Sterilized cotton ball production device
By designing a disinfection cotton ball production device, using a combined structure of peeling substrate, cotton ball and tin foil hat, the problems of inconvenience and waste of traditional disinfection cotton balls are solved, and more convenient and efficient use of disinfection cotton balls are achieved.
Patent Information
- Application Number
- CN202422757539.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-11-13
AI Technical Summary
Traditional disinfection cotton balls require the use of tweezers to pick up and dip the medicine separately, which is not suitable for emergency use. Moreover, the cotton balls in the packaging bag rub against each other, causing the fibers to be entangled, which is inconvenient to use and easy to waste.
A disinfection cotton ball production device is designed, using a combined structure of peeling substrate, cotton ball and tin foil hat. A simple shell structure is achieved through thin tin foil material peeling substrate and tin foil hat, which is convenient for separate use and packaging.
It realizes the simplified use of disinfected cotton balls, eliminates the steps of tearing the packaging bags and using tweezers, improves the convenience of emergency use, and reduces the waste of cotton balls.
Smart Images

Figure CN222973688U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sanitary products, and more specifically, to a production device for disinfected cotton balls. Background Art
[0002] Disinfected cotton balls are common disinfection materials in medical procedures. When in use, it is generally necessary to wet them with iodine tincture or alcohol and rub the skin wound for disinfection. Generally, a cotton ball machine is used to process cotton balls. In case of an accident, it is necessary to use disinfected cotton balls to disinfect the skin wound of the user in time. Since tweezers are required to pick up the cotton balls, it is easy to cause infection when the hands come into contact with the cotton balls, and it is not convenient to use the cotton balls in an emergency.
[0003] Currently, cotton balls are generally packed in a plastic packaging bag in batches. When in use, it is necessary to use tweezers to pick up the cotton balls individually and then dip them in the medicine, which is not convenient for emergency use. Inside the bag, due to the mutual friction between the cotton balls, the fibers of the cotton balls will be intertwined with each other. When using tweezers to pick up a rated number of cotton balls, it is easy to bring out extra cotton balls, and the extra cotton balls are likely to fall out, resulting in waste. When there is a trauma, the amount of cotton balls used individually is generally small. After picking up and using the cotton balls, the remaining cotton balls in the opened packaging bag are not convenient to ensure the aseptic environment of the remaining cotton balls, which is easy to cause waste. A specific production device is needed to improve the current cotton balls. Summary of the Utility Model
[0004] In order to solve the above technical problems, the utility model provides a production device for disinfected cotton balls to solve the problem that traditional cotton balls need to be picked up individually with tweezers and then dipped in the medicine, which is not suitable for emergency use.
[0005] The utility model provides a production device for disinfected cotton balls, which is achieved by the following specific technical means: including cotton ball products, the cotton ball products include a separating base sheet, a cotton ball body and a tin foil cap. The cross-section of the separating base sheet is a T-shaped structure. The upper half of the separating base sheet is separated to the left and right sides. The cotton ball body is adhered to the top surface of the separating base sheet, and the tin foil cap is adhered to the top of the separating base sheet. Both the separating base sheet and the tin foil cap are made of thin tin foil. The separating base sheet is composed of two circular tin foil sheets, and its upper half is bent flatly to both sides. The tin foil cap is located outside the cotton ball body.
[0006] After the various mechanisms included in this application work together, the made disinfected cotton balls have a simple outer shell structure, which is convenient for individual sales and use. When in use, one can pinch the vertical part at the bottom of the separation base sheet with the thumb and index finger of one hand, and use the other hand to uncover the tin foil cap upwards. At this time, after the internal cotton ball body is exposed, one can spray or drip agents such as alcohol and iodophor on the cotton ball. When in use, pinch the bottom of the separation base sheet and rub the wetted cotton ball body against the skin, which can save the steps of tearing the packaging bag and using tweezers for operation. The usage method is more convenient and fast, facilitating emergency use, and the individual packaging can reduce the waste of the whole pack of cotton balls.
[0007] In some solutions, the raw material conveying mechanism for conveying various raw materials of the disinfected cotton balls, the transfer and assembly mechanism for combining the raw materials of the disinfected cotton balls, and the disinfection mechanism for disinfecting the finished cotton ball products. The raw material conveying mechanism includes a base, a cotton ball conveyor belt, a double-row conveyor belt, and a cap shell conveyor belt. The base with a flat plate shape is used to carry each mechanism. The cotton ball conveyor belt is located on the top of the base and is used to convey the cotton ball bodies. A guiding frame is provided on the top of the cotton ball conveyor belt for positioning the cotton ball bodies. The double-row conveyor belt is located on the top of the base and is used to convey the separation base sheet. A positioning slot is opened in the middle of the double-row conveyor belt, and a double-row plate frame is provided at the end of the double-row conveyor belt. The positioning slot is used to position the bottom vertical blades of the separation base sheet. The cap shell conveyor belt is used to convey the tin foil caps, and the cap shell conveyor belt is located on the top of the base.
[0008] According to this solution, each of the above conveyor belts is of the synchronous stepping conveyor belt type. The cotton balls processed by the cotton ball machine can be conveyed on the cotton ball conveyor belt after being guided by the guiding frame, and the double-row conveyor belt can convey the separation base sheet after determining its horizontal position.
[0009] In some solutions, the transfer and assembly mechanism includes a functional gantry, a reciprocating lead screw a, an electric telescopic rod c, a reciprocating lead screw b, and an electric telescopic rod e. The functional gantry is located outside the double-row conveyor belt. An electric telescopic rod a is provided on the top of the functional gantry. A single-valve pipe is provided at the bottom of the telescopic part of the electric telescopic rod a. A branch gantry is provided outside the cap shell conveyor belt. A hose is provided at the side end of the single-valve pipe, and the hose leans on the top of the branch gantry. The end of the hose of the single-valve pipe is connected to a liquid pump a, and the side end of the liquid pump a is connected to a glue tank a.
[0010] According to this solution, by operating the electric telescopic rod a in a timely manner, it moves the single-valve pipe downwards. At the same time, the program controls the operation of the liquid pump a to transfer the glue in the glue tank a to the single-valve pipe, so that it drips glue on the center of the top of the separation base sheet conveyed on the lower double-row conveyor belt.
[0011] In some solutions, the reciprocating lead screw a is arranged above the double-row conveyor belt and the cap shell conveyor belt. An electric telescopic rod b is provided at the bottom of the ball nut seat of the reciprocating lead screw a. A negative pressure suction head a is provided at the bottom of the electric telescopic rod b. A one-way valve is provided at the side end of the negative pressure suction head a. The side end of the one-way valve is connected to a vacuum pump a through a pipeline. The electric telescopic rod c is arranged above the double-row conveyor belt. A cone frame pressing ring is provided at the bottom of the telescopic part of the electric telescopic rod c. A heating function is provided by a resistance wire arranged inside the cone frame pressing ring. The reciprocating lead screw b is arranged on the top of the base. The reciprocating lead screw b straddles above the cotton ball conveyor belt and the double-row conveyor belt. An electric telescopic rod d is provided at the bottom of the ball nut seat of the reciprocating lead screw b. A separate central control system is provided outside the transfer and assembly mechanism. A negative pressure suction head b is provided at the bottom of the telescopic part of the electric telescopic rod d. The side end of the negative pressure suction head b is connected to a vacuum pump b through a pipeline.
[0012] According to this solution, after the substrate for peeling with glue at the center is transported below the reciprocating lead screw b, the program controls the reciprocating lead screw b to operate, causing the electric telescopic rod d to move horizontally between the cotton ball conveyor belt and the double-row conveyor belt. Through the reciprocating operation of the negative pressure suction head b, the cotton balls on the conveyor belt are transferred to the intermittently stationary substrate for peeling. The glue at the center can bond the cotton balls.
[0013] In some solutions, the electric telescopic rod e is arranged above the double-row conveyor belt. An electric valve is provided at the bottom of the telescopic part of the electric telescopic rod e. A six-tube dropper is provided at the bottom of the electric valve. The side end of the electric valve is connected to a glue tank b through a flexible hose.
[0014] According to this solution, through further transportation, the automation program controls the electric telescopic rod e to operate, causing it to lower the six-tube dropper above the substrate for peeling with cotton balls, and drip six groups of glue around the cotton balls on the substrate for peeling. After the substrate for peeling is transported below the reciprocating lead screw a, the program controls the reciprocating lead screw a and the electric telescopic rod b to operate. By cooperating with the negative pressure suction head a, the tin foil caps on the cap shell conveyor belt are transferred to the substrate for peeling with six groups of thermosetting glue droplets. Through further transportation, after the substrate for peeling is transported below the electric telescopic rod c, the program controls the electric telescopic rod c to operate, causing it to drive the cone frame pressing ring to move downwards, which can heat and press down the upper edge of the tin foil cap, so that the thermosetting glue seals the tin foil cap and the substrate for peeling.
[0015] In some solutions, the disinfection mechanism includes a radiation chamber located outside the double-row conveyor belt. A cobalt-60 radiation source is provided inside the radiation chamber for disinfecting the assembled cotton ball products.
[0016] According to this solution, during the transportation of the cotton ball products, after being transported through the double-row conveyor belt and entering the radiation chamber, the transmitted products can be automatically inactivated, which can improve the safety of the products. Description of the Drawings
[0017] Figure 1Schematic right-rear perspective view showing the overall structure of the present application;
[0018] Figure 2 Showing Figure 1 Partial enlarged schematic view of A in
[0019] Figure 3 Showing Figure 2 Partial enlarged schematic view of B in
[0020] Figure 4 Showing Figure 3 Partial enlarged schematic view of C in
[0021] Figure 5 Schematic left-front perspective view showing the overall structure of the present application;
[0022] Figure 6 Schematic exploded three-dimensional structure view of the cotton ball product of the present application.
[0023] In the figure, the correspondence between the component names and the drawing reference numerals is as follows:
[0024] 1. Base; 2. Cotton ball conveyor belt; 201. Guide frame; 3. Double-row conveyor belt; 301. Positioning slot; 302. Double-row plate frame; 4. Cap shell conveyor belt; 5. Function gantry; 501. Electric telescopic rod a; 502. Single-valve pipe; 503. Branch gantry; 504. Liquid pump a; 505. Glue tank a; 6. Reciprocating lead screw a; 601. Electric telescopic rod b; 602. Negative pressure suction head a; 6021. Check valve; 603. Vacuum pump a; 7. Electric telescopic rod c; 701. Cone frame pressing ring; 8. Reciprocating lead screw b; 801. Electric telescopic rod d; 802. Negative pressure suction head b; 803. Vacuum pump b; 9. Electric telescopic rod e; 901. Electric valve; 902. Six-tube dropper; 903. Glue tank b; 10. Radiation chamber; 11. Separation substrate; 12. Cotton ball body; 13. Tin foil cap. Detailed implementation manners
[0025] In order to make the objectives, solutions, and advantages of the technical solutions of the present utility model clearer, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the drawings of the specific embodiments of the present utility model. Unless otherwise specified, the terms used herein have the ordinary meanings in the art. The same reference numerals in the drawings represent the same components.
[0026] In the description of the present utility model, unless otherwise specified, the meaning of "a plurality of" is two or more; the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model 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 should not be construed as a limitation to the present utility model. In addition, terms such as "first", "second", "third", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0027] In the description of the present utility model, it should be noted that, unless otherwise clearly specified and defined, the terms "connected" and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0028] Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
[0029] Figures 1 to 6A schematic diagram of a sterilized cotton ball production device according to an embodiment of the utility model is shown, which specifically includes a finished cotton ball product, which includes a split substrate 11, a cotton ball body 12 and a tinfoil cap 13. The split substrate 11 has a T-shaped cross-section, and the upper half of the split substrate 11 is separated to the left and right sides, the cotton ball body 12 is adhered to the top surface of the split substrate 11, and the tinfoil cap 13 is adhered to the top of the split substrate 11. The split substrate 11 and the tinfoil cap 13 are both made of thin tinfoil. The split substrate 11 is composed of two circular tinfoil sheets, and the upper half thereof is flatly bent to both sides. The tinfoil cap 13 is located on the outside of the cotton ball body 12. After the various mechanisms included in the present application work together, the manufactured disinfected cotton balls have a simple shell structure, which is convenient for individual sale and use. When in use, the thumb and index finger of one hand can be used to pinch the vertical part of the bottom of the separation substrate 11, and the other hand can be used to lift up the tin foil cap 13. At this time, after the internal cotton ball 12 is exposed, alcohol iodine and other agents can be sprayed or dripped on the cotton ball. When in use, pinch the bottom of the separation substrate 11 to scrape the moistened cotton ball 12 against the skin, which can save the step of tearing open the packaging bag and using tweezers. The method of use is more convenient and quick, convenient for emergency use, and individual packaging can reduce the waste of the entire bag of cotton balls.
[0030] Preferably, a raw material conveying mechanism for conveying various raw materials of sterilized cotton balls, a transfer assembly mechanism for combining the raw materials of sterilized cotton balls, and a sterilization mechanism for sterilizing the finished cotton balls, the raw material conveying mechanism includes a base 1, a cotton ball conveyor belt 2, a double-row conveyor belt 3 and a cap shell conveyor belt 4, the base 1 having a flat plate shape is used to carry each mechanism, the cotton ball conveyor belt 2 is located at the top of the base 1, and is used to convey the cotton ball body 12, a guide frame 201 is provided on the top of the cotton ball conveyor belt 2, and is used to position the cotton ball body 12, and the double-row conveyor belt 3 is located at the top of the base 1. The double-row conveyor belt 3 is used to transport the separated substrate 11. A positioning seam 301 is opened in the middle of the double-row conveyor belt 3. A double-row plate frame 302 is provided at the end of the double-row conveyor belt 3. The positioning seam 301 is used to position the bottom vertical blade of the separated substrate 11. The cap shell conveyor belt 4 is used to transmit the tinfoil cap 13. The cap shell conveyor belt 4 is located on the top of the base 1. All of the above conveyor belts are synchronous stepping conveyor belt types. The cotton balls processed by the cotton ball machine can be guided by the guide frame 201 and then transmitted on the cotton ball conveyor belt 2. The double-row conveyor belt 3 can determine the lateral position of the separated substrate 11 and then transmit it.
[0031] Optionally, the transfer and assembly mechanism includes a functional gantry 5, a reciprocating lead screw a6, an electric telescopic rod c7, a reciprocating lead screw b8, and an electric telescopic rod e9. The functional gantry 5 is located outside the double-row conveyor belt 3. At the top of the functional gantry 5, there is an electric telescopic rod a501. At the bottom of the telescopic part of the electric telescopic rod a501, there is a single-valve pipe 502. Outside the cap shell conveyor belt 4, there is a branch gantry 503. At the side end of the single-valve pipe 502, there is a hose that leans against the top of the branch gantry 503. At the end of the hose of the single-valve pipe 502, there is a liquid pump a504 connected. At the side end of the liquid pump a504, there is a glue tank a505 connected. The reciprocating lead screw a6 is arranged above the double-row conveyor belt 3 and the cap shell conveyor belt 4. At the bottom of the ball nut seat of the reciprocating lead screw a6, there is an electric telescopic rod b601. At the bottom of the electric telescopic rod b601, there is a negative pressure suction head a602. At the side end of the negative pressure suction head a602, there is a one-way valve 6021. The side end of the one-way valve 6021 is connected to a vacuum pump a603 through a pipeline. The electric telescopic rod c7 is arranged above the double-row conveyor belt 3. At the bottom of the telescopic part of the electric telescopic rod c7, there is a cone frame pressing ring 701. Inside the cone frame pressing ring 701, there is a heating function with a resistance wire. The reciprocating lead screw b8 is arranged on the top of the base 1 and straddles above the cotton ball conveyor belt 2 and the double-row conveyor belt 3. At the bottom of the ball nut seat of the reciprocating lead screw b8, there is an electric telescopic rod d801. Outside the transfer and assembly mechanism, there is a separate central control system. At the bottom of the telescopic part of the electric telescopic rod d801, there is a negative pressure suction head b802. The side end of the negative pressure suction head b802 is connected to a vacuum pump b803 through a pipeline. The electric telescopic rod e9 is arranged above the double-row conveyor belt 3. At the bottom of the telescopic part of the electric telescopic rod e9, there is an electric valve 901. At the bottom of the electric valve 901, there is a six-tube dropper 902. The side end of the electric valve 901 is connected to a glue tank b903 through a hose. During the step-by-step transmission of the double-row conveyor belt 3, by the timely operation of the electric telescopic rod a501, it moves the single-valve pipe 502 downward. At the same time, the program controls the operation of the liquid pump a504 to transfer the glue in the glue tank a505 to the single-valve pipe 502, so that it drops glue on the center of the top of the separated substrate 11 transported on the lower double-row conveyor belt 3. After the separated substrate 11 with glue is transported to the lower part of the reciprocating lead screw b8, the program controls the operation of the reciprocating lead screw b8 to horizontally move the electric telescopic rod d801 between the cotton ball conveyor belt 2 and the double-row conveyor belt 3. Through the reciprocating operation of the negative pressure suction head b802, the cotton balls 12 on the conveyor belt are transferred to the intermittently stationary separated substrate 11, and the glue at the center can bond the cotton balls 12. Through further transmission, the automation program controls the operation of the electric telescopic rod e9 to move the six-tube dropper 902 downward to the upper part of the separated substrate 11 with cotton balls, and it drips six groups of glue around the cotton balls on the separated substrate 11. After the separated substrate 11 is transported to the lower part of the reciprocating lead screw a6, the program controls the operation of the reciprocating lead screw a6 and the electric telescopic rod b601. Through cooperation with the negative pressure suction head a602, the tin foil caps 13 on the cap shell conveyor belt 4 are transferred to the separated substrate 11 with six groups of thermosetting glue droplets.After further transmission, when the separation substrate 11 is transmitted below the electric telescopic rod c7, the program controls the operation of the electric telescopic rod c7 to drive the tapered frame pressing ring 701 to move downward, which can heat and press the upper edge of the tin foil cap 13, so that the thermosetting glue seals the tin foil cap 13 and the separation substrate 11.
[0032] Optionally, the disinfection mechanism includes a radiation chamber 10 located outside the double-row conveyor belt 3. A cobalt-60 radiation source is provided in the radiation chamber 10 for disinfecting the combined cotton ball products. During the transmission of the cotton ball products, after passing through the double-row conveyor belt 3 and entering the radiation chamber 10, the transmitted products can be automatically inactivated, which can improve the safety of the products.
[0033] The specific operation process of the above-mentioned disinfected cotton ball production device is as follows: First, the tin foil cap 13 after stamping is transferred to the cap shell conveyor belt 4 for transmission. Correspondingly, the cotton balls processed by the cotton ball machine are transmitted on the cotton ball conveyor belt 2 after being guided by the guide frame 201. During the step-by-step transmission of the double-row conveyor belt 3, the electric telescopic rod a501 is operated in a timely manner to move the single-valve tube 502 downward. At the same time, the program controls the operation of the liquid pump a504 to transmit the glue in the glue tank a505 to the single-valve tube 502, so that the glue is dropped on the center of the top of the separation substrate 11 transmitted on the lower double-row conveyor belt 3. After the separation substrate 11 with glue is transmitted below the reciprocating lead screw b8, the program controls the operation of the reciprocating lead screw b8 to horizontally move the electric telescopic rod d801 between the cotton ball conveyor belt 2 and the double-row conveyor belt 3. By the reciprocating operation of the negative pressure suction head b802, the cotton balls 12 on the conveyor belt are transferred to the intermittently stationary separation substrate 11, and the glue at the center can fix the cotton balls 12. Through further transmission, the program controls the operation of the electric telescopic rod e9 to move the six-tube dropper 902 downward above the separation substrate 11 with cotton balls, and it drips six groups of glue around the cotton balls on the separation substrate 11. After the separation substrate 11 is transmitted below the reciprocating lead screw a6, the program controls the operation of the reciprocating lead screw a6 and the electric telescopic rod b601. By cooperating with the negative pressure suction head a602, the tin foil cap 13 on the cap shell conveyor belt 4 is transferred to the separation substrate 11 with six groups of thermosetting glue droplets. Through further transmission, after the separation substrate 11 is transmitted below the electric telescopic rod c7, the program controls the operation of the electric telescopic rod c7 to drive the tapered frame pressing ring 701 to move downward, which can heat and press the upper edge of the tin foil cap 13, so that the thermosetting glue seals the tin foil cap 13 and the separation substrate 11. During the transmission of the cotton ball products, after passing through the double-row conveyor belt 3 and entering the radiation chamber 10, the transmitted products can be automatically inactivated.
[0034] There are also the following points to note:
[0035] (1) The accompanying drawings of the embodiments of the present application only relate to the structures involved in the embodiments of the present application, and other structures can refer to the general design.
[0036] (2) For clarity, in the accompanying drawings used to describe the embodiments of the present application, the thickness of the layers or regions is enlarged or reduced, that is, these drawings are not drawn to actual scale.
[0037] (3) Without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other to obtain new embodiments.
[0038] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. The protection scope of the present application shall be subject to the protection scope of the claims.
Claims
1. A sterile cotton ball production device, characterized in that: include: A finished cotton ball product, comprising a split substrate, a cotton ball body and a tinfoil cap, wherein the split substrate cross section is a T-shaped structure, the upper half of the split substrate is separated to the left and right sides, the cotton ball body is adhered to the top surface of the split substrate, the tinfoil cap is adhered to the top of the split substrate, the split substrate and the tinfoil cap are both made of thin tinfoil, and the tinfoil cap is located outside the cotton ball body; Raw material conveying mechanism, used to convey various raw materials for disinfected cotton balls; A transfer assembly mechanism, used for combining the raw materials of the sterilized cotton balls; The disinfection mechanism is used for disinfecting the finished cotton balls.
2. A sterile cotton ball production device according to claim 1, characterized in that: The raw material conveying mechanism comprises a base, a cotton ball conveyor belt, a double-row conveyor belt and a cap shell conveyor belt; The base has a flat plate shape and is used to carry various mechanisms; The cotton ball conveyor belt is located on the top of the base and is used to transport the cotton balls. A guide frame is provided on the top of the cotton ball conveyor belt to position the cotton balls. The double-row conveyor belt is located on the top of the base and is used to transport the separated substrate. A positioning slit is opened in the middle of the double-row conveyor belt. A double-row plate rack is provided at the end of the double-row conveyor belt. The positioning slit is used to position the bottom vertical blade of the separated substrate. The cap shell conveyor belt is used to transmit the tinfoil cap, and the cap shell conveyor belt is located on the top of the base.
3. A sterile cotton ball production device according to claim 2, characterized in that: The transfer assembly mechanism includes a functional gantry, a reciprocating screw a, an electric telescopic rod c, a reciprocating screw b and an electric telescopic rod e; The functional gantry is located on the outside of the double-row conveyor belt, an electric telescopic rod a is provided on the top of the functional gantry, a single valve pipe is provided at the bottom of the telescopic part of the electric telescopic rod a, a branch gantry is provided on the outside of the cap shell conveyor belt, a hose is provided at the side end of the single valve pipe, the hose is resting on the top of the branch gantry, a liquid pump a is connected to the end of the hose of the single valve pipe, and a glue tank a is connected to the side end of the liquid pump a.
4. A sterile cotton ball production device according to claim 3, characterized in that: The reciprocating screw a is arranged above the double-row conveyor belt and the cap shell conveyor belt, an electric telescopic rod b is provided at the bottom of the ball nut seat of the reciprocating screw a, a negative pressure suction head a is provided at the bottom of the electric telescopic rod b, a one-way valve is provided at the side end of the negative pressure suction head a, and the side end of the one-way valve is connected to a vacuum pump a through a pipeline.
5. A sterile cotton ball production device according to claim 3, characterized in that: The electric telescopic rod c is arranged above the double-row conveyor belt, and a cone frame pressure ring is arranged at the bottom of the telescopic part of the electric telescopic rod c.
6. A sterile cotton ball production device according to claim 3, characterized in that: The reciprocating screw b is arranged on the top of the base, and the reciprocating screw b spans above the cotton ball conveyor belt and the double-row conveyor belt. An electric telescopic rod d is provided at the bottom of the ball nut seat of the reciprocating screw b, and a negative pressure suction head b is provided at the bottom of the telescopic part of the electric telescopic rod d. The side end of the negative pressure suction head b is connected to a vacuum pump b through a pipeline.
7. A sterile cotton ball production device according to claim 3, characterized in that: The electric telescopic rod e is arranged above the double-row conveyor belt, an electric valve is arranged at the bottom of the telescopic part of the electric telescopic rod e, a six-tube dripper is arranged at the bottom of the electric valve, and a side end of the electric valve is connected to a glue tank b through a hose.
8. A sterile cotton ball production device according to claim 2, characterized in that: The disinfection mechanism comprises a radiation chamber, which is located outside the double-row conveyor belt. A cobalt-60 radiation source is arranged in the radiation chamber for disinfecting the assembled cotton ball products.