Disinfection rod breaking machine
By designing a disinfection rod breaker, the automatic operation of the feeding mechanism and the breaking mechanism is used to solve the problem of manual breaking of existing disinfection rods, and efficient and safe breaking of packaging sleeves is achieved.
Patent Information
- Application Number
- CN202421932300.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The packaging sleeve of existing disinfection rods needs to be broken manually, which is cumbersome and laborious, and it is easy to damage the disinfectant rod.
A disinfection rod breaker is designed, including a feeding mechanism and a breaking mechanism, which drives the bent block to rotate through the motor drive and drive shaft to automatically break the packaging sleeve.
The automatic breaking of the disinfection rod packaging sleeve is realized, which simplifies operation and improves efficiency, avoids the difficulty of force control when manually breaking, and protects the integrity of the disinfection rod.
Smart Images

Figure CN223029885U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of medical devices, and particularly relates to a disinfection stick breaking machine. Background Art
[0002] Existing disinfection sticks are generally stored in a packaging sleeve for preserving and sealing the disinfection stick inside. When in use, the packaging sleeve is manually broken by hand to take out the disinfection stick inside for use. However, the manual breaking method is rather cumbersome. One needs to hold both ends of the packaging sleeve with both hands and then apply force to break the sleeve. The whole process is not only time-consuming and laborious, but also if the force is too strong, the disinfection stick inside will be damaged. Therefore, a device that can automatically break the sleeve is needed to replace the existing manual breaking method. Content of the Utility Model
[0003] The purpose of the utility model is to provide a disinfection stick breaking machine to solve the technical problem that the current manual breaking method of the packaging sleeve is not only time-consuming and laborious, but also the disinfection stick inside is easily damaged during the breaking process.
[0004] To achieve the above purpose, the technical solution adopted by the utility model is as follows: A disinfection stick breaking machine includes a base, an installation plate is provided on the base, and a feeding mechanism and a breaking mechanism are provided on one side of the installation plate; the feeding mechanism includes a first driving motor, a feeding bin and a feeding wheel. The first driving motor drives the feeding wheel to rotate through a first driving component. The bottom of the feeding bin is provided with a discharge port. The feeding wheel is rotatably arranged at the downstream of the feeding bin, and a plurality of placing grooves are formed on the feeding wheel; the breaking mechanism includes a second driving motor, a first transmission shaft, a fixing block and a bending block. The second driving motor drives the first transmission shaft to rotate through a second driving component. The first transmission shaft is fixed to one side of the installation plate through the fixing block. The bending block is fixed to the end far from the second driving motor, and the first transmission shaft can drive the bending block to rotate.
[0005] Further, the bending block includes an installation part fixed to the first transmission shaft and a bending part. A bending opening is formed on one side of the bending part close to the feeding wheel, and the bending opening corresponds to the placing groove. This device is applicable to disinfection sticks with packaging sleeves. When the disinfection stick with the packaging sleeve falls through the feeding bin onto the placing groove, the first driving motor drives the feeding wheel to rotate, so that the placing groove with the disinfection stick packaging sleeve moves to the bending opening, and at the same time, one end of the disinfection stick packaging sleeve will be located inside the bending opening. At this time, the second driving motor is started, so that the second driving motor drives the first transmission shaft to rotate, and then the bending block rotates synchronously. When the bending block rotates, it can break the disinfection stick packaging sleeve between the placing groove and the bending opening.
[0006] Further, the first driving assembly includes a second transmission shaft and a first transmission gear. One end of the second transmission shaft is fixed to the feeding wheel and can drive the feeding wheel to rotate. The first transmission gear is fixed to the end of the second transmission shaft away from the feeding wheel. A first motor gear meshing with the first transmission gear is provided on the output end of the first driving motor.
[0007] Further, the second driving assembly includes a second transmission gear sleeved on the first transmission shaft. The second transmission gear is arranged at the end of the first transmission shaft away from the bending block. A second motor gear meshing with the second transmission gear is provided on the output end of the second driving motor.
[0008] Further, the mounting plate includes a horizontal fixing plate fixed to the base and a vertical fixing plate perpendicular to the horizontal fixing plate. The first driving motor is mounted on the horizontal fixing plate. A shaft hole is provided on the vertical fixing plate. The end of the second transmission shaft provided with the first transmission gear passes through the shaft hole and meshes with the first motor gear. The feeding wheel is rotatably arranged on the vertical fixing plate through a movable seat. The second driving motor and the fixing block are both fixed on the vertical fixing plate. The feeding wheel, the second driving motor and the fixing block are located on the same side of the vertical fixing plate.
[0009] Further, several fixing rods are provided at one end of the vertical fixing plate close to the feeding wheel. A limiting block is mounted on the fixing rod. The limiting block is arranged to fit the outer surface of the feeding wheel. A feeding slot for conveying the disinfection rods is formed between the feeding wheel and the limiting block. One end of the limiting block is arranged at the discharge port of the feeding bin, and the other end extends downward in an arc shape and half wraps the outer surface of the feeding wheel.
[0010] Further, a PLC control module for controlling the first driving motor and the second driving motor is provided on the mounting plate. The PLC control module is also connected with a first sensing assembly and a second sensing assembly.
[0011] Further, an outer cover is mounted on the base. An input port is opened on the outer cover. The feeding bin is fixed in the input port. A material sensing switch for sensing the quantity of items in the feeding bin is provided in the feeding bin. A taking port is provided below the outer cover. The taking port corresponds to the placing groove. A body sensing switch for sensing the human hand is provided on the top surface of the taking port. A control switch for controlling the PLC control module is provided on one side of the outer cover. The body sensing switch and the material sensing switch are connected to the PLC control module.
[0012] Further, the first sensing component includes a bending block induction switch installed on one side of the mounting plate and a disinfection rod induction switch installed on the base. An induction end is provided below the placement slot corresponding to the feeding wheel, and the bending block induction switch and the bending part are correspondingly arranged. When the feeding wheel drives the placement slot with the disinfection rod to rotate to the bending part, the bending block induction switch will sense the induction end below the placement slot and stop the first driving motor. The disinfection rod induction switch is arranged at the object taking port to sense the disinfection rod in the object taking port. When the disinfection rod induction switch senses that there is a disinfection rod at the object taking port, the first driving motor is stopped. When the disinfection rod is taken out, the disinfection rod induction switch cannot sense the disinfection rod, and the first driving motor is restarted.
[0013] Further, the second sensing component includes a return position induction switch and a power-off protection induction switch correspondingly installed on one side of the second transmission gear. An induction part corresponding to the return position induction switch and the power-off protection induction switch is provided on the second transmission gear. The return position induction switch and the power-off protection induction switch are sequentially fixed on a bracket from top to bottom, and the bracket is arranged on one side of the mounting plate.
[0014] Through the above technical solutions, compared with the prior art, the utility model has the following beneficial effects:
[0015] 1. This device is applicable to disinfection rods with packaging sleeves. By setting an installation plate on the base and arranging a feeding mechanism and a breaking mechanism on one side of the installation plate. Among them, the feeding mechanism consists of a first driving motor, a feeding bin, and a feeding wheel, and the breaking mechanism consists of a second driving motor, a first transmission shaft, a fixed block, and a bending block. The feeding mechanism is used to transport the stored disinfection rods to the bending block of the breaking mechanism. When the feeding machine transports the disinfection rods to the bending block, the packaging sleeve of the stored disinfection rods is broken by the breaking mechanism, thus realizing mechanical automatic breaking. The specific operation is as follows: First, place the disinfection rods in the feeding bin. Since the discharge port of the feeding bin corresponds to the placement slots on the feeding wheel, the disinfection rods will fall from the discharge port at the bottom of the feeding bin into the placement slots on the feeding wheel. Then, the first driving motor drives the feeding wheel to rotate, causing the placement slots with the packaging sleeves of the disinfection rods to rotate upward until one side of the packaging sleeve of the disinfection rod is rotated into the bending opening of the bending block. At this time, the first driving motor stops running through the bending block induction switch. Then, the second driving motor drives the first transmission shaft to rotate, and then the bending block rotates synchronously. When the bending block rotates, it can break the packaging sleeve of the disinfection rod between the placement slot and the bending opening. After that, the bending block returns to its original position through the return position induction switch for the next round of breaking. Through the above method, mechanical automatic breaking of the packaging sleeve of the disinfection rod is realized. The operation is simple, the efficiency is high, it saves time and effort, and at the same time, the force can be better controlled, avoiding the problem that the disinfection rod inside is damaged due to excessive force during manual breaking, solving the technical problem that the current manual method of breaking the packaging sleeve is not only time-consuming and laborious but also prone to damaging the disinfection rod inside, and can greatly reduce the workload of front-line medical staff.
[0016] 2. This device is provided with two different driving modes. One is by setting a pick-up port below the outer cover. The pick-up port corresponds to the placement slots, and a body induction switch for sensing the human hand is provided on the top surface of the pick-up port. When in use, put the hand under the body induction switch, and the feeding mechanism and the breaking mechanism can be started through the body induction switch. Then, after the packaging sleeve of the disinfection rod is broken by the breaking mechanism, the feeding wheel transports the broken packaging sleeve of the disinfection rod to the pick-up port, and then it can be taken out for use. The other is by setting a disinfection rod induction switch on the base, and the disinfection rod induction switch corresponds to the pick-up port to sense the disinfection rod in the pick-up port. When the disinfection rod induction switch senses that there is a disinfection rod at the pick-up port, the first driving motor is stopped. When the disinfection rod is taken out, the disinfection rod induction switch cannot sense the disinfection rod, and the first driving motor is restarted, thus realizing automatic feeding. The above two driving modes can be switched at any time through the control switch, and the two driving modes can be arbitrarily switched according to different usage scenarios, which is very convenient. Description of the Drawings
[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the attached drawings required for the description of the embodiments or the prior art. Obviously, the attached drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other attached drawings can be obtained based on the structures shown in these attached drawings.
[0018] Figure 1 is a schematic structural diagram of the present invention;
[0019] Figure 2 is a schematic diagram of the internal structure of the present invention;
[0020] Figure 3 is a schematic front view structural diagram of the interior of the present invention;
[0021] Figure 4 is a schematic front view structural diagram of the top part of the present invention;
[0022] Figure 5 is a schematic structural diagram of the feeding mechanism and the breaking mechanism of the present invention;
[0023] Figure 6 of the present invention Figure 2 partial enlarged structural diagram;
[0024] Figure 7 is a schematic diagram of the internal structure of the feeding bin of the present invention;
[0025] The label information of the utility model is as follows:
[0026] 1. Base; 2. Mounting plate; 3. Feeding mechanism; 4. Breaking mechanism; 5. Second transmission shaft; 6. First transmission gear; 7. Second transmission gear; 8. Fixed rod; 9. Limit block; 10. Material passing slot; 11. PLC control module; 12. Outer cover; 13. Material induction switch; 14. Body induction switch; 15. Bending block induction switch; 16. Disinfection rod induction switch; 17. Return position induction switch; 18. Power-off protection induction switch; 201. Horizontal fixing plate; 202. Vertical fixing plate; 301. First driving motor; 302. Feeding bin; 303. Feeding wheel; 304. Placing groove; 305. First motor gear; 401. Second driving motor; 402. First transmission shaft; 403. Fixed block; 404. Bending block; 405. Mounting part; 406. Bending part; 407. Bending opening; 408. Second motor gear; 1201. Object taking port;
[0027] The realization of the purpose, functional characteristics and advantages of the present invention will be further described with reference to the embodiments and the attached drawings. Detailed implementation manners
[0028] The following will combine the accompanying drawings in the embodiments of the present utility model Figure 1-7 to clearly and completely describe the technical solutions in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0029] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present utility model are only used to explain the relative position relationship and movement conditions between components in a specific posture (as shown in the attached drawings). If this specific posture changes, the directional indication will also change accordingly.
[0030] In addition, the descriptions involving "first", "second", etc. in the present utility model are only for descriptive purposes, and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present utility model.
[0031] As Figure 1-7 shown: A disinfection stick breaking machine includes a base 1, an installation plate 2 is provided on the base 1, and a feeding mechanism 3 and a breaking mechanism 4 are provided on one side of the installation plate 2; the feeding mechanism 3 includes a first driving motor 301, a feeding bin 302 and a feeding wheel 303. The first driving motor 301 drives the feeding wheel 303 to rotate through a first driving component. An outlet is provided at the bottom of the feeding bin 302. The feeding wheel 303 is rotatably arranged downstream of the feeding bin 302, and a plurality of placing grooves 304 are formed on the feeding wheel 303; the breaking mechanism 4 includes a second driving motor 401, a first transmission shaft 402, a fixing block 403 and a bending block 404. The fixing block 403 is used to horizontally fix the first transmission shaft 402. A linear bearing through which the first transmission shaft 402 passes is provided on the fixing block 403, so that the first transmission shaft 402 can rotate within the fixing block 403. The second driving motor 401 drives the first transmission shaft 402 to rotate through a second driving component. The first transmission shaft 402 is fixed to one side of the installation plate 2 through the fixing block 403, and the bending block 404 is fixed to the end far from the second driving motor 401, and the first transmission shaft 402 can drive the bending block 404 to rotate.
[0032] By setting the base 1, the device can be placed on a tabletop for use. The interior of the base 1 is hollow to facilitate the movement of the feeding wheel 303. A drawer slot is provided at the rear of the base 1, and a drawer is movably arranged in the drawer slot. When the drawer is fully placed in the drawer slot, the drawer corresponds to the discharge port of the feeding bin 302 for receiving the dropped disinfection rods for reuse.
[0033] As Figure 3 shown: There are four placement slots 304 on the feeding wheel 303 in this embodiment, which are respectively located on the four sides of the feeding wheel 303 and are opposite to each other in pairs. When the first placement slot is below the discharge port, the second placement slot is located opposite to the bending block 404, the third placement slot is located at the object-taking port 1201, and the fourth placement slot is located inside the base 1. When the feeding wheel 303 rotates, each placement slot will move to the next corresponding position to complete the breaking and recycling process.
[0034] As Figure 6 shown: The bending block 404 includes a mounting portion 405 and a bending portion 406 fixed to the first transmission shaft 402. A bending opening 407 is provided on the side of the bending portion 406 close to the feeding wheel 303. As Figure 2-4 shown, the bending opening 407 corresponds to the placement slot 304. When the disinfection rod with the packaging sleeve passes through the feeding bin 302 and drops onto the placement slot 304, the first drive motor 301 drives the feeding wheel 303 to rotate, so that the placement slot 304 with the disinfection rod packaging sleeve moves to the bending opening 407, and at the same time, one end of the disinfection rod with the packaging sleeve will be inside the bending opening 407. At this time, the second drive motor 401 is started to drive the first transmission shaft 402 to rotate by the second drive motor 401, and then the bending block 404 rotates synchronously. When the bending block 404 rotates, it can break the disinfection rod packaging sleeve between the placement slot 304 and the bending opening 407.
[0035] This device is applicable to the disinfection stick with a packaging sleeve. By setting an installation plate 2 on the base 1 and arranging a feeding mechanism 3 and a breaking mechanism 4 on one side of the installation plate 2. Among them, the feeding mechanism 3 is composed of a first driving motor 301, a feeding bin 302 and a feeding wheel 303, and the breaking mechanism 4 is composed of a second driving motor 401, a first transmission shaft 402, a fixed block 403 and a bending block 404. The feeding mechanism 3 is used to convey the stored disinfection stick to the bending block 404 of the breaking mechanism 4. When the feeding mechanism 3 conveys the disinfection stick to the bending block 404, the packaging sleeve of the stored disinfection stick is broken by the breaking mechanism 4, so as to realize mechanical automatic breaking. The specific operation is as follows: First, place the disinfection stick in the feeding bin 302. Since the discharge port of the feeding bin 302 corresponds to the placement groove 304 on the feeding wheel 303, the disinfection stick will fall into the placement groove 304 on the feeding wheel 303 through the discharge port at the bottom of the feeding bin 302. Then, the first driving motor 301 drives the feeding wheel 303 to rotate, so that the placement groove 304 with the packaging sleeve of the disinfection stick rotates upward until one side of the packaging sleeve of the disinfection stick is rotated into the bending opening 407 of the bending block 404. At this time, the first driving motor 301 stops running through the bending block induction switch 15. Then, the second driving motor 401 drives the first transmission shaft 402 to rotate, and then the bending block 404 rotates synchronously. When the bending block 404 rotates, it can break the packaging sleeve of the disinfection stick between the placement groove 304 and the bending opening 407. After that, the bending block 404 returns to its original position through the return block induction switch 17 for the next round of breaking operation. Through the above method, the mechanical automatic breaking of the packaging sleeve of the disinfection stick is realized. The operation is simple, the efficiency is high, it saves time and effort, and at the same time, the force can be better controlled, avoiding the problem that the disinfection stick inside is damaged due to excessive force during manual breaking, solving the technical problem that the current manual breaking method of the packaging sleeve is not only time-consuming and laborious but also easy to damage the disinfection stick inside, and can greatly reduce the workload of front-line medical staff.
[0036] As Figure 5 shown: The first driving component includes a second transmission shaft 5 and a first transmission gear 6. One end of the second transmission shaft 5 is fixed to the feeding wheel 303 and can drive the feeding wheel 303 to rotate. The first transmission gear 6 is fixed to the end of the second transmission shaft 5 away from the feeding wheel 303. A first motor gear 305 meshing with the first transmission gear 6 is provided on the output end of the first driving motor 301. The transmission method of gear meshing has a simple structure and stable output.
[0037] As Figure 5As shown in the figure: The second driving component includes a second transmission gear 7 sleeved on the first transmission shaft 402. The second transmission gear 7 is arranged at one end of the first transmission shaft 402 away from the bending block 404. A second motor gear 408 meshing with the second transmission gear 7 is provided on the output end of the second driving motor 401. The second transmission gear 7 is fixedly installed on one side of the mounting plate 2, so that the second motor gear 408 is arranged relative to the second transmission gear 7.
[0038] As Figure 4 As shown in the figure: The mounting plate 2 includes a horizontal fixing plate 201 fixed on the base 1 and a vertical fixing plate 202 perpendicular to the horizontal fixing plate 201. The first driving motor 301 is installed on the horizontal fixing plate 201. A shaft hole is provided on the vertical fixing plate 202. One end of the second transmission shaft 5 where the first transmission gear 6 is provided passes through the shaft hole and meshes with the first motor gear 305. The feeding wheel 303 is rotatably arranged on the vertical fixing plate 202 through a movable seat. The second driving motor 401 and the fixing block 403 are both fixed on the vertical fixing plate 202. The feeding wheel 303, the second driving motor 401 and the fixing block 403 are located on the same side of the vertical fixing plate 202.
[0039] As Figure 2-3 As shown in the figure: Several fixing rods 8 are provided at one end of the vertical fixing plate 201 close to the feeding wheel 303. A limiting block 9 is installed on the fixing rods 8. The limiting block 9 is arranged to fit the outer surface of the feeding wheel 303. A material passing groove 10 for conveying the disinfection rod is formed between the feeding wheel 303 and the limiting block 9. One end of the limiting block 9 is arranged at the discharge port of the feeding bin 302, and the other end extends downward in an arc shape to half-wrap the outer surface of the feeding wheel 303. In this embodiment, three fixing rods 8 are used. The limiting block 9 is arranged in an arc shape. An installation ear for fixing to the fixing rod 8 is provided on the upper surface of the limiting block 9. The limiting block 9 is fixed around the outer periphery of the feeding wheel 303 through the installation ear. When the disinfection rod enters the material passing groove 10, the disinfection rod can be stably fixed in the material passing groove 10 by the blocking and limiting effect of the limiting block 9, avoiding the situation of falling.
[0040] As Figure 4 As shown in the figure: A PLC control module 11 for controlling the first driving motor 301 and the second driving motor 401 is provided on the mounting plate 2. The PLC control module 11 is arranged on the horizontal fixing plate 201. The PLC control module 11 is also connected with a first sensing component and a second sensing component.
[0041] As Figure 1 As shown in the figure: An outer cover 12 is installed on the base 1. A fan is provided at the rear side of the outer cover 12. An input port is opened on the outer cover 12. The feeding bin 302 is fixed in the input port. The feeding bin 302 extends into the interior of the outer cover 12 through the input port. As Figure 7As shown in the figure, a material induction switch 13 for sensing the quantity of items in the feeding bin 302 is provided inside the feeding bin 302. When the quantity of disinfection rods inside it is insufficient, the material induction switch 13 will give a prompt. At this time, it is necessary to add disinfection rods into the feeding bin 302. A pick-up opening 1201 is provided below the outer cover 12. The pick-up opening 1201 facilitates people to reach in and pick up items. The pick-up opening 1201 corresponds to the placement slot 304. As Figure 3 shown, a body induction switch 14 for sensing the human hand is provided on the top surface of the pick-up opening 1201. During use, put a person's hand under the body induction switch 14. Through the body induction switch 14, the feeding mechanism 3 and the breaking mechanism 4 can be started. Then, after the packaging sleeve of the disinfection rod is broken by the breaking mechanism 4, the broken packaging sleeve of the disinfection rod is conveyed to the pick-up opening by the feeding wheel 303, and then it can be taken out for use. A control switch for controlling the PLC control module 11 is provided on one side of the outer cover 12. The body induction switch 14 and the material induction switch 13 are connected to the PLC control module 11.
[0042] As Figure 4 shown: The first sensing assembly includes a bending block induction switch 15 installed on one side of the mounting plate 2 and a disinfection rod induction switch 16 installed on the base 1. An induction end is provided below the feeding wheel 303 corresponding to the placement slot 304, and the bending block induction switch 15 and the bending part 406 are arranged correspondingly. When the feeding wheel 303 drives the placement slot 304 provided with the disinfection rod to rotate to the bending part 406, the bending block induction switch 15 will sense the induction end below the placement slot 304 and thus stop the first driving motor 301. The disinfection rod induction switch 16 is provided at the pick-up opening 1201 for sensing the disinfection rod in the pick-up opening 1201. When the disinfection rod induction switch 16 senses that there is a disinfection rod at the pick-up opening 1201, the first driving motor 301 is stopped. When the disinfection rod is taken out, the disinfection rod induction switch 16 cannot sense the disinfection rod, and the first driving motor 301 is restarted.
[0043] As Figure 3-5As shown in the figure: The second sensing component includes a return position induction switch 17 and a power-off protection induction switch 18 that are correspondingly installed on one side of the second transmission gear 7. The second transmission gear 7 is provided with induction parts corresponding to the return position induction switch 17 and the power-off protection induction switch 18. The return position induction switch 17 and the power-off protection induction switch 18 are sequentially fixed on a bracket from top to bottom, and the bracket is arranged on one side of the mounting plate 2. The function of the return position induction switch 17 is to be the origin sensor for the first operation of this gear, which is used to return the bending block 404 in the breaking mechanism 4 to its original position. Specifically, it is achieved by driving the second electric drive motor 401 to reverse, which drives the second transmission gear 7 to rotate back. The power-off protection induction switch 18 is to prevent the second transmission gear 7 from swinging downward after the machine is powered off or during transportation and then being powered on again. As long as the power-off protection induction switch 18 is on, the second transmission gear 7 will automatically return to the origin, playing a protective role.
[0044] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or directly / indirectly applied in other related technical fields, is included in the patent protection scope of the present invention.
Claims
1. A disinfection stick breaking machine, comprising a base, on which a mounting plate is provided, characterized in that: A feeding mechanism and a breaking mechanism are provided on one side of the mounting plate; the feeding mechanism includes a first driving motor, a feeding bin and a feeding wheel, the first driving motor drives the feeding wheel to rotate through a first driving component, a discharge port is provided at the bottom of the feeding bin, the feeding wheel is rotatably arranged at the downstream of the feeding bin, and a plurality of storage slots are provided on the feeding wheel; the breaking mechanism includes a second driving motor, a first transmission shaft, a fixed block and a bending block, the second driving motor drives the first transmission shaft to rotate through a second driving component, the first transmission shaft is fixed to one side of the mounting plate through a fixed block, the bending block is fixed at an end away from the second driving motor, and the first transmission shaft can drive the bending block to rotate.
2. A disinfection stick breaking machine according to claim 1, characterized in that: The bending block comprises a mounting portion fixed to the first transmission shaft and a bending portion, a bending opening is provided on a side of the bending portion close to the feeding wheel, and the bending opening corresponds to the storage slot.
3. A disinfection stick breaking machine according to claim 2, characterized in that: The first driving assembly includes a second transmission shaft and a first transmission gear. One end of the second transmission shaft is fixed to the feeding wheel and can drive the feeding wheel to rotate. The first transmission gear is fixed to an end of the second transmission shaft away from the feeding wheel. The output end of the first driving motor is provided with a first motor gear meshing with the first transmission gear.
4. A disinfection stick breaking machine according to claim 3, characterized in that: The second driving assembly includes a second transmission gear sleeved on the first transmission shaft, the second transmission gear is arranged at an end of the first transmission shaft away from the bending block, and a second motor gear meshing with the second transmission gear is provided on the output end of the second driving motor.
5. A disinfection stick breaking machine according to claim 4, characterized in that: The mounting plate includes a transverse fixing plate fixed on the base and a longitudinal fixing plate arranged perpendicular to the transverse fixing plate, the first driving motor is mounted on the transverse fixing plate, the longitudinal fixing plate is provided with an axial hole, the second transmission shaft is provided with an end of a first transmission gear which passes through the axial hole and meshes with the first motor gear, the feeding wheel is rotatably arranged on the longitudinal fixing plate through a movable seat, the second driving motor and the fixing block are both fixed on the longitudinal fixing plate, and the feeding wheel, the second driving motor and the fixing block are located on the same side of the longitudinal fixing plate.
6. A disinfection stick breaking machine according to claim 5, characterized in that: A plurality of fixing rods are provided at one end of the longitudinal fixing plate close to the feeding wheel, and a limit block is installed on the fixing rod. The limit block is arranged to fit the outer surface of the feeding wheel, and a material trough for conveying disinfection sticks is formed between the feeding wheel and the limit block. One end of the limit block is arranged at the discharge port of the feeding bin, and the other end extends downward in an arc shape and half wraps around the outer surface of the feeding wheel.
7. A disinfection stick breaking machine according to any one of claims 1 to 6, characterized in that: The mounting plate is provided with a PLC control module for controlling the first drive motor and the second drive motor. The PLC control module is also connected to the first sensor component and the second sensor component.
8. A disinfection stick breaking machine according to claim 7, characterized in that: An outer cover is installed on the base, and an input port is opened on the outer cover. The feeding bin is fixed in the input port. A material sensing switch for sensing the number of items in the feeding bin is provided in the feeding bin. A taking port is provided below the outer cover, and the taking port corresponds to the storage slot. A limb sensing switch for sensing human hands is provided on the top surface of the taking port. A control switch for controlling a PLC control module is provided on one side of the outer cover, and the limb sensing switch and the material sensing switch are connected to the PLC control module.
9. A disinfection stick breaking machine according to claim 8, characterized in that: The first sensing component includes a bending block sensing switch installed on one side of the mounting plate and a disinfection rod sensing switch installed on the base. A sensing end is provided below the corresponding storage slot on the feeding wheel, and the bending block sensing switch and the bending portion are correspondingly arranged.
10. A disinfection stick breaking machine according to claim 9, characterized in that: The second sensing assembly includes a return sensing switch and a power-off protection sensing switch correspondingly installed on one side of the second transmission gear. The second transmission gear is provided with a sensing part corresponding to the return sensing switch and the power-off protection sensing switch. The return sensing switch and the power-off protection sensing switch are fixed on a bracket in sequence from top to bottom, and the bracket is arranged on one side of the mounting plate.