig. 2, guide hopper 6 and installing port 5 sliding connection, the fixed position that apron 4 top surface corresponds guide hopper 6 has two sets of connecting seats 15, two sets of connecting seats 15 are located the relative both sides of guide hopper 6 respectively, the T-slot 16 has all been seted up to the position that two relative lateral walls of guide hopper 6 correspond connecting seat 15, the length direction extension setting of guide hopper 6 is followed to T-slot 16, sliding connection has T-shaped piece 17 in the T-slot 16, T-shaped piece 17 can slide along the length direction in T-slot 16, one side level that T-shaped piece 17 kept away from T-slot 16 is fixed with adjusting screw 18, adjusting screw 18 slides and wears to locate connecting seat 15, adjusting screw 18 keeps away from the one end of T-shaped piece 17 and stretches out connecting seat 15, and threaded.
When more materials exist in the storage hopper 2, the material guide hopper 6 is slid upwards to enable the material guide hopper 6 to gradually rise and be away from the storage hopper 2, after the height of the material guide hopper 6 is adjusted, the adjusting nut 19 is correspondingly rotated to enable the end part of the adjusting nut 19 to be abutted against the end part of the connecting seat 15, the T-shaped block 17 is abutted against the inner side wall of the T-shaped groove 16, and therefore the material guide hopper 6 is fixed; the height of the material guide hopper 6 is correspondingly increased, so that the material guide hopper 6 cannot influence the arrangement of the materials in the storage hopper 2.
Referring to fig. 1 and 4, the cover plate 4 and the annular flange 3 are fixed by four sets of fastening members 22, and the four sets of fastening members 22 are circumferentially arranged at the cover plate 4. The 3 outer peripheral faces of annular flange are vertical to be seted up four groups of lower bar holes 20, and lower bar hole 20 circumference is arranged in 3 departments of annular flange, and bar hole 20 runs through both sides about annular flange 3 down, and apron 4 outer peripheral faces are vertical to be seted up four groups of upper strip holes 21 that correspond with lower bar hole 20, and upper strip hole 21 runs through both sides about apron 4, and four groups of upper strip holes 21 circumference are arranged in apron 4 departments. Fastening component 22 includes fastening screw 23 and threaded connection in the fastening nut 24 in the fastening screw 23 outside, fastening screw 23 articulates in the position that bar hole 20 down corresponds in 3 bottoms of annular flange, fastening screw 23's articulated shaft is the level setting, fastening screw 23's diameter is less than the distance between the relative both sides wall in bar hole 20 down, fastening screw 23 slides and wears to locate down in bar hole 20 and the last bar hole 21, the distance between 3 bottom surfaces of annular flange and the 4 top surfaces of apron is less than fastening screw 23's length, and 24 tip of fastening nut and the 4 top butt of apron.
When the cover plate 4 needs to be detached, the fastening nut 24 is rotated in a small range, then the fastening screw 23 is pulled, the fastening screw 23 is separated from the upper strip-shaped hole 21 and the lower strip-shaped hole 20, the cover plate 4 can be detached, and when materials in the storage hopper 2 are blocked, the cover plate 4 can be detached and cleaned; when the cover plate 4 is installed, the upper strip-shaped hole 21 and the lower strip-shaped hole 20 are aligned, then the fastening screw 23 is pulled, the fastening screw 23 slides into the upper strip-shaped hole 21 and the lower strip-shaped hole 20, the fastening nut 24 correspondingly rotates, and the fastening nut 24 is abutted to the top of the cover plate 4.
Referring to fig. 1, in order to facilitate observation of the arrangement of the materials inside the storage hopper 2, an observation port 25 is vertically formed in the outer side of the cover plate 4, and the observation port 25 penetrates through the upper side and the lower side of the cover plate 4.
The implementation principle of the vibration disk for assembling the zipper head of the embodiment of the application is as follows: when materials need to be supplemented, the materials are poured into the material guide hopper 6, can fall on the material guide plate 7 positioned above the first side wall 8, slide to the material guide plate 7 positioned above the second side wall 9 along the material guide plate 7, slide to the material guide plate 7 positioned below the first side wall 8, slide to the material guide plate 7 positioned below the second side wall 9, and finally fall into the material storage hopper 2, so that the phenomenon that the materials fall on the material storage hopper 2 from a higher position to cause material damage is reduced, and the materials are protected; when the material drops on the stock guide 7 in the twinkling of an eye, the momentum of material can pass through the stock guide 7 and transmit for spring 14, makes spring 14 by further compression for the stock guide 7 can cushion the material, thereby further protects the material.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides a draw zipper head equipment to use vibration dish, includes vibration dish main part (1) and set up in storage hopper (2) on vibration dish main part (1), its characterized in that: the material storage hopper is characterized in that a cover plate (4) is arranged on the storage hopper (2), a material guide hopper (6) is vertically arranged on the cover plate (4), the lower end of the material guide hopper (6) extends into the storage hopper (2), and two opposite inner side walls of the material guide hopper (6) are obliquely and downwards provided with material guide plates (7) used for bearing materials.
2. The vibrating tray for assembling a slide fastener slider according to claim 1, wherein: the material guide plate (7) and the material guide hopper (6) are connected in a hinged mode, a hinged shaft of the material guide plate (7) is horizontally arranged, a buffer assembly is arranged between the material guide plate (7) and the inner side wall of the material guide hopper (6), the buffer assembly comprises an upper telescopic rod (10) hinged to the bottom of the material guide plate (7), a lower telescopic rod (11) hinged to the inner side wall of the material guide plate (7) and slidably sleeved on the outer side of the upper telescopic rod (10), an upper circular plate (12) arranged on the outer side of the upper telescopic rod (10), a lower circular plate (13) arranged on the outer side of the lower telescopic rod (11) and a spring (14) sleeved on the outer sides of the upper telescopic rod (10) and the lower telescopic rod (11), the length directions of the upper telescopic rod (10) and the lower telescopic rod (11) are always perpendicular to the length direction of the hinged shaft of the material guide plate (7), the spring (14) is located between the upper circular plate (12) and the lower circular plate (13), and the spring (14) is in a compressed state.
3. The vibrating tray for assembling a slide fastener slider according to claim 1, wherein: the utility model discloses a T-shaped guide hopper, including apron (4), installing port (5), guide hopper (6), T-shaped block (16), adjusting screw (18), connecting seat (15) are stretched out to one side level that T-shaped block (16) were kept away from in T-shaped block (17), adjusting screw (18) wear to locate connecting seat (15), one side that T-shaped block (17) were kept away from in adjusting screw (18) to threaded connection has adjusting nut (19).
4. The vibrating tray for assembling a slide fastener slider according to claim 1, wherein: the top position in storage hopper (2) outside is provided with annular flange (3), annular flange (3) extend along storage hopper (2) outside circumference, apron (4) demountable installation is on annular flange (3), fix through four sets of fastening components (22) between apron (4) and annular flange (3), four sets of fastening components (22) circumference arrange in apron (4) department, fastening components (22) are including setting up in fastening screw (23) and the fastening nut (24) of threaded connection in fastening screw (23) of annular flange (3).
5. The vibrating tray for assembling a slide fastener slider according to claim 4, wherein: fastening screw (23) articulate in annular flange (3) bottom, the articulated shaft of fastening screw (23) is the level setting, four groups lower bar hole (20), four groups have been seted up to annular flange (3) outer peripheral face bar hole (20) circumference arrangement in annular flange (3) department down, the bar hole runs through both sides about annular flange (3), apron (4) outer peripheral face is seted up four groups upper slitter hole (21) that correspond with lower bar hole (20), four groups upper slitter hole (21) circumference arrangement in apron (4) department, upper slitter hole (21) runs through both sides about apron (4), fastening screw (23) slide and wear to locate upper slitter hole (21) and lower bar hole (20), the tip and apron (4) top butt under fastening nut (24).
6. The vibrating tray for assembling a slide fastener slider according to claim 1, wherein: four groups of material guide plates (7) are arranged in the material guide hopper (6), and the adjacent material guide plates (7) on the same inner side wall of the material guide hopper (6) are arranged at intervals.
7. The vibrating tray for assembling a slide fastener slider according to claim 2, wherein: the buffer assemblies at the bottom of the material guide plate (7) are provided with two groups, and the two buffer assemblies are respectively positioned at two ends of the bottom of the material guide plate (7).
8. The vibrating tray for assembling a slide fastener slider according to claim 1, wherein: the outer side of the cover plate (4) is vertically provided with an observation port (25), and the observation port (25) penetrates through the upper side and the lower side of the cover plate (4).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021497699.4U CN212831184U (en) | 2020-07-27 | 2020-07-27 | Draw zipper head equipment to use vibration dish |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021497699.4U CN212831184U (en) | 2020-07-27 | 2020-07-27 | Draw zipper head equipment to use vibration dish |
Publications (1)
Publication Number | Publication Date |
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CN212831184U true CN212831184U (en) | 2021-03-30 |
Family
ID=75121319
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202021497699.4U Expired - Fee Related CN212831184U (en) | 2020-07-27 | 2020-07-27 | Draw zipper head equipment to use vibration dish |
Country Status (1)
Country | Link |
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CN (1) | CN212831184U (en) |
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2020
- 2020-07-27 CN CN202021497699.4U patent/CN212831184U/en not_active Expired - Fee Related
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20210330 |
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