Label feeding component

By designing a gluten delivery component including a sign-off agency and a sign-off agency, the problems of low efficiency and blockage of gluten delivery in the prior art are solved, and a more efficient and stable sign-off process and convenient cleaning operation are achieved.

CN222947550UActive Publication Date: 2025-06-06SUZHOU BIYUAN ENVIRONMENTAL PROTECTION ENG
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Patent Information

Application Number
CN202421931493.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-06-06
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The existing gluten sign-off parts have problems with missing and blocked, resulting in low efficiency of gluten sign-off and high labor intensity for operators.

Method used

A gift component including a gift mechanism and a gift mechanism is designed. The gift mechanism driven by a ratchet and a rotating cylinder is combined with an inclined gift groove and a gift mechanism to achieve stable transportation and arrangement of the ticket materials.

Benefits of technology

It improves the convenience and stability of sending visas, reduces the missed visas and blockages, reduces the labor intensity of operators, and simplifies the cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a label feeding component which is characterized by comprising a label feeding mechanism and a label containing mechanism. The label containing mechanism comprises a bin body, a label containing groove with an opening in the top is formed in the bin body, the front end of the label containing groove is communicated with the front end face of the bin body, the bottom face of the label containing groove is obliquely arranged downwards from back to front, a vertical plate with the lower edge is arranged at the front end of the label containing groove, and the label conveying mechanism is arranged on the front side of the vertical plate. A blanking channel is formed between the stick feeding mechanism and the vertical plate; the stick feeding mechanism comprises a stick feeding support, a connecting shaft, two ratchet wheels and a stick feeding driving mechanism, wherein the two ends of the connecting shaft are rotationally installed on the stick feeding support, the two ratchet wheels are installed on the connecting shaft in a spaced mode, and the stick feeding driving mechanism drives the connecting shaft to rotate. The two sides of the stick feeding support are connected with the two sides of the bin body. And the outer surface of the rear end of the ratchet wheel is arranged in the blanking channel. According to the utility model, the stability and convenience of label feeding are improved.
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Description

Technical Field

[0001] The utility model relates to gluten production and processing equipment, in particular to a stick delivery component. Background Art

[0002] In the process of gluten production and processing, in order to meet the processing needs, people will selectively put skewers on the gluten, such as roasting gluten, etc. By putting skewers on the gluten, it is more convenient to roast the gluten. At the same time, in order to ensure that the gluten is easier to bake and more flavorful, the gluten is generally cut into flowers so that it is spiral and evenly distributed on the skewers. In order to improve the efficiency of gluten threading, cutting and pulling and reduce the labor intensity of operators, such as the application number 202210826768.9, the patent name: an automatic threading, cutting and pulling device and its control method, used to realize the automatic threading, cutting and pulling of gluten, but the skewer delivery component of this structure has the following shortcomings:

[0003] 1. The stick feeding component adopts the structure of a stick feeding roller, and a stick groove is set on the surface of the stick feeding roller. Through the rotation of the stick feeding roller, each stick material is fed into the bar hole through the corresponding stick groove. Among them, since the stick material is basically bamboo sticks, the verticality of the bamboo sticks is not good and it is easy to deform. Therefore, the problem of missing sticks often occurs. When the gluten is threaded, the gluten is spirally cut, but the stick is not threaded. It is necessary to manually thread this part of the gluten;

[0004] 2. When the stick materials enter the stick feeding roller from the stick holding slot, due to the large amount of stick materials in the stick holding slot, it is very easy to block the stick feeding roller, resulting in the stick feeding roller being unable to smoothly deliver the stick materials to the strip groove, resulting in the occurrence of empty threading. Summary of the invention

[0005] The utility model aims to provide a signature delivery component, by using the structure, the convenience and stability of signature delivery are improved.

[0006] In order to achieve the above-mentioned purpose, the technical solution adopted by the utility model is: a signature delivery component, including a signature delivery mechanism and a signature holding mechanism;

[0007] The stick holding mechanism comprises a bin body, wherein the bin body is provided with a stick holding slot with a top opening, wherein the front end of the stick holding slot is connected with the front end surface of the bin body, wherein the bottom surface of the stick holding slot is arranged to be inclined downward from the back to the front, wherein the front end of the stick holding slot is provided with a vertical plate with a lower edge, wherein the stick delivery mechanism is arranged at the front side of the vertical plate, and a material dropping channel is formed between the stick delivery mechanism and the vertical plate;

[0008] The card delivery mechanism includes a card delivery bracket, a connecting shaft rotatably mounted on the card delivery bracket at both ends, two ratchets installed on the connecting shaft at intervals, and a card delivery driving mechanism for driving the connecting shaft to rotate, and the two sides of the card delivery bracket are connected to the two sides of the bin body;

[0009] The rear end outer surface of the ratchet is arranged in the blanking channel.

[0010] In the above technical solution, a through groove connected to the blanking channel is also provided on the rear side wall of the vertical plate, and a brush sorting mechanism is also provided on the rear side of the vertical plate. The brush sorting mechanism includes a brush roller and a brush roller driving unit. The brush roller driving unit is configured to drive the brush roller to rotate, and the bristles on the outer surface of the front end of the brush roller pass through the through groove and are arranged in the blanking channel, and the axis of the brush roller is arranged parallel to the axis of the connecting shaft.

[0011] In the above technical solution, the sign feeding bracket includes a baffle and connecting plates respectively arranged on both sides of the baffle, and the space between the rear side of the baffle and the front side of the sign holding mechanism constitutes the material dropping channel;

[0012] Each of the connecting plates is connected to the front end side of the sign holding mechanism via a mounting plate.

[0013] In the above technical solution, a notch is provided in the middle of the top surface of the baffle, and the notch is connected with the upper part of the material dropping channel;

[0014] A coupling mounting plate is respectively installed on the front end surface of the baffles on both sides of the notch, and the two ends of the coupling are rotatably connected to the coupling mounting plates on both sides respectively. The coupling is arranged at the front side of the notch, and the sign-feeding driving mechanism is installed on one of the coupling mounting plates, and the sign-feeding driving mechanism is connected to one end of the coupling;

[0015] The two ratchets are installed on the connecting shaft at intervals, and the rear ends of the ratchets pass through the notch and are arranged in the blanking channel.

[0016] In the above technical solution, the inner end of each mounting plate is provided with two positioning rods spaced apart from each other up and down, and the connecting plate is provided with two vertical through grooves spaced apart from each other up and down, and the two positioning rods on each mounting plate are respectively inserted into the two vertical through grooves corresponding to the connecting plate; the connecting plate is vertically movably connected to the mounting plate via the vertical through grooves and the positioning rods.

[0017] In the above technical solution, at least one extending baffle extending upward is also installed on the front side of the baffle, and the extending baffle is arranged right in front of the sign holding slot.

[0018] In the above technical solution, the signature feeding drive mechanism includes a rotary cylinder, the output shaft of the rotary cylinder is connected to one end of the connecting shaft, and the rotary cylinder is configured to drive the connecting shaft to rotate.

[0019] In the above technical solution, the front end of the sign holding groove is connected to the top of the vertical plate via a V-shaped plate, and the angle of the V-shaped plate is greater than 90°.

[0020] In the above technical solution, a partition is further provided in the stick holding groove, and the partition is arranged close to the left side or the right side of the stick holding groove.

[0021] Due to the application of the above technical solution, the utility model has the following advantages compared with the prior art:

[0022] 1. In the utility model, the stick materials are stored in the stick holding slot, and the bottom of the stick holding slot is inclined, and the stick materials automatically move forward into the material dropping channel by gravity, and the stick feeding mechanism adopts two ratchets, which are driven to rotate by the stick feeding driving mechanism. The stick materials are adjusted by the rotation of the ratchets to prevent the stick materials from being blocked at the entrance of the material dropping channel, so that the stick materials in the stick holding slot can stably enter the material dropping channel, preventing the stick materials from being blocked, and ensuring the stability and convenience of the stick feeding process;

[0023] 2. The delivery mechanism of the utility model can move up and down. If the blanking channel is blocked, the delivery mechanism can be conveniently lifted up to open the bottom of the blanking channel, so that the staff can quickly clean it and improve the convenience of cleaning;

[0024] 3. The utility model also provides a pick arrangement mechanism, which drives the brush roller to rotate through the brush roller driving part, thereby driving the bristles to rotate, and constantly giving an upward thrust to the picks in the material drop channel, so that the picks can be stably sorted from bottom to top, preventing the picks from falling into the material drop channel. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic diagram of the structure of the first embodiment of the present utility model;

[0026] Figure 2 It is a schematic diagram of the three-dimensional structure in the first embodiment of the utility model;

[0027] Figure 3 yes Figure 1 Schematic diagram of the cross-sectional structure of AA;

[0028] Figure 4 yes Figure 3 Schematic diagram of the three-dimensional structure;

[0029] Figure 5 It is a structural schematic diagram of the ratchet in the first embodiment of the present utility model.

[0030] Wherein: 11, top plate; 12, strip groove;

[0031] 2. Submit the parts for signature;

[0032] 21. Signature delivery mechanism; 211. Signature delivery bracket; 212. Coupling; 213. Ratchet; 214. Signature delivery driving mechanism; 2110. Baffle; 2111. Connecting plate; 2112. Mounting plate; 2113. Notch; 2114. Coupling mounting plate; 2115. Extended baffle; 2116. Positioning rod; 2117. Vertical through slot;

[0033] 2131, convex teeth; 2132, inclined surface; 2133, connecting surface;

[0034] 22. sign-holding mechanism; 221. bin body; 222. sign-holding slot; 223. vertical plate; 224. V-shaped plate; 225. partition plate;

[0035] 23. Blanking channel; 24. Through slot; 241. Brush roller; 242. Brush roller driving unit; 243. Brush bristles. DETAILED DESCRIPTION

[0036] The utility model is further described below in conjunction with the accompanying drawings and embodiments:

[0037] Example 1: See Figures 1 to 5 As shown, a visa delivery component includes a visa delivery mechanism 21 and a visa receiving mechanism 22;

[0038] The stick holding mechanism 22 includes a bin body 221, wherein the bin body 221 has a stick holding slot 222 with a top opening, the front end of the stick holding slot 222 is connected to the front end surface of the bin body 221, the bottom surface of the stick holding slot 222 is arranged to be inclined downward from the back to the front, and the front end of the stick holding slot 222 is provided with a vertical plate 223 with a lower edge, the stick delivery mechanism 21 is arranged at the front side of the vertical plate 223, and a material dropping channel 23 is formed between the stick delivery mechanism 21 and the vertical plate 223;

[0039] The card delivery mechanism 21 includes a card delivery bracket 211, a connecting shaft 212 rotatably mounted on the card delivery bracket 211 at both ends, two ratchet wheels 213 installed on the connecting shaft 212 at intervals, and a card delivery driving mechanism 214 driving the connecting shaft 212 to rotate. The two sides of the card delivery bracket 211 are connected to the two sides of the bin body 221;

[0040] The rear end outer surface of the ratchet wheel 213 is disposed in the blanking channel 23 .

[0041] In this embodiment, the stick feeding component 2 is installed on the top plate 11 of the machine, and a strip groove 12 is provided on the top plate 11, and a stick pushing component is provided in the strip groove, and the material dropping channel is directly above the strip groove. When in use, the stick material is put into the stick holding groove, and the stick material rolls forward to the material dropping channel by its own weight. The diameter of the stick material is D, and the width of the material dropping channel is greater than D and less than 2D. Therefore, in order to ensure that the stick materials falling into the material dropping channel are arranged one by one from bottom to top, and to prevent the stick materials from being blocked at the top of the material dropping channel (that is, at the entrance of the material dropping channel, and the bottom of the material dropping channel is the exit), two ratchets are provided, and the ratchets are rotated to push the sticks accumulated in the material dropping channel upward to loosen them, so that the stick materials fall one by one toward the material dropping channel in sequence.

[0042] In this embodiment, the top of the ratchet wheel rotates from the back to the front. Figure 3 , 5 As shown, the outer surface of the ratchet 213 is provided with a plurality of convex teeth 2131, the convex teeth are triangular structures, and the convex teeth 2131 include an inclined surface 2132 and a connecting surface 2133, one end of the inclined surface is connected to the outer end of the connecting surface, and the other end of the inclined surface is connected to the inner end of the connecting surface of an adjacent convex tooth. Taking the right side view as an example, the inclined surface is inclined outward in the clockwise direction, and the ratchet rotates counterclockwise. At this time, only the inclined surface of the convex teeth of the ratchet is in contact with the material, thereby straightening the material, and when all the inclined surfaces are in contact with the material in turn during the rotation of the ratchet, the material will not be driven forward to leave the entrance of the blanking channel. If the ratchet rotates clockwise, the connecting surface of the convex teeth is in contact with the material, and the connecting surface will press the material down into the blanking channel, so that the material at the blocked position will be cut off by the convex teeth. In this embodiment, the connection surface of the convex teeth at the top of the ratchet is set to face backwards, so when the ratchet rotates, the convex teeth at the top of the ratchet rotate forwards, and only the inclined surface is always in contact with the material, ensuring smooth smoothing of the material and preventing the occurrence of material jamming. If the connection surface of the convex teeth at the top of the ratchet faces forward and the top of the ratchet rotates forward, the convex teeth will drive the material to move forward and leave the material drop channel and fall. If the convex part at the top of the ratchet rotates backwards, the inclined surface will push the material to move downwards toward the material drop channel, further increasing the blockage. Therefore, in this embodiment, the connection surface of the convex teeth at the top of the ratchet is set to face backwards, and the convex teeth at the top of the ratchet rotate forwards.

[0043] See also Figure 3 , 4As shown, a through slot 24 communicating with the blanking channel 23 is also provided on the rear side wall of the vertical plate 223, and a sorting mechanism is also provided on the rear side of the vertical plate 223, and the sorting mechanism includes a brush roller 241 and a brush roller driving unit 242, and the brush roller driving unit 242 is configured to drive the brush roller 241 to rotate, and the bristles 243 on the outer surface of the front end of the brush roller 241 pass through the through slot 24 and are arranged in the blanking channel 23, and the axis of the brush roller 241 is arranged parallel to the axis of the connecting shaft. In this embodiment, the brush roller driving unit is a motor, and the brush roller is driven to rotate by the motor.

[0044] Among them, the axis of the brush roller is set parallel to the strip groove and the axis of the connecting shaft. Since the diameter of the skewers for threading gluten is relatively small, and the skewers are mainly supported by bamboo sticks or wooden sticks, they may have problems such as bending. In this way, when some skewers with larger bending arcs enter the blanking channel, they may be stuck in the blanking channel and cannot fall normally (stuck, or only one side of the skewers drops, resulting in the subsequent inability to be pushed away normally by the skewers pushing component to perform the gluten threading action). Therefore, through the setting of the brush roller, bristles are provided on the outer surface of the brush roller, and the top of the brush roller rotates from back to front, so that the bristles in the blanking channel passing through the channel will always move downward. In this process, the presence of the bristles can always give the skewers a certain downward thrust, so that the skewers can smoothly fall to the bottom of the blanking channel and be smoothly pushed away by the skewers pushing component.

[0045] See also Figures 2 to 4 As shown, the sign delivering bracket 211 includes a baffle 2110 and connecting plates 2111 respectively arranged on both sides of the baffle 2110, and the space between the rear side of the baffle 2110 and the front side of the sign holding mechanism 22 constitutes the drop channel 23; wherein, the drop channel is formed between the baffle and the vertical plate.

[0046] Each of the connecting plates 2111 is connected to the front end side of the sign holding mechanism 22 via a mounting plate 2112 .

[0047] A notch 2113 is provided in the middle of the top surface of the baffle 2110, and the notch 2113 is connected to the upper part of the material dropping channel 23;

[0048] A coupling mounting plate 2114 is respectively installed on the front end surface of the baffle 2110 on both sides of the notch 2113, and both ends of the coupling 212 are rotatably connected to the coupling mounting plates 2114 on both sides. The coupling 212 is arranged at the front side of the notch 2113, and the sign-feeding driving mechanism 214 is installed on one of the coupling mounting plates 2114, and the sign-feeding driving mechanism 214 is connected to one end of the coupling 212;

[0049] The two ratchets 213 are installed on the connecting shaft 212 at intervals, and the rear ends of the ratchets 213 pass through the notch 2113 and are disposed in the blanking channel 23 .

[0050] In this embodiment, the coupling is arranged at the front side of the notch, and the rear end of the ratchet passes through the notch and is in the blanking channel, and the notch is connected to the top of the baffle, that is, the rear end of the ratchet is in the blanking channel, and at the same time, the distance between the rear end face of the maximum outer diameter of the ratchet and the vertical plate is greater than the diameter of one skewer, but less than the diameter of two skewer, so that a single skewer can move downward through the distance between the ratchet and the vertical plate, and the ratchet can flip the excess skewer upward to smooth it and prevent it from being blocked. At the same time, the distance between the two ratchets will be less than the length of the skewer, but the distance between the two ratchets is 1 / 2 to 2 / 3 of the length of the skewer, so that when the two ratchets rotate, they push the two ends of the skewer to prevent the skewer from moving up on one side and tilting.

[0051] Furthermore, at least one extending baffle 2115 extending upward is installed on the front side of the baffle 2110 , and the extending baffle 2115 is arranged right in front of the sign holding slot 222 .

[0052] The setting of the extended baffle can prevent the skewers from falling forward from the top of the baffle when a large amount of skewers in the skewers receiving groove moves forward, and the extended baffle is used to block the skewers. In this embodiment, there are two extended baffles, which are respectively set on the side of a coupling mounting plate to block and limit the two ends of the skewers.

[0053] See also Figures 2 to 4 As shown, the inner end of each mounting plate 2112 is provided with two positioning rods 2116 spaced apart from each other, and the connecting plate 2111 is provided with two vertical through grooves 2117 spaced apart from each other, and the two positioning rods 2116 on each mounting plate 2112 are respectively inserted into the two vertical through grooves 2117 corresponding to the connecting plate 2111; the connecting plate 2111 is vertically movably connected to the mounting plate 2112 via the vertical through grooves 2117 and the positioning rods 2116.

[0054] In this embodiment, the signature delivery mechanism is subject to its own weight and will automatically move downward so that the bottom of the baffle rests against the top surface of the top plate of the machine. At this time, the positioning rod is set close to the top of the corresponding vertical through groove, and two positioning rods and two vertical through grooves are used on each side, so that the signature delivery mechanism can only move up and down. Since the skewers are made of wood or bamboo, the skewers may break, crack in half, or be missing a part. The skewers pushing component is designed to push the entire skewers. Due to the breakage or defect of the skewers, the force direction of the skewers will deviate when the skewers pushing component is applied to the skewers, causing the skewers to tilt, get stuck, or break when being pushed. Or for various reasons, when the skewers at the bottom of the blanking channel are stuck and cannot be pushed smoothly, the operator holds the baffle or the connecting shaft between the two ratchets, pulls the skewers feeding mechanism directly upward, and opens the bottom of the blanking channel to leak out through the positioning rod and the vertical through-slot guide. The operator sorts the skewers in the blanking channel, clears out the blocked skewers, broken skewers or other skewers, and then releases the upward pulling force of the feeding mechanism, which automatically falls under the weight to close the bottom of the blanking channel. In this way, there is no need to disassemble the equipment for cleaning, nor is there a need to insert tools from the top of the blanking channel into the blanking channel for cleaning, so cleaning is convenient and quick.

[0055] At the same time, the two ratchets are arranged at intervals, and the connecting shaft between the two ratchets can also be used as a handle. The upward pulling force applied to the signature feeding mechanism by the connecting shaft can open the blanking channel, which is more practical.

[0056] See also Figure 1 , 2 As shown, the signature feeding drive mechanism 214 includes a rotary cylinder, the output shaft of which is connected to one end of the connecting shaft 212, and the rotary cylinder is configured to drive the connecting shaft 212 to rotate.

[0057] Each time a stick is pushed away from the bottom of the blanking channel by the pusher, the rotary cylinder drives the shaft to rotate a certain angle and then stops when the next material is dropped. It does not need to work all the time. It rotates once after pushing the stick once. There are several reasons why the motor is not used to drive the shaft to rotate:

[0058] 1. The shaft rotation angle does not need to be very precise, the size of the rotary cylinder can be smaller than the axial space occupied by the motor, and the cost is also lower;

[0059] 2. After the motor drives the coupling to stop rotating, there will be a little bit of recoil (a little bit of reverse rotation). If the ratchet rotates in the opposite direction, the material on the connecting surface of the ratchet teeth will be pressed down, causing the material to be stuck in the blanking channel, causing blockage.

[0060] Therefore, in this embodiment, a rotary cylinder is used to drive the coupling to rotate. Furthermore, the two ends of the coupling are rotatably connected to the coupling mounting plate through a one-way bearing, so that the coupling can only rotate in one direction and will not be reversed and stuck. If a motor is used, when the motor stops, the recoil will cause a certain impact on the one-way bearing every time, and the one-way bearing is easily damaged over time. Due to the restriction of the one-way bearing on the coupling, this impact force will be fed back to the motor, causing the motor to be easily damaged. Therefore, in this embodiment, a rotary cylinder is used, which has no recoil.

[0061] The front end of the skewer slot 222 is connected to the top of the vertical plate 223 via a V-shaped plate 224, and the angle of the V-shaped plate 224 is greater than 90 degrees. In this way, the skewer material can be accumulated at the V-shaped plate, so that the skewer material can be fed from the V-shaped plate into the drop channel.

[0062] At the same time, the ratchet is set opposite to the V-shaped plate. When the picked materials are accumulated at the V-shaped plate, there are more materials there, which makes it easy for the picked materials to be blocked in the blanking channel. Therefore, the rotation of the ratchet can push the picked materials there to loosen, so that the picked materials can fall down smoothly into the blanking channel.

[0063] See also Figure 1 , 2 As shown, a partition 225 is further provided in the stick holding slot 222, and the partition 225 is arranged near the left side or right side of the stick holding slot 222. At the same time, the partition is arranged parallel to the left side wall and the right side wall of the stick holding slot. At the same time, the front end of the partition extends downward to the front side of the vertical plate.

[0064] In this embodiment, the partition is arranged near the right end of the slot for holding sticks, and the partition can move left and right in the slot for holding sticks. By placing sticks in the slot for holding sticks on the left side of the partition, the distance between the partition and the left end of the slot for holding sticks can be adjusted through the arrangement of the partition to accommodate sticks of different lengths. Two parallel grooves can be arranged at the bottom of the slot for holding sticks, and the grooves are arranged parallel to the connecting shaft. Screw holes are arranged at the bottom of the partition, and a bolt is passed through the bottom of each groove to connect with the screw hole to limit the partition. In this way, the lateral position of the partition in the slot for holding sticks can be conveniently adjusted. Of course, other types of structures can also be arranged to limit the movement of the partition.

[0065] In the description of the present invention, it should be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. In the description of the present invention, the meaning of "multiple" is two or more, unless otherwise clearly and specifically defined.

[0066] In the present utility model, unless otherwise clearly specified and limited, the terms "install", "connect", "connect", "fix" and the like should be understood in a broad sense, for example, it can be a fixed connection, or a detachable connection, or an integral one; it can be a mechanical connection, or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, for example, the two can form a mechanical abutment or abutment connection through abutment, contact, etc., the two can also be directly hung or hung through an intermediate medium, etc., or it can be the internal connection of the two elements or the interaction relationship between the two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

Claims

1. A signature delivery component, characterized in that: Including visa sending agencies and visa collection agencies; The stick holding mechanism comprises a bin body, wherein the bin body is provided with a stick holding slot with a top opening, wherein the front end of the stick holding slot is connected with the front end surface of the bin body, wherein the bottom surface of the stick holding slot is arranged to be inclined downward from the back to the front, wherein the front end of the stick holding slot is provided with a vertical plate with a lower edge, wherein the stick delivery mechanism is arranged at the front side of the vertical plate, and a material dropping channel is formed between the stick delivery mechanism and the vertical plate; The card delivery mechanism includes a card delivery bracket, a connecting shaft rotatably mounted on the card delivery bracket at both ends, two ratchets installed on the connecting shaft at intervals, and a card delivery driving mechanism for driving the connecting shaft to rotate, and the two sides of the card delivery bracket are connected to the two sides of the bin body; The rear end outer surface of the ratchet is arranged in the blanking channel.

2. The signature delivery component according to claim 1, characterized in that: A through groove connected to the blanking channel is also provided on the rear side wall of the vertical plate, and a brush sorting mechanism is also provided on the rear side of the vertical plate. The brush sorting mechanism includes a brush roller and a brush roller driving unit. The brush roller driving unit is configured to drive the brush roller to rotate. The bristles on the outer surface of the front end of the brush roller pass through the through groove and are arranged in the blanking channel, and the axis of the brush roller is arranged parallel to the axis of the connecting shaft.

3. The signature delivery component according to claim 1, characterized in that: The sign feeding bracket includes a baffle and connecting plates respectively arranged on both sides of the baffle, and the space between the rear side of the baffle and the front side of the sign holding mechanism constitutes the material dropping channel; Each of the connecting plates is connected to the front end side of the sign holding mechanism via a mounting plate.

4. The signature delivery component according to claim 3, characterized in that: A notch is provided in the middle of the top surface of the baffle, and the notch is connected with the upper part of the material dropping channel; A coupling mounting plate is respectively installed on the front end surface of the baffles on both sides of the notch, and the two ends of the coupling are rotatably connected to the coupling mounting plates on both sides respectively. The coupling is arranged at the front side of the notch, and the sign-feeding driving mechanism is installed on one of the coupling mounting plates, and the sign-feeding driving mechanism is connected to one end of the coupling; The two ratchets are installed on the connecting shaft at intervals, and the rear ends of the ratchets pass through the notch and are arranged in the blanking channel.

5. The signature delivery component according to claim 3, characterized in that: The inner end of each mounting plate is provided with two positioning rods spaced apart from each other, and the connecting plate is provided with two vertical through grooves spaced apart from each other. The two positioning rods on each mounting plate are respectively inserted into the two vertical through grooves corresponding to the connecting plate; the connecting plate is vertically movably connected to the mounting plate via the vertical through grooves and the positioning rods.

6. The signature delivery component according to claim 3, characterized in that: At least one extending baffle extending upward is also installed on the front side of the baffle, and the extending baffle is arranged right in front of the sign holding slot.

7. The signature delivery component according to claim 1, characterized in that: The signature feeding drive mechanism includes a rotary cylinder, an output shaft of which is connected to one end of the connecting shaft, and the rotary cylinder is configured to drive the connecting shaft to rotate.

8. The signature delivery component according to claim 1, characterized in that: The front end of the sign holding groove is connected to the top of the vertical plate via a V-shaped plate, and the angle of the V-shaped plate is greater than 90°.

9. The signature delivery component according to claim 1, characterized in that: A partition is also provided in the stick holding groove, and the partition is arranged close to the left side or the right side of the stick holding groove.

Citation Information

Patent Citations

  • Automatic cutting and pulling equipment and control method thereof

    CN115104748B