CN219719727U - Single smoke pipe feeding device - Google Patents

Single smoke pipe feeding device Download PDF

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Publication number
CN219719727U
CN219719727U CN202321325065.4U CN202321325065U CN219719727U CN 219719727 U CN219719727 U CN 219719727U CN 202321325065 U CN202321325065 U CN 202321325065U CN 219719727 U CN219719727 U CN 219719727U
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China
Prior art keywords
tube
smoke
assembly
hub body
subassembly
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CN202321325065.4U
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Chinese (zh)
Inventor
杨戬
吴凯
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Wuhan Micropower Robot Technology Co ltd
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Wuhan Micropower Robot Technology Co ltd
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Priority to CN202321325065.4U priority Critical patent/CN219719727U/en
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Abstract

The utility model discloses a single smoke tube feeding device which comprises a frame, a feeding assembly, a hub assembly and a discharging assembly, wherein the feeding assembly, the hub assembly and the discharging assembly are arranged on the frame, and the feeding assembly is used for storing smoke tubes and conveying the smoke tubes to the hub assembly; the wheel hub subassembly is used for carrying the one branch of tobacco pipe to the ejection of compact subassembly, the ejection of compact subassembly is used for carrying the one branch of tobacco pipe that moves to ejection of compact subassembly pan feeding mouth department to next station. Through the cooperation of material loading subassembly, wheel hub subassembly and ejection of compact subassembly, the tobacco pipe loops through material loading subassembly, wheel hub subassembly and ejection of compact subassembly, and the tobacco pipe of batching is by the input of a branch when passing through wheel hub subassembly, then detects on the tobacco pipe testboard with single cigarette pipe transmission through ejection of compact subassembly, and equipment automatic operation has avoided manual operation's loaded down with trivial details nature, has improved work efficiency.

Description

Single smoke pipe feeding device
Technical Field
The utility model relates to the field of material conveying, in particular to a single smoke tube feeding device.
Background
The smoke tube needs to be subjected to sampling inspection after production, a certain amount of smoke tubes need to be extracted from the smoke tubes in the same batch, and then one part of the smoke tubes are put into a smoke tube test bench to test parameters such as smoke tube suction resistance, hardness, filter stick combination rate and the like.
However, when one smoke tube is put into the smoke tube test bench, the manual work is usually utilized to realize the point in actual work, so that the working efficiency is low, the labor cost is not low, and the cost reduction and the synergy are not facilitated.
Disclosure of Invention
The utility model mainly aims to provide a single smoke tube feeding device which comprises a frame, a feeding assembly, a hub assembly and a discharging assembly, wherein the feeding assembly, the hub assembly and the discharging assembly are arranged on the frame, and the feeding assembly is used for storing smoke tubes and conveying the smoke tubes to the hub assembly; the wheel hub subassembly is used for carrying the one branch of tobacco pipe to the ejection of compact subassembly, the ejection of compact subassembly is used for carrying the one branch of tobacco pipe that moves to ejection of compact subassembly pan feeding mouth department to next station.
Further, the hub assembly comprises a hub body, a plurality of grooves for accommodating a single smoke tube are formed in the periphery of the hub body, and two ends of the grooves in the length direction penetrate through two sides of the hub body; the pan feeding mouth of ejection of compact subassembly is located one side of wheel hub body, and pivoted wheel hub body can drive the recess respectively with the pan feeding mouth of ejection of compact subassembly aligns.
Further, the discharging component comprises a material receiving pipe and an air inlet pipe, the material receiving pipe is located on one side of the groove, the air inlet pipe is located on the other side of the groove and is located on the same straight line with a material inlet of the material receiving pipe, and the hub body can drive two ends of the groove to be located on the same straight line with the material inlet of the material receiving pipe and the air inlet pipe.
Further, a material pipe towing post is fixedly installed on the frame, a material pipe supporting clamp is installed on the material pipe towing post, a locking piece is arranged on the material pipe supporting clamp and used for fixing the material pipe supporting clamp and the material pipe towing post relatively, and a clamping part of the material pipe supporting clamp is used for clamping the material receiving pipe.
Further, the one end of receiving pipe is corresponding the recess is provided with the water conservancy diversion piece, the guiding gutter that is the frustum form has been seted up to the inside of water conservancy diversion piece, the less one end of guiding gutter diameter with receiving pipe connects, the great one end of guiding gutter diameter is located receiving pipe is close to one side of recess.
Further, two sides of the hub body are provided with baffles, and the two baffles do not rotate along with the rotation of the hub body; through holes are formed in the positions, corresponding to the guide blocks, of the two baffles, and smoke pipes in the grooves can penetrate through the through holes to enter the guide blocks.
Further, a first synchronous wheel is arranged on one side of the hub body, and the first synchronous wheel is coaxially connected with the hub body; the driving motor is arranged on the frame, a second synchronous wheel is arranged on an output shaft of the driving motor, and a synchronous belt is connected between the first synchronous wheel and the second synchronous wheel.
Further, the material loading subassembly includes the storage silo, the discharge gate has been seted up to the bottom of storage silo, the bottom of discharge gate is connected with carries the hopper, carry the discharge end of hopper with the laminating of the surface of wheel hub body.
Further, the bottom of storage silo is equipped with discharge mechanism, discharge mechanism includes bottom plate and drive part, bottom plate movable mounting is in the bottom of storage silo, drive part install in the frame and with bottom plate fixed connection is used for driving the bottom plate be close to with keep away from the direction reciprocating motion of discharge gate.
Further, the hub body is a hub with negative pressure, one side, close to the conveying hopper, of the hub body is provided with negative pressure for adsorbing the smoke tube into the groove of the hub body, the other side of the hub body is normal air pressure, and the smoke tube in the corresponding groove is conveyed to the material receiving tube through the air inlet tube.
The beneficial effects of the utility model are as follows:
according to the feeding device for the single smoke tube, through the matching of the feeding component, the hub component and the discharging component, the smoke tubes sequentially pass through the feeding component, the hub component and the discharging component, the smoke tubes in batches are input by one branch when passing through the hub component, and then the single smoke tube is conveyed to the smoke tube test board for detection through the discharging component, so that the device automatically operates, the complexity of manual operation is avoided, and the working efficiency is improved.
Drawings
FIG. 1 is a schematic front view of an apparatus according to an embodiment of the present utility model.
FIG. 2 is a schematic view of an apparatus according to an embodiment of the present utility model.
FIG. 3 is a schematic view of a hub assembly and a receiving assembly according to an embodiment of the present utility model.
FIG. 4 is a partial schematic view of a hub assembly in accordance with an embodiment of the present utility model.
FIG. 5 is a schematic view of a hub body according to an embodiment of the present utility model.
FIG. 6 is a schematic diagram of a flow guiding block according to an embodiment of the present utility model.
Reference numerals illustrate: 1. a frame; 2. a feeding assembly; 3. a hub assembly; 4. a discharge assembly; 31. a hub body; 32. a groove; 41. a material receiving pipe; 43. an air inlet pipe; 45. a material pipe towing column; 46. a material pipe supporting clamp; 42. a flow guiding block; 44. a diversion trench; 33. a baffle; 34. a through hole; 35. a first synchronizing wheel; 38. a driving motor; 36. a second synchronizing wheel; 21. a storage bin; 22. a discharge port; 23. a conveying hopper; 24. a discharging mechanism; 25. a bottom plate; 26. a driving part; 47. a locking member; 37. a timing belt.
Detailed description of the preferred embodiments
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. Embodiments of the utility model and features of the embodiments may be combined with each other without conflict.
See fig. 1-6.
The utility model relates to a single smoke tube feeding device which comprises a frame 1, a feeding component 2, a hub component 3 and a discharging component 4, wherein the feeding component 2, the hub component 3 and the discharging component 4 are arranged on the frame 1, and the feeding component 2 is used for storing smoke tubes and conveying the smoke tubes to the hub component 3; the wheel hub assembly 3 is used for conveying one branch of the smoke tube to the discharging assembly 4, and the discharging assembly 4 is used for conveying one branch of the smoke tube which moves to the feeding port of the discharging assembly 4 to the next station.
Through the cooperation of material loading subassembly 2, wheel hub subassembly 3 and ejection of compact subassembly 4, the tobacco pipe loops through material loading subassembly 2, wheel hub subassembly 3 and ejection of compact subassembly 4, and the tobacco pipe of batching is by the input of a branch when passing through wheel hub subassembly 3, then detects on the tobacco pipe testboard is conveyed to the single tobacco pipe through ejection of compact subassembly 4, and equipment automatic operation has avoided manual operation's loaded down with trivial details nature, has improved work efficiency.
In an embodiment, the hub assembly 3 includes a hub body 31, a plurality of grooves 32 for accommodating a single smoke tube are formed on the periphery of the hub body 31, and two ends of the grooves 32 in the length direction penetrate through two sides of the hub body 31; the feed inlet of ejection of compact subassembly 4 is located one side of wheel hub body 31, and pivoted wheel hub body 31 can drive recess 32 respectively with the feed inlet of ejection of compact subassembly 4 aligns.
When the smoke pipe is transmitted to the hub assembly 3, as the groove 32 for accommodating a single smoke pipe is formed in the hub body 31, the smoke pipe is embedded into the groove 32, then the smoke pipe in the groove 32 is driven to rotate together along with the rotation of the hub body 31, and when the groove 32 with the smoke pipe rotates to be aligned with a feed inlet of the discharge assembly 4, the smoke pipe is conveyed into the discharge assembly 4.
In an embodiment, the discharging component 4 includes a receiving pipe 41 and an air inlet pipe 43, the receiving pipe 41 is located on one side of the groove 32, the air inlet pipe 43 is located on the other side of the groove 32 and is in the same line with the feeding port of the receiving pipe 41, and the rotating hub body 31 can drive two ends of the groove 32 to be in the same line with the feeding port of the receiving pipe 41 and the air inlet pipe 43.
When the groove 32 with the smoke tube is in the same straight line with the feed inlet of the material receiving tube 41 and the air inlet tube 43, the gas in the air inlet tube 43 blows the smoke tube in the groove 32 to the feed inlet of the material receiving tube 41.
In an embodiment, the frame 1 is fixedly provided with a pipe towing post 45, the pipe towing post 45 is provided with a pipe supporting clamp 46, the pipe supporting clamp 46 is provided with a locking member 47 for fixing the pipe supporting clamp 46 and the pipe towing post 45 relatively, and a clamping portion of the pipe supporting clamp 46 is used for clamping the receiving pipe 41.
In such design, the material receiving pipe 41 is adjusted by the pipe towing column 45 before the smoke pipe is conveyed, the feeding port of the material receiving pipe 41 and the air inlet pipe 43 are ensured to be in the same straight line, the single smoke pipe can be ensured to rotate to be in the same straight line with the feeding port of the material receiving pipe 41 and the air inlet pipe 43 after being in the groove, and the smoke pipe can be conveyed into the material receiving pipe 41 from the groove 32.
In an embodiment, a guide block 42 is disposed at one end of the receiving tube 41 corresponding to the groove 32, a conical guide groove 44 is formed in the guide block 42, one end of the guide groove 44 with a smaller diameter is connected with the receiving tube 41, and one end of the guide groove 44 with a larger diameter is located at one side of the receiving tube 41 close to the groove 32.
In an embodiment, two sides of the hub body 31 are provided with baffles 33, and two baffles 33 do not rotate along with the rotation of the hub body 31; through holes 34 are formed in the two baffles 33 at positions corresponding to the guide blocks 42, the guide blocks 42 can be fixed on the baffles 33, and the smoke tubes in the grooves 32 can pass through the through holes 34 and enter the guide blocks 42.
By the design, the baffles 33 are arranged on the two sides of the hub body 31, so that the smoke tube is prevented from falling off when the smoke tube rotates on the hub body 31 along with the hub body 31, and meanwhile, support is provided for installation of the flow guide block 42 and the air inlet tube 43.
In one embodiment, a first synchronizing wheel 35 is disposed on one side of the hub body 31, and the first synchronizing wheel 35 is coaxially connected with the hub body 31; the frame 1 is provided with a driving motor 38, an output shaft of the driving motor 38 is provided with a second synchronizing wheel 36, and a synchronizing belt 37 is connected between the first synchronizing wheel 35 and the second synchronizing wheel 36.
In an embodiment, the feeding assembly 2 includes a storage bin 21, a discharge hole 22 is formed in the bottom of the storage bin 21, a conveying hopper 23 is connected to the bottom of the discharge hole 22, a discharge end of the conveying hopper 23 is attached to the outer surface of the hub body 31, and a smoke tube enters a groove 32 on the hub body 31 from the conveying hopper 23.
In an embodiment, a discharging mechanism 24 is disposed at the bottom of the storage bin 21, the discharging mechanism 24 includes a bottom plate 25 and a driving component 26, the bottom plate 25 is movably mounted at the bottom of the storage bin 21, and the driving component 26 is mounted on the frame 1 and fixedly connected with the bottom plate 25, and is used for driving the bottom plate 25 to reciprocate in a direction approaching to and separating from the discharging hole 22.
When the smoke pipe enters the storage bin 21, the driving part 26 drives the bottom plate 25 to reciprocate in the direction approaching and separating from the discharge hole 22, and the smoke pipe on the bottom plate 25 is conveyed into the conveying hopper 23. The driving part 26 may be a reciprocating mechanism, such as a crank block mechanism, which is common in the prior art, or may be a telescopic part which is common in the prior art and drives the base plate 25 to reciprocate.
In an embodiment, the hub body 31 is a hub with negative pressure, one side close to the conveying hopper 23 is provided with negative pressure for adsorbing the smoke tube into the groove of the hub body 31, the other sides of the hub body are at normal air pressure, when the hub body 31 rotates to the groove 32 with the smoke tube to be in the same line with the inlet of the receiving tube 41 and the air inlet tube 43, the air inlet tube 43 is used for blowing the smoke tube in the corresponding groove into the receiving tube 41.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.

Claims (9)

1. A singly prop up tobacco pipe material feeding unit, its characterized in that: the feeding device comprises a frame (1), a feeding assembly (2), a hub assembly (3) and a discharging assembly (4) which are arranged on the frame (1), wherein the feeding assembly (2) is used for storing smoke pipes and conveying the smoke pipes to the hub assembly (3); the wheel hub assembly (3) is used for conveying one smoke pipe to the discharging assembly (4), and the discharging assembly (4) is used for conveying one smoke pipe which moves to the feeding port of the discharging assembly (4) to the next station.
2. The single-smoke-tube feeding device according to claim 1, wherein the hub assembly (3) comprises a hub body (31), a plurality of grooves (32) for accommodating a single smoke tube are formed in the periphery of the hub body (31), and two ends of the grooves (32) in the length direction penetrate through two sides of the hub body (31); the feed inlet of ejection of compact subassembly (4) is located one side of wheel hub body (31), and pivoted wheel hub body (31) can drive recess (32) respectively with the feed inlet of ejection of compact subassembly (4) aligns.
3. The single smoke tube feeding device according to claim 2, wherein the discharging assembly (4) comprises a receiving tube (41) and an air inlet tube (43), the receiving tube (41) is located on one side of the groove (32), the air inlet tube (43) is located on the other side of the groove (32) and is in the same straight line with a feeding hole of the receiving tube (41), and the rotating hub body (31) can drive two ends of the groove (32) to be in the same straight line with the feeding hole of the receiving tube (41) and the air inlet tube (43).
4. A single smoke tube feeding device according to claim 3, wherein a tube towing post (45) is fixedly mounted on the frame (1), a tube supporting tube clamp (46) is mounted on the tube towing post (45), a locking piece (47) is arranged on the tube supporting tube clamp (46) and used for fixing the tube supporting tube clamp (46) and the tube towing post (45) relatively, and a clamping part of the tube supporting tube clamp (46) is used for clamping the receiving tube (41).
5. A single smoke tube feeding device according to claim 3, wherein a diversion block (42) is arranged at one end of the receiving tube (41) corresponding to the groove (32), a diversion groove (44) in a frustum shape is formed in the diversion block (42), one end with a smaller diameter of the diversion groove (44) is connected with the receiving tube (41), and one end with a larger diameter of the diversion groove (44) is located at one side of the receiving tube (41) close to the groove (32).
6. The single-smoke-tube feeding device according to claim 5, wherein two sides of the hub body (31) are provided with baffles (33), and the two baffles (33) do not rotate along with the rotation of the hub body (31); through holes (34) are formed in the positions, corresponding to the guide blocks (42), of the two baffles (33), and smoke pipes in the grooves (32) can penetrate through the through holes (34) to enter the guide blocks (42).
7. The single-smoke-tube feeding device according to claim 2, wherein a first synchronous wheel (35) is arranged on one side of the hub body (31), and the first synchronous wheel (35) is coaxially connected with the hub body (31); the novel synchronous machine is characterized in that a driving motor (38) is arranged on the frame (1), a second synchronous wheel (36) is arranged on an output shaft of the driving motor (38), and a synchronous belt (37) is connected between the first synchronous wheel (35) and the second synchronous wheel (36).
8. A single smoke tube feeding device according to claim 3, wherein the feeding assembly (2) comprises a storage bin (21), a discharge hole (22) is formed in the bottom of the storage bin (21), a conveying hopper (23) is connected to the bottom of the discharge hole (22), and the discharge end of the conveying hopper (23) is attached to the outer surface of the hub body (31).
9. The single-smoke-tube feeding device according to claim 8, wherein a discharging mechanism (24) is arranged at the bottom of the storage bin (21), the discharging mechanism (24) comprises a bottom plate (25) and a driving component (26), the bottom plate (25) is movably mounted at the bottom of the storage bin (21), and the driving component (26) is mounted on the frame (1) and fixedly connected with the bottom plate (25) and is used for driving the bottom plate (25) to reciprocate in a direction approaching to and separating from the discharging hole (22).
CN202321325065.4U 2023-05-24 2023-05-24 Single smoke pipe feeding device Active CN219719727U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321325065.4U CN219719727U (en) 2023-05-24 2023-05-24 Single smoke pipe feeding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321325065.4U CN219719727U (en) 2023-05-24 2023-05-24 Single smoke pipe feeding device

Publications (1)

Publication Number Publication Date
CN219719727U true CN219719727U (en) 2023-09-22

Family

ID=88058565

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321325065.4U Active CN219719727U (en) 2023-05-24 2023-05-24 Single smoke pipe feeding device

Country Status (1)

Country Link
CN (1) CN219719727U (en)

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