Adsorption type abdomen intelligent insulin syringe
By designing an adsorption-type intelligent abdominal insulin syringe that integrates intelligent components and multiple mechanical components, automatic positioning, disinfection and mixing of insulin injections are achieved, solving the problems of unclear injection position and complex operation, improving injection stability and simplifying the operation process.
Patent Information
- Application Number
- CN202422219899.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The injection position of existing insulin syringes is unclear, which can easily lead to repeated injections due to forgetfulness. The disinfection and mixing of insulin are complicated and difficult for patients to operate.
An adsorption-type intelligent abdominal insulin syringe is designed, which integrates intelligent components, rotation components, dosing components, drive mechanisms, adsorption components, needle-free syringes and disinfection components to achieve automatic positioning, disinfection and mixing of insulin injections. The syringe is adsorbed on the patient's skin through negative pressure through the adsorption ring, and the position and height of the syringe are adjusted using the drive mechanism and electric telescopic rod. Insulin injection is performed in combination with a needle-free syringe.
It improves the stability and accuracy of injection, simplifies the operation process, reduces the risk of infection, and enhances the practical value of the syringe.
Smart Images

Figure CN223350716U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of insulin syringes, in particular to an adsorption-type abdominal intelligent insulin syringe. Background Art
[0002] An insulin syringe is a medical tool specifically used to inject insulin, a hormone used to help the body use glucose as an energy source. It is mainly used to treat diabetic patients because their bodies cannot produce enough insulin and therefore require additional insulin injections.
[0003] Patients using current insulin syringes cannot accurately find the injection site and are prone to repeated injections due to forgetting the injection site. Disinfection during injection needs to be carried out in steps, requiring users to have certain injection techniques and manual mixing of premixed insulin, making it impossible to perform multiple operations at one time.
[0004] Therefore, in view of the fact that the injection position of existing insulin syringes is unclear, there are few practical functions, and the manual operation is relatively complicated, an adsorption-type abdominal intelligent insulin syringe can be designed. By adding an automatic positioning and moving injection position, the premixed insulin can be automatically mixed, the stability and accuracy of the injection can be improved, and the integrated operation can reduce infection and patient troubles. Utility Model Content
[0005] In order to overcome the problem that most insulin injections are prone to repeated injections due to forgetting the injection location, disinfection needs to be carried out step by step during injection, requiring the user to have certain injection skills and manual mixing of premixed insulin.
[0006] The technical solution of the utility model is: an adsorption-type abdominal intelligent insulin syringe, comprising a syringe body, an intelligent component, a chassis, a rotating block, a rotating component, a dosing port, a dosing component, a screw, a driving mechanism, an adsorption ring, an adsorption component, a needle-free syringe, a first electric telescopic rod, an injection component, a disinfection mechanism, a second electric telescopic rod and a disinfection component; an intelligent component is provided on one side of the syringe body, a chassis is provided on the inner side of the bottom surface of the syringe body, a rotating block is provided on the upper surface of the syringe body, a rotating component is provided on the bottom surface of the rotating block, a dosing port is provided on the upper surface of the syringe body, a dosing component is provided below the dosing port, a screw is provided on the inner side of the chassis, a driving mechanism is provided on the outer side of the screw, an adsorption ring is provided on the bottom surface of the syringe body, an adsorption component is provided on one side of the adsorption ring, a first electric telescopic rod is provided below the screw, a needle-free syringe is provided below the first electric telescopic rod, an injection component is provided on one side of the needle-free syringe, a second electric telescopic rod is also provided below the screw, and a disinfection component is provided below the second electric telescopic rod.
[0007] Preferably, the syringe body is opened by setting an intelligent component, and the patient's blood sugar is tested at the same time, and the medical order information is entered into the syringe body, the insulin solution is injected into the dosing component through the dosing port, the rotating block is rotated to drive the rotating component to rotate, the rotating component is rotated to adjust the chassis angle, and the adsorption circle is caused to generate negative pressure through the adsorption component to adsorb the syringe body to the outer circle of the patient's navel skin, and then the driving mechanism is used to drive the screw rod to rotate, the screw rod is rotated to move the position of the needle-free syringe and the disinfection mechanism, the second electric telescopic rod is extended and retracted to adjust the height of the disinfection component, the disinfection component is used to move the position of the disinfection mechanism, and the patient's skin surface is disinfected through the position of the disinfection mechanism, and then the first electric telescopic rod is extended and retracted to adjust the height of the needle-free syringe, the injection component is used to premix the liquid inside the needle-free syringe, and the insulin injection operation is performed through the needle-free syringe, thereby achieving automatic mixing of the premixed insulin, improving the stability and accuracy of the injection, and enhancing the practical value of the syringe.
[0008] Preferably, the intelligent component includes a scanner, a display screen, a speaker, a fingerprint identifier and a blood glucose detection mechanism; a scanner is provided on the outside of the syringe body, a display screen is provided on the upper surface of the syringe body, a speaker is provided on one side of the display screen, a fingerprint identifier is also provided on the outside of the syringe body, and a blood glucose detection mechanism is also provided on the upper surface of the syringe body, and the blood glucose detection mechanism and the display screen are electrically connected to each other.
[0009] Preferably, the rotating assembly includes a first rotating shaft, a driving gear, a driven gear, an indicator line, a sealing groove and a sealing ring; the first rotating shaft is provided on the bottom surface of the rotating block, one end of the first rotating shaft is fixedly connected to the upper surface of the chassis, and the other end of the first rotating shaft is provided with a driving gear, which rotates inside the syringe body, and a driven gear is also provided on the inside of the syringe body, and the driven gear and the syringe body are rotatably connected to each other, and the driving gear and the driven gear are meshed with each other, and an indicator line is provided on the upper surface of the syringe body, and the indicator line is provided in multiple groups, and the indicator line is annular, and is provided on the outside of the rotating block, and a sealing groove is provided on the inside of the syringe body, and a sealing ring is provided on the top of the outer side of the chassis, and the sealing ring rotates in the sealing groove.
[0010] Preferably, the dosing component includes an injection tube, a first liquid pump, a liquid storage tank, a temperature control mechanism and a first motor; an injection tube is provided below the dosing port, a first liquid pump is provided on the outside of the injection tube, a liquid storage tank is provided on the inside of the syringe body, the injection tube and the liquid storage tank are connected to each other, a temperature control mechanism is provided on the top of the inner side of the liquid storage tank, a first motor is provided on the top of the liquid storage tank, and the output end of the first motor is connected to the temperature control mechanism.
[0011] Preferably, the driving mechanism includes a storage bin, an electric door panel, a servo motor and a connecting block; a storage bin is provided on the inner side of the chassis, an electric door panel is provided on the bottom of the storage bin, a screw rod is provided on the top of the storage bin, a servo motor is provided on the outer side of the storage bin, the output end of the servo motor is connected to the screw rod, a connecting block is provided on the outer side of the screw rod, a first electric telescopic rod is provided on the bottom of the connecting block, and a second electric telescopic rod is also provided on the bottom of the connecting block.
[0012] Preferably, the adsorption component includes a positioning identification mechanism, a button, an air pump and an air pipe; a positioning identification mechanism is provided in the middle of the bottom surface of the chassis, a button is provided on the upper surface of the syringe body, an air pump is also provided on the upper surface of the syringe body, an air pipe is provided on one side of the air pump, and one end of the air pipe is interconnected with the adsorption ring.
[0013] Preferably, the injection assembly includes a liquid inlet pipe, a second liquid pump, a connecting plate, a connecting spring, a first fixed seat and a vibration motor; a second liquid pump is provided on the bottom surface of the liquid storage tank, a liquid inlet pipe is provided on one side of the second liquid pump, the other end of the liquid inlet pipe is interconnected with the needle-free syringe, a connecting plate is provided at one end of the first electric telescopic rod, a connecting spring is provided on the bottom surface of the connecting plate, multiple groups of connecting springs are provided, a first fixed seat is provided at one end of the connecting spring, a needle-free syringe is provided on the bottom surface of the first fixed seat, and a vibration motor is provided on the upper surface of the first fixed seat.
[0014] Preferably, the disinfection component includes a second fixed seat, a second rotating shaft, a rotating motor and a connecting rod; the disinfection component includes a second fixed seat, a second rotating shaft, a rotating motor and a connecting rod; a second fixed seat is provided at one end of the second electric telescopic rod, a second rotating shaft is provided on the inner side of the second fixed seat, the second rotating shaft and the second fixed seat are rotatably connected to each other, a rotating motor is provided on the bottom surface of the second fixed seat, the output end of the rotating motor is connected to the second rotating shaft, a connecting rod is provided on the outer side of the second rotating shaft, and a disinfection mechanism is provided at one end of the connecting rod.
[0015] Beneficial effects of the utility model:
[0016] 1. When the injection position is clear, the patient's navel position is identified through the positioning identification mechanism, and the syringe body is placed with the patient's navel as the center. Then, the button is pressed to start the air pump, driving the trachea to extract air, so that negative pressure is generated in the adsorption circle, and the syringe body is adsorbed on the patient's skin surface. The second electric telescopic rod is extended and retracted to adjust the height of the disinfection mechanism, and the disinfection mechanism is used to perform the disinfection operation. After completion, the disinfection mechanism is stored in the storage bin, and the second liquid extraction pump is started to make the liquid inlet pipe extract the liquid in the liquid storage bin, and a certain amount of liquid medicine is extracted into the needle-free syringe. Then, the vibration motor on the first fixed seat is started to drive the needle-free syringe to vibrate slightly, so that the connecting spring vibrates and retracts slightly, and the liquid medicine in the needle-free syringe is mixed. Then, the first electric telescopic rod is extended to lower the height of the needle-free syringe under the connecting plate, so that the needle-free syringe is close to the patient's skin for injection operation, so as to solve the problems of most insulin syringes, such as unclear injection position, few practical functions, and complicated manual operation, thereby reducing infection and patient trouble. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 Shown is a first three-dimensional structural diagram of an adsorption-type abdominal intelligent insulin syringe of the present invention;
[0018] Figure 2 Shown is a schematic diagram of the cross-sectional three-dimensional structure of an adsorption-type abdominal intelligent insulin syringe of the present invention;
[0019] Figure 3 Shown is a schematic diagram of the three-dimensional structure of the rotating assembly of an adsorption-type abdominal intelligent insulin syringe of the present invention;
[0020] Figure 4 Shown is a second three-dimensional structural diagram of an adsorption-type abdominal intelligent insulin syringe of the present invention;
[0021] Figure 5 Shown is a schematic diagram of the three-dimensional structure of an adsorption-type abdominal intelligent insulin syringe of the present invention;
[0022] Figure 6 Shown is a schematic diagram of the three-dimensional structure of the inspection component of an adsorption-type abdominal intelligent insulin syringe of the present invention;
[0023] Figure 7 Shown is a schematic diagram of the three-dimensional structure of the injection component of an adsorption-type abdominal intelligent insulin syringe of the present invention;
[0024] Figure 8 Shown is a schematic diagram of the three-dimensional structure of the disinfection component of an adsorption-type abdominal intelligent insulin syringe of the present invention.
[0025] Explanation of reference numerals: 1. syringe body; 101. scanner; 102. display screen; 103. speaker; 104. fingerprint recognition device; 105. blood glucose detection mechanism; 2. chassis; 201. rotating block; 202. first rotating shaft; 203. driving gear; 204. driven gear; 205. indicator line; 206. sealing groove; 207. sealing ring; 3. dosing port; 301. injection tube; 302. first liquid pump; 303. liquid storage tank; 304. temperature control mechanism; 305. first motor; 4. screw rod; 401. storage tank; 402 , electric door panel; 403, servo motor; 404, connecting block; 5, adsorption ring; 501, positioning and identification mechanism; 502, button; 503, air pump; 504, trachea; 6, needle-free syringe; 601, first electric telescopic rod; 602, liquid inlet pipe; 603, second liquid pump; 604, connecting plate; 605, connecting spring; 606, first fixed seat; 607, vibration motor; 7, disinfection mechanism; 701, second electric telescopic rod; 702, second fixed seat; 703, second rotating shaft; 704, rotating motor; 705, connecting rod. DETAILED DESCRIPTION
[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0027] See also Figures 1-8 The utility model provides an embodiment: an adsorption-type abdominal intelligent insulin syringe, comprising a syringe body 1, an intelligent component, a chassis 2, a rotating block 201, a rotating component, a dosing port 3, a dosing component, a screw 4, a driving mechanism, an adsorption ring 5, an adsorption component, a needle-free syringe 6, a first electric telescopic rod 601, an injection component, a disinfection mechanism 7, a second electric telescopic rod 701 and a disinfection component; an intelligent component is provided on one side of the syringe body 1, a chassis 2 is provided on the inner side of the bottom surface of the syringe body 1, a rotating block 201 is provided on the upper surface of the syringe body 1, and a bottom surface of the rotating block 201 is provided. A rotating assembly is provided, a dosing port 3 is provided on the upper surface of the syringe body 1, a dosing assembly is provided below the dosing port 3, a screw rod 4 is provided on the inner side of the chassis 2, a driving mechanism is provided on the outer side of the screw rod 4, an adsorption ring 5 is provided on the bottom surface of the syringe body 1, an adsorption assembly is provided on one side of the adsorption ring 5, a first electric telescopic rod 601 is provided below the screw rod 4, a needle-free syringe 6 is provided below the first electric telescopic rod 601, an injection assembly is provided on one side of the needle-free syringe 6, a second electric telescopic rod 701 is also provided below the screw rod 4, and a disinfection assembly is provided below the second electric telescopic rod 701.
[0028] See also Figures 1-8In this embodiment, the smart component includes a scanner 101, a display screen 102, a speaker 103, a fingerprint identifier 104 and a blood glucose detection mechanism 105; a scanner 101 is provided on the outside of the syringe body 1, a display screen 102 is provided on the upper surface of the syringe body 1, a speaker 103 is provided on one side of the display screen 102, a fingerprint identifier 104 is also provided on the outside of the syringe body 1, and a blood glucose detection mechanism 105 is also provided on the upper surface of the syringe body 1. The blood glucose detection mechanism 105 and the display screen 102 are electrically connected to each other, the medical order information is scanned by the scanner 101, the blood glucose detection operation is performed by the blood glucose detection mechanism 105, the blood glucose detection status is displayed on the display screen 102, and the blood glucose detection status is displayed through the speaker 103. The hypoglycemia early warning alarm is performed, and the fingerprint identifier 104 is used to identify the user's fingerprint to open the syringe body 1; the rotating assembly includes a first rotating shaft 202, a driving gear 203, a driven gear 204, an indicator line 205, a sealing groove 206 and a sealing ring 207; the bottom surface of the rotating block 201 is provided with a first rotating shaft 202, one end of the first rotating shaft 202 is fixedly connected to the upper surface of the chassis 2, and the other end of the first rotating shaft 202 is provided with a driving gear 203, the driving gear 203 rotates inside the syringe body 1, and the inner side of the syringe body 1 is also provided with a driven gear 204, the driven gear 204 and the syringe body 1 are rotatably connected to each other, the driving gear 203 and the driven gear 204 are meshed with each other, and the upper surface of the syringe body 1 The surface is provided with an indicator line 205, and the indicator line 205 is provided with multiple groups. The indicator line 205 is annular and is provided on the outside of the rotating block 201. A sealing groove 206 is provided on the inside of the syringe body 1. A sealing ring 207 is provided on the top of the outer side of the chassis 2. The sealing ring 207 rotates in the sealing groove 206. When the indicator line 205 is observed, the rotating block 201 is rotated. The rotating block 201 drives the first rotating shaft 202 to rotate, so that the driving gear 203 and the driven gear 204 engage and rotate. The first rotating shaft 202 is rotated to rotate the sealing ring 207 in the sealing groove 206, thereby driving the chassis 2 to rotate by 5 degrees. The dosing component includes an injection pipe 301, a first liquid pump 302, a liquid storage tank 303, a temperature control mechanism 304 and A first motor 305; a liquid injection tube 301 is provided below the dosing port 3, a first liquid pump 302 is provided on the outside of the liquid injection tube 301, a liquid storage tank 303 is provided on the inside of the syringe body 1, the liquid injection tube 301 and the liquid storage tank 303 are connected to each other, a temperature control mechanism 304 is provided on the top of the inner side of the liquid storage tank 303, a first motor 305 is provided on the top of the liquid storage tank 303, an output end of the first motor 305 is connected to the temperature control mechanism 304, an injection needle is inserted into the rubber layer of the dosing port 3, the first liquid pump 302 is started to extract the liquid in the liquid injection tube 301 into the liquid storage tank 303, the temperature control mechanism 304 is used to ensure that the temperature environment of the liquid storage in the liquid storage tank 303 is stable, and the temperature control mechanism 304 is powered by the first motor 305;
[0029] The driving mechanism includes a storage bin 401, an electric door panel 402, a servo motor 403 and a connecting block 404; a storage bin 401 is provided on the inner side of the chassis 2, an electric door panel 402 is provided on the bottom surface of the storage bin 401, a screw rod 4 is provided on the top of the storage bin 401, a servo motor 403 is provided on the outside of the storage bin 401, the output end of the servo motor 403 is connected to the screw rod 4, a connecting block 404 is provided on the outside of the screw rod 4, a first electric telescopic rod 601 is provided on the bottom surface of the connecting block 404, and a second electric telescopic rod 701 is also provided on the bottom surface of the connecting block 404. When the syringe is not in use, the needle-free syringe 6 is stored in the storage bin 401, and the storage bin 401 is flexibly opened and closed by the electric door panel 402. The motor 403 drives the screw rod 4 to rotate, and the rotating screw rod 4 drives the connection block 404 to move, controlling the connection block 404 to move outward by 1 cm each time, thereby driving the needle-free syringe 6 to move the injection position; the adsorption component includes a positioning identification mechanism 501, a button 502, an air pump 503 and an air tube 504; a positioning identification mechanism 501 is provided in the middle of the bottom surface of the chassis 2, a button 502 is provided on the upper surface of the syringe body 1, an air pump 503 is also provided on the upper surface of the syringe body 1, an air tube 504 is provided on one side of the air pump 503, and one end of the air tube 504 is interconnected with the adsorption ring 5. The patient's navel position is identified by the positioning identification mechanism 501, and the syringe body 1 is placed with the patient's navel as the center. Then, press The button 502 starts the air pump 503, driving the air pipe 504 to extract air, so that negative pressure is generated in the adsorption circle 5, and the syringe body 1 is adsorbed on the patient's skin surface; the injection assembly includes a liquid inlet pipe 602, a second liquid pump 603, a connecting plate 604, a connecting spring 605, a first fixing seat 606 and a vibration motor 607; the bottom surface of the liquid storage tank 303 is provided with a second liquid pump 603, and one side of the second liquid pump 603 is provided with a liquid inlet pipe 602, and the other end of the liquid inlet pipe 602 is interconnected with the needle-free syringe 6, and one end of the first electric telescopic rod 601 is provided with a connecting plate 604, and the bottom surface of the connecting plate 604 is provided with a connecting spring 605, and the connecting spring 605 is provided with multiple groups, and one end of the connecting spring 605 is provided with a first A fixing base 606 is provided with a needle-free syringe 6 on the bottom surface of the first fixing base 606, and a vibration motor 607 is provided on the upper surface of the first fixing base 606. The second liquid pump 603 is activated to cause the liquid inlet pipe 602 to extract the liquid in the liquid storage tank 303, and extract a certain amount of liquid into the needle-free syringe 6. Then, the vibration motor 607 on the first fixing base 606 is activated to drive the needle-free syringe 6 to vibrate slightly, causing the connecting spring 605 to vibrate and expand with a small amplitude, thereby mixing the liquid in the needle-free syringe 6. Subsequently, the first electric telescopic rod 601 is extended to lower the connecting plate 604, and the needle-free syringe 6 is placed close to the patient's skin for injection. The disinfection assembly includes a second fixing base 702, a second rotating shaft 703, a rotating motor 704, and a connecting rod 705.A second fixed base 702 is provided at one end of the second electric telescopic rod 701. A second rotating shaft 703 is provided inside the second fixed base 702. The second rotating shaft 703 and the second fixed base 702 are rotatably connected to each other. A rotating motor 704 is provided on the bottom surface of the second fixed base 702. The output end of the rotating motor 704 is connected to the second rotating shaft 703. A connecting rod 705 is provided on the outside of the second rotating shaft 703. A disinfection mechanism 7 is provided at one end of the connecting rod 705. The second fixed base 702 defines the rotation range of the connecting rod 705. When the rotating motor 704 is activated, the second rotating shaft 703 is rotated, thereby flexibly moving the disinfection mechanism 7 on the connecting rod 705 to the patient's injection position.
[0030] Before injection, blood sugar is tested by the blood sugar testing mechanism 105, the blood sugar test results are displayed on the display screen 102, and a hypoglycemia warning alarm is sounded through the speaker 103. Then, the fingerprint identifier 104 recognizes the user's fingerprint to open the syringe body 1;
[0031] During the first use of each month, the injection needle is inserted into the rubber layer of the dosing port 3, and the first liquid pump 302 is started to extract the liquid in the injection tube 301 into the liquid storage tank 303. The first motor 305 drives the temperature control mechanism 304 to ensure that the temperature of the liquid in the liquid storage tank 303 is stable. The scanner 101 scans the medical order information and enters the medical order information into the syringe body 1.
[0032] When the injection location is determined, the patient's navel is identified by the positioning recognition mechanism 501, and the syringe body 1 is placed with the patient's navel as the center. Then, the button 502 is pressed to start the air pump 503, which drives the air tube 504 to extract air, thereby generating negative pressure in the adsorption ring 5, and adsorbing the syringe body 1 to the patient's skin surface;
[0033] During the disinfection operation, the electric door panel 402 is started to open the storage compartment 401, and the second rotating shaft 703 is driven to rotate by the rotating motor 704. The second rotating shaft 703 drives the connecting rod 705 to move, and the disinfection mechanism 7 on the connecting rod 705 is moved to the upper part of the disinfection position. Then, the second electric telescopic rod 701 is extended to lower the disinfection mechanism 7 to carry out the disinfection operation. After the disinfection operation is completed, the disinfection mechanism 7 is stored in the storage compartment 401.
[0034] During the injection operation, the second liquid pump 603 is activated to allow the liquid inlet pipe 602 to extract the liquid in the liquid storage tank 303, and a certain amount of liquid is extracted into the needle-free syringe 6. Then, the vibration motor 607 on the first fixed seat 606 is activated to drive the needle-free syringe 6 to vibrate slightly, causing the connecting spring 605 to vibrate and expand slightly, thereby mixing the liquid in the needle-free syringe 6. Subsequently, the first electric telescopic rod 601 is extended to lower the height of the needle-free syringe 6 under the connecting plate 604, so that the needle-free syringe 6 is close to the patient's skin for the injection operation;
[0035] After the injection is completed, the needle-free syringe 6 is stored in the storage compartment 401, the electric door panel 402 is closed, and the servo motor 403 is started to drive the screw 4 to rotate. The screw 4 drives the connecting block 404 to move the position, and the connecting block 404 is controlled to move outward by a distance of 1 cm, thereby driving the needle-free syringe 6 to move the injection position;
[0036] Before the injection on the second day, the observation indicator line 205 is rotated to rotate the rotating block 201. The rotating block 201 drives the first rotating shaft 202 to rotate, so that the driving gear 203 and the driven gear 204 engage and rotate. The first rotating shaft 202 is rotated to rotate the sealing ring 207 in the sealing groove 206, thereby driving the chassis 2 to rotate by 5 degrees.
[0037] Through the above steps, the syringe body 1 is opened by setting the intelligent component, the patient's blood sugar is tested at the same time, and the medical order information is entered into the syringe body 1, the insulin solution is injected into the dosing component through the dosing port 3, the rotating block 201 is rotated to drive the rotating component to rotate, the rotating component is rotated to adjust the angle of the chassis 2, and the adsorption circle 5 is used to generate negative pressure through the adsorption component to adsorb the syringe body 1 on the outer circle of the patient's navel skin. Subsequently, the driving mechanism is used to drive the screw rod 4 to rotate, and the screw rod 4 is rotated to move the needle-free syringe 6 and the disinfection mechanism 7. The second electric telescopic rod 701 is extended and retracted to adjust the height of the disinfection component, and the disinfection mechanism 7 is moved by the disinfection component. The patient's skin surface is disinfected through the disinfection mechanism 7. Subsequently, the first electric telescopic rod 601 is extended and retracted to adjust the height of the needle-free syringe 6, and the injection component is used to premix the internal liquid of the needle-free syringe 6, and insulin injection is performed through the needle-free syringe 6.
[0038] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. An adsorption-type abdominal intelligent insulin syringe, comprising a syringe body (1); characterized in that: The device further comprises an intelligent component, a chassis (2), a rotating block (201), a rotating assembly, a dosing port (3), a dosing assembly, a screw (4), a driving mechanism, an adsorption ring (5), an adsorption assembly, a needle-free syringe (6), a first electric telescopic rod (601), an injection assembly, a disinfection mechanism (7), a second electric telescopic rod (701) and a disinfection assembly; the intelligent component is provided on one side of the syringe body (1), the chassis (2) is provided on the inner side of the bottom surface of the syringe body (1), the rotating block (201) is provided on the upper surface of the syringe body (1), the rotating assembly is provided on the bottom surface of the rotating block (201), and the upper surface of the syringe body (1) is provided with a A dosing port (3) is provided, a dosing assembly is provided below the dosing port (3), a screw rod (4) is provided on the inner side of the chassis (2), a driving mechanism is provided on the outer side of the screw rod (4), an adsorption ring (5) is provided on the bottom surface of the syringe body (1), an adsorption assembly is provided on one side of the adsorption ring (5), a first electric telescopic rod (601) is provided below the screw rod (4), a needle-free syringe (6) is provided below the first electric telescopic rod (601), an injection assembly is provided on one side of the needle-free syringe (6), a second electric telescopic rod (701) is further provided below the screw rod (4), and a disinfection assembly is provided below the second electric telescopic rod (701).
2. The adsorption-type abdominal intelligent insulin syringe according to claim 1, characterized in that: The intelligent component comprises a scanner (101), a display screen (102), a speaker (103), a fingerprint identifier (104) and a blood glucose detection mechanism (105); the scanner (101) is arranged on the outside of the syringe body (1), the display screen (102) is arranged on the upper surface of the syringe body (1), a speaker (103) is arranged on one side of the display screen (102), the fingerprint identifier (104) is also arranged on the outside of the syringe body (1), and the blood glucose detection mechanism (105) is also arranged on the upper surface of the syringe body (1); the blood glucose detection mechanism (105) and the display screen (102) are electrically connected to each other.
3. The adsorption-type abdominal intelligent insulin syringe according to claim 1, characterized in that: The rotating assembly comprises a first rotating shaft (202), a driving gear (203), a driven gear (204), an indicator line (205), a sealing groove (206) and a sealing ring (207); the bottom surface of the rotating block (201) is provided with the first rotating shaft (202), one end of the first rotating shaft (202) is fixedly connected to the upper surface of the chassis (2), the other end of the first rotating shaft (202) is provided with a driving gear (203), the driving gear (203) rotates inside the syringe body (1), and the inner side of the syringe body (1) is also provided with a driven gear (204), The movable gear (204) and the syringe body (1) are rotatably connected to each other, the driving gear (203) and the driven gear (204) are meshed with each other, the upper surface of the syringe body (1) is provided with an indicator line (205), the indicator line (205) is provided with multiple groups, the indicator line (205) is annular, and the indicator line (205) is provided on the outside of the rotating block (201), the inner side of the syringe body (1) is provided with a sealing groove (206), and the top of the outer side of the chassis (2) is provided with a sealing ring (207), and the sealing ring (207) is engaged and rotated in the sealing groove (206).
4. The adsorption-type abdominal intelligent insulin syringe according to claim 1, characterized in that: The dosing assembly comprises a liquid injection pipe (301), a first liquid extraction pump (302), a liquid storage tank (303), a temperature control mechanism (304) and a first motor (305); the liquid injection pipe (301) is arranged below the dosing port (3), the first liquid extraction pump (302) is arranged outside the liquid injection pipe (301), the liquid storage tank (303) is arranged inside the syringe body (1), the liquid injection pipe (301) and the liquid storage tank (303) are interconnected, the temperature control mechanism (304) is arranged on the top of the inner side of the liquid storage tank (303), the first motor (305) is arranged on the top of the liquid storage tank (303), and the output end of the first motor (305) is connected to the temperature control mechanism (304).
5. The adsorption-type abdominal intelligent insulin syringe according to claim 1, characterized in that: The driving mechanism comprises a storage bin (401), an electric door panel (402), a servo motor (403) and a connecting block (404); the storage bin (401) is provided on the inner side of the chassis (2); the electric door panel (402) is provided on the bottom surface of the storage bin (401); a screw rod (4) is provided on the top of the storage bin (401); a servo motor (403) is provided on the outer side of the storage bin (401); the output end of the servo motor (403) is connected to the screw rod (4); a connecting block (404) is provided on the outer side of the screw rod (4); a first electric telescopic rod (601) is provided on the bottom surface of the connecting block (404); and a second electric telescopic rod (701) is also provided on the bottom surface of the connecting block (404).
6. The adsorption-type abdominal intelligent insulin syringe according to claim 1, characterized in that: The adsorption component comprises a positioning identification mechanism (501), a button (502), an air pump (503) and an air pipe (504); the positioning identification mechanism (501) is arranged in the middle of the bottom surface of the chassis (2), the button (502) is arranged on the upper surface of the syringe body (1), the air pump (503) is also arranged on the upper surface of the syringe body (1), and the air pipe (504) is arranged on one side of the air pump (503), and one end of the air pipe (504) is mutually connected with the adsorption ring (5).
7. The adsorption-type abdominal intelligent insulin syringe according to claim 5, characterized in that: The injection assembly comprises a liquid inlet pipe (602), a second liquid pump (603), a connecting plate (604), a connecting spring (605), a first fixed seat (606) and a vibration motor (607); the second liquid pump (603) is provided on the bottom surface of the liquid storage tank (303), a liquid inlet pipe (602) is provided on one side of the second liquid pump (603), the other end of the liquid inlet pipe (602) is interconnected with the needle-free syringe (6), a connecting plate (604) is provided on one end of the first electric telescopic rod (601), a connecting spring (605) is provided on the bottom surface of the connecting plate (604), a plurality of connecting springs (605) are provided, a first fixed seat (606) is provided on one end of the connecting spring (605), a needle-free syringe (6) is provided on the bottom surface of the first fixed seat (606), and a vibration motor (607) is provided on the upper surface of the first fixed seat (606).
8. The adsorption-type abdominal intelligent insulin syringe according to claim 7, characterized in that: The disinfection assembly comprises a second fixed seat (702), a second rotating shaft (703), a rotating motor (704) and a connecting rod (705); one end of the second electric telescopic rod (701) is provided with the second fixed seat (702), the inner side of the second fixed seat (702) is provided with the second rotating shaft (703), the second rotating shaft (703) and the second fixed seat (702) are rotatably connected to each other, the bottom surface of the second fixed seat (702) is provided with a rotating motor (704), the output end of the rotating motor (704) and the second rotating shaft (703) are connected to each other, the outer side of the second rotating shaft (703) is provided with a connecting rod (705), and one end of the connecting rod (705) is provided with a disinfection mechanism (7).