Automatic propeller device for blood glucose test paper

By designing the automatic pusher device of blood sugar test strips, the control mechanism and the propulsion mechanism are used to achieve accurate push of the test strips, which solves the problem of cumbersome insertion of test strips in existing equipment, and improves operational convenience and efficiency.

CN119985988APending Publication Date: 2025-05-13PEOPLES HOSPITAL AFFILIATED TO FUJIAN UNIV OF TRADITIONAL CHINESE MEDICINE (FUJIAN PROVINCIAL PEOPLES HOSPITAL)
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Patent Information

Application Number
CN202510162818.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Existing blood sugar detection equipment is complicated in inserting and operating test strips, especially inconvenient for the elderly and frequent test users.

Method used

A blood sugar test strip automatic propeller device is designed to accurately push the test strip to the detection position through the control mechanism and the propulsion mechanism. The user only needs to press the button to complete the operation.

Benefits of technology

It simplifies the tedious steps of inserting test strips, improves operational convenience and efficiency, is especially suitable for the elderly and frequent inspection users, and significantly improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an automatic blood glucose test strip propeller device which comprises a blood glucose detector, a display screen is arranged at the top of the blood glucose detector, a detection plate is fixed to the right side of the blood glucose detector, and two baffles are slidably connected to the front side of the interior of the blood glucose detector; a control mechanism is arranged on the side, away from the baffle, of the interior of the blood glucose detector, a pushing mechanism is installed on the side, away from the detection plate, of the control mechanism, a second reset assembly is arranged on the side, away from the baffle, of the blood glucose detector, and multiple pieces of blood glucose test paper which are linearly and evenly distributed are arranged in the blood glucose detector. Through the control mechanism and the propelling mechanism, the test paper can be accurately and stably pushed to a detection position, a user only needs to slightly press a button to complete propelling operation, and the function greatly simplifies the traditional tedious step of manually inserting the test paper.
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Description

Technical Field

[0001] The invention relates to an automatic pusher device for a blood sugar test strip, and relates to the technical field of medical testing equipment. Background Art

[0002] Blood glucose testing is an important method for assessing human blood glucose levels and is widely used in daily monitoring and clinical diagnosis of diabetic patients. By testing the glucose concentration in the blood, users can understand their blood glucose status in a timely manner, thereby guiding the adjustment of diet, exercise and medication. As an important means of health management, blood glucose testing is of great significance for the prevention and control of diabetic complications. Its convenience and accuracy are directly related to the health management effect of users; Existing blood sugar testing equipment mainly consists of two parts: a blood sugar meter and a blood sugar test strip. The blood sugar meter detects the glucose reaction on the blood sugar test strip by chemical or electrochemical means, and finally obtains the blood sugar value. This type of equipment has the characteristics of high accuracy, strong portability, and simple operation, and has been widely used in home and medical scenarios. However, users need to manually complete steps such as test strip insertion, blood sample collection, and post-test strip processing, which places high demands on operating proficiency and sanitary conditions; In the prior art, when testing blood sugar, it is necessary to manually insert a blood sugar test strip into the testing device. This operation is cumbersome when facing an environment that requires frequent testing. When facing the elderly, this manual operation will increase the burden of use to a certain extent. Therefore, the prior art still has room for improvement in the automation of test strip insertion and operational convenience.

[0003] To this end, the present invention provides an automatic pusher device for a blood glucose test strip to solve the deficiencies of the prior art. Summary of the invention

[0004] In view of the deficiencies in the prior art, the technical problem to be solved by the present invention is to provide an automatic pusher device for blood glucose test strips, which solves the problem that traditional blood glucose test strips are cumbersome when used in special environments and for special groups.

[0005] In order to solve the above technical problems, the technical solution of the present invention is: an automatic pusher device for blood glucose test strips, comprising a blood glucose tester, a display screen is provided on the top of the blood glucose tester, a detection plate is fixed on the right side of the blood glucose tester, two baffles are slidably connected to the internal front side of the blood glucose tester, a control mechanism is provided on the side of the blood glucose tester away from the baffle, a push mechanism is installed on the side of the control mechanism away from the detection plate, a reset component 2 is provided on the side of the blood glucose tester away from the baffle, a plurality of blood glucose test strips evenly distributed in a straight line are provided inside the blood glucose tester, a support component is provided on the side of the blood glucose test strip away from the detection plate, and a cover plate is slidably connected to the bottom of the blood glucose tester; The control mechanism includes a push rod, which is slidably connected to the right rear side of the blood glucose tester. An isosceles trapezoidal block is fixed to the side of the push rod close to the blood glucose tester, and right-angled trapezoidal blocks are slid on the upper and lower sides of the isosceles trapezoidal block. Wedge blocks are fixed to the upper and lower sides of the isosceles trapezoidal block, and wedge grooves are provided inside the two right-angled trapezoidal blocks. A connecting rod is fixed to the side of the right-angled trapezoidal block close to the blood glucose tester, and a connecting plate is fixed to the side of the right-angled trapezoidal block close to the baffle. A reset component 1 is fixed to the periphery of the push rod.

[0006] Preferably, the propulsion mechanism includes a movable rod, which is fixed on a side of the connecting rod away from the right-angle trapezoidal block, a connecting block 1 is fixed on the side of the movable rod away from the baffle, a rotating rod 1 is rotated inside the connecting block 1, a cross plate is rotated on the end of the rotating rod 1 away from the movable rod, a propulsion plate is fixed on the side of the cross plate close to the baffle, a top plate is fixed on the side of the propulsion plate close to the baffle, a spring 2 is fixed on the side of the cross plate away from the propulsion plate, a movable block is fixed on the side of the movable rod away from the propulsion plate, and an auxiliary component is provided inside the propulsion plate.

[0007] Preferably, the support assembly includes a second support plate, the second support plate abuts against the side of the blood glucose test strip away from the detection plate, a spring three is fixed to the middle of the side of the second support plate away from the blood glucose test strip, damping rods are fixed to the front and rear ends of the side of the second support plate away from the blood glucose test strip, and support plate one is fixed to the side of the damping rod away from the second support plate.

[0008] Preferably, the reset component 1 includes a movable plate, the movable plate is fixed to the outer periphery of the push rod, a compression spring is fixed to one side of the movable plate, a spring 1 is fixed inside the side of the movable plate away from the push rod, a support rod is fixed to the side of the spring 1 away from the push rod, and a pressing ball is fixed to the side of the support rod away from the spring 1.

[0009] Preferably, the auxiliary component includes two connecting blocks 2, which slide on the upper and lower sides of the inside of the propulsion plate respectively, and connecting blocks are fixed on opposite sides of the two connecting blocks 2, and sliding rods are fixed on opposite sides of the two connecting blocks, and partitions are fixed on the outer peripheries of the two sliding rods, and a rotating rod 2 is rotated inside the connecting block 2, and a connecting block 3 is rotated at the end of the rotating rod 2 away from the connecting block 2, and a protruding block is fixed on the side of the connecting block 3 away from the rotating rod 2, and limiting plates are fixed on the front and rear sides of the connecting block 2.

[0010] Preferably, the second reset component includes a concave frame, which is fixed to a side of the blood glucose tester away from the baffle, a reset rod is slidably arranged inside the concave frame, and a push rod is fixed to one end of the reset rod close to the blood glucose tester.

[0011] Preferably, a button 1 is fixed to one end of the push rod away from the isosceles trapezoidal block, and one end of the connecting plate away from the right-angled trapezoidal block is connected to the baffle through the connecting rod.

[0012] Preferably, the partition is slidably connected to the upper and lower sides of the interior of the blood glucose detector, and the protruding block is slidably connected to the interior of the top plate.

[0013] Preferably, the wedge block is slidably connected inside the wedge groove.

[0014] Preferably, the pressing ball is movably connected to the inside of the blood glucose tester in an upward and left-right manner, and the blood glucose tester is provided with pressing ball embedding through holes corresponding to the movable starting point and the movable end point of the pressing ball, and the push rod corresponds to the pressing ball embedding through holes at the movable end point.

[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention uses a control mechanism and a propulsion mechanism to enable the test strip to be pushed to the detection position accurately and smoothly. The user only needs to press a button to complete the propulsion operation. This function greatly simplifies the tedious steps of traditional manual insertion of the test strip, and does not require fine alignment or additional adjustment, thereby improving the convenience and efficiency of operation. Especially for the elderly or users who need frequent testing, this design makes blood sugar testing easier and faster, solves the problems of complex operation and low efficiency of traditional testing equipment, and significantly improves user experience.

[0016] 2. The present invention uses auxiliary components, and after the test is completed, the test paper can automatically detach from the device and pop out to the discarded position. The user does not need to directly touch the used test paper, which not only prevents the secondary contamination or infection risk of the test paper, but also effectively avoids the health risks caused by contact with blood. The user only needs simple operations to complete the disposal of the discarded test paper, providing the user with a safer and more hygienic testing experience.

[0017] 3. The present invention uses the reset component 2, which allows the test paper to be used continuously after the test is completed. The present invention uses the support component, so that after each test is completed, the device can automatically fill the next test paper into place and use it at any time, ensuring continuous use without interruption, providing users with a smoother and more efficient operating experience.

[0018] The present invention is further described in detail below with reference to the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 A perspective view of the present invention; Figure 2 It is a structural schematic diagram of the blood glucose test paper of the present invention; Figure 3 It is a structural schematic diagram of the detection board of the present invention; Figure 4 It is a schematic diagram of the structure of the push rod of the present invention; Figure 5 It is a structural schematic diagram of the propulsion plate of the present invention; Figure 6 It is a structural schematic diagram of the wedge block of the present invention; Figure 7 It is a structural schematic diagram of the top plate of the present invention; Figure 8 It is a structural schematic diagram of the extension block of the present invention; Fig. 9 It is a structural schematic diagram of a support plate 1 of the present invention; Fig.10 It is a structural schematic diagram of the reset rod of the present invention; Fig.11 It is a structural schematic diagram of a spring 1 of the present invention; Fig.12 It is a structural schematic diagram of the compression spring of the present invention; Fig.13 It is a schematic structural diagram of the pressing ball of the present invention.

[0020] In the figure: 1. Blood glucose tester; 2. Control mechanism; 201. Button 1; 202. Push rod; 203. Isosceles trapezoidal block; 204. Wedge block; 205. Wedge groove; 206. Right-angle trapezoidal block; 207. Connecting rod; 208. Connecting plate; 3. Reset assembly 1; 301. Active plate; 302. Spring 1; 303. Support rod; 304. Press ball; 305. Compression spring; 4. Propulsion mechanism; 401. Propulsion plate; 402. Horizontal plate; 403. Spring 2; 404. Rotating rod 1; 405. Connecting block 1; 406. Active rod; 407. Active rod Moving block; 408, top plate; 5, auxiliary component; 501, sliding rod; 502, partition; 503, connecting block; 504, connecting block two; 505, rotating rod two; 506, connecting block three; 507, limiting plate; 508, extending block; 509 spring, 6, supporting component; 601, supporting plate one; 602, spring three; 603, damping rod; 604, supporting plate two; 7, reset component two; 701, reset rod; 702, concave frame; 703, top rod; 8, display screen; 9, baffle; 10, blood glucose test strip; 11, detection plate; 12, cover plate. DETAILED DESCRIPTION

[0021] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0022] It should be noted that the following detailed descriptions are exemplary and are intended to provide further explanation of the present application. Unless otherwise specified, all technical and scientific terms used herein have the same meanings as those commonly understood by those skilled in the art to which the present application belongs.

[0023] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, it indicates the presence of features, steps, operations, devices, components and / or combinations thereof.

[0024] Please see attached Figure 1 - Attachment Figure 3 The embodiment of the present invention provides an automatic pusher device for a blood glucose test strip, comprising a blood glucose detector 1, the blood glucose detector 1 is used to detect blood glucose, a display screen 8 is provided on the top of the blood glucose detector 1, the display screen 8 is used to display the blood glucose value, a detection plate 11 is fixed on the right side of the blood glucose detector 1, the detection plate 11 is used to cooperate with a blood glucose test strip 10 to detect blood glucose, two baffles 9 are slidably connected to the front side of the blood glucose detector 1, the baffles 9 are used to prevent impurities from entering the interior of the blood glucose detector 1, a control mechanism 2 is provided on the side of the blood glucose detector 1 away from the baffle 9, a push mechanism 4 is installed on the side of the control mechanism 2 away from the detection plate 11, a reset component 7 is provided on the side of the blood glucose detector 1 away from the baffle 9, a plurality of blood glucose test strips 10 evenly distributed in a straight line are provided inside the blood glucose detector 1, a support component 6 is provided on the side of the blood glucose test strip 10 away from the detection plate 11, and a cover plate 12 is slidably connected to the bottom of the blood glucose detector 1; Please see attached Figure 4 - Attachment Figure 6The control mechanism 2 includes a push rod 202, which is slidably connected to the right rear side of the blood glucose detector 1. An isosceles trapezoidal block 203 is fixed to the side of the push rod 202 close to the blood glucose detector 1. The push rod 202 is used to connect with the isosceles trapezoidal block 203. When the push rod 202 moves, the isosceles trapezoidal block 203 can be controlled to move. A button 201 is fixed to the end of the push rod 202 away from the isosceles trapezoidal block 203. The button 201 is used to facilitate the control of the movement of the push rod 202. The isosceles trapezoidal block 203 is slidably provided with right-angled trapezoidal blocks 206 on both sides. The isosceles trapezoidal block 203 is fixed with wedge blocks 204 on both sides. The two right-angled trapezoidal blocks 206 are provided with wedge grooves inside. 205, the wedge block 204 is slidably connected inside the wedge groove 205, and the wedge block 204 slides inside the wedge groove 205. When the wedge block 204 moves, a force can be applied to the right-angled trapezoidal block 206. A connecting rod 207 is fixed to the side of the right-angled trapezoidal block 206 close to the blood glucose detector 1, and a connecting plate 208 is fixed to the side of the right-angled trapezoidal block 206 close to the baffle 9. The end of the connecting plate 208 away from the right-angled trapezoidal block 206 is connected to the baffle 9 through the connecting rod 207. The connecting plate 208 is connected to the baffle 9 through the connecting rod 207, so that when the right-angled trapezoidal block 206 moves, the baffle 9 can be controlled to move together. A reset component 3 is fixed to the periphery of the push rod 202.

[0025] Please see attached Figure 5 and attached Figure 7 The propulsion mechanism 4 includes a movable rod 406, which is fixed on the side of the connecting rod 207 away from the right-angled trapezoidal block 206. The movable rod 406 is connected to the connecting rod 207. When the right-angled trapezoidal block 206 moves, the movable rod 406 can be driven to move by the connecting rod 207. A connecting block 405 is fixed on the side of the movable rod 406 away from the baffle 9. A rotating rod 404 rotates inside the connecting block 405. A transverse plate 402 rotates at one end of the rotating rod 404 away from the movable rod 406. The rotating rod 404 is used to connect the transverse plate 402 and the connecting block 405. When the transverse plate 402 moves, the connecting block 405 can be controlled by the rotating rod 404. 05 movement, a push plate 401 is fixed on the side of the horizontal plate 402 close to the baffle 9, the horizontal plate 402 is connected to the push plate 401, and when the horizontal plate 402 moves, the push plate 401 can be driven to move together, a top plate 408 is fixed on the side of the push plate 401 close to the baffle 9, and the top plate 408 is used to push the blood glucose test strip 10 to move, a spring 2 403 is fixed on the side of the horizontal plate 402 away from the push plate 401, and the spring 2 403 is used to provide tension for the horizontal plate 402, and the spring 2 403 will be stretched when the horizontal plate 402 moves, a movable block 407 is fixed on the side of the movable rod 406 away from the push plate 401, and an auxiliary component 5 is provided inside the push plate 401.

[0026] Please see attached Fig. 9The support assembly 6 includes a second support plate 604, which abuts against the side of the blood glucose test strip 10 away from the detection plate 11. The second support plate 604 is used to abut the blood glucose test strip 10. A spring three 602 is fixed to the middle of the side of the second support plate 604 away from the blood glucose test strip 10. Damping rods 603 are fixed to the front and rear ends of the side of the second support plate 604 away from the blood glucose test strip 10. A support plate one 601 is fixed to the side of the damping rod 603 away from the support plate two 604. The spring three 602 and the damping rod 603 are used to connect the support plate one 601 and the support plate two 604 to provide supporting force for the support plate two 604.

[0027] Please see attached Fig.11 -Attached Fig.12 The reset component 3 includes a movable plate 301, which is fixed to the outer periphery of the push rod 202. The movable plate 301 is connected to the push rod 202. When the push rod 202 moves, the movable plate 301 can be driven to move together. A compression spring 305 is fixed on one side of the movable plate 301. The compression spring 305 is fixed inside the blood glucose detector 1, and one end is connected to the movable plate 301. When the push rod 202 drives the movable plate 301 to move, a force is applied to the compression spring 305, so that the compression spring 305 is contracted by the force. A spring 302 is fixed inside the side of the movable plate 301 away from the push rod 202. A support rod 303 is fixed on the side of the spring 302 away from the push rod 202. A pressing ball 304 is fixed on the side of the support rod 303 away from the spring 302. The spring 302 is used to The support rod 303 and the pressing ball 304 provide supporting force. The pressing ball 304 is movably connected to the inside of the blood glucose tester 1. When the movable plate 301 moves, the pressing ball 304 will also move accordingly. Because the pressing ball 304 and the blood glucose tester 1 are connected at the pressing ball embedded through hole, the pressing ball 304 will move toward the inside of the movable plate 301 and apply force to the support rod 303. When the movable plate 301 continues to move, the pressing ball 304 away from the outer periphery of the movable plate 301 will detach from the pressing ball embedded through hole at the starting point of the activity and move inside the blood glucose tester 1 until it moves to the pressing ball embedded through hole at the end point of the activity. At this time, under the action of the spring 1 302, the pressing ball 304 away from the outer periphery of the movable plate 301 will be embedded in the pressing ball embedded through hole at the end point of the activity to achieve temporary positioning.

[0028] Please see attached Figure 8The auxiliary component 5 includes two connecting blocks 504, and the two connecting blocks 504 slide on the upper and lower sides of the inside of the push plate 401 respectively. The two connecting blocks 504 are fixed with connecting blocks 503 on the opposite sides. The connecting blocks 504 are connected to the connecting blocks 503. When the connecting blocks 504 move, the connecting blocks 503 will move together. Slide rods 501 are fixed on the opposite sides of the two connecting blocks 503. The slide rods 501 are used to facilitate the control of the movement of the connecting blocks 503. The outer peripheries of the two slide rods 501 are fixed with partitions 502. The partitions 502 are slidably connected to the upper and lower sides of the inside of the blood glucose detector 1. The partitions 502 are used to prevent impurities from entering the blood glucose detector 1. The internal rotation of the connecting blocks 504 There is a rotating rod 2 505, and a connecting block 3 506 is rotatably arranged at one end of the rotating rod 2 505 away from the connecting block 2 504. The rotating rod 2 505 is used to connect the connecting block 3 506 with the connecting block 2 504. When the connecting block 2 504 moves, the rotating rod 2 505 can generate a corresponding rotation, thereby controlling the movement of the connecting block 3 506. A protruding block 508 is fixed to the side of the connecting block 3 506 away from the rotating rod 2 505. The protruding block 508 is slidably connected to the inside of the top plate 408. The protruding block 508 slides in the top plate 408 to control the blood glucose test strip 10 to move twice and pop out automatically. Limiting plates 507 are fixed on the front and back sides of the connecting block 2 504, and the limiting plates 507 are used to limit the movement of the connecting block 2 504.

[0029] Please see attached Fig.10 -Attached Fig.13 The reset component 27 includes a concave frame 702, which is fixed on the side of the blood glucose tester 1 away from the baffle 9. A reset rod 701 is slidably arranged inside the concave frame 702. The concave frame 702 is used to install the reset rod 701. A top rod 703 is fixed on one end of the reset rod 701 close to the blood glucose tester 1.

[0030] The pressing ball 304 is movably connected to the inside of the blood glucose tester 1 in an upward and leftward manner, and the blood glucose tester 1 is provided with pressing ball embedding through holes corresponding to the movable starting point and the movable end point of the pressing ball 304, and the top rod 703 corresponds to the pressing ball embedding through hole at the movable end point.

[0031] When the push rod 202 is in a pressed state and the compression spring 305 is in a contracted state, the pressing ball 304 will be located at the pressing ball embedding hole at the end point of the activity, that is, the side of the push rod 703 away from the reset rod 701. At this time, the outer periphery of the pressing ball 304 away from the movable plate 301 will contact the side of the push rod 703 away from the reset rod 701, thereby applying a force to the push rod 703. By pressing the reset rod 701, the push rod 703 applies a force to the pressing ball 304, and the movement of the pressing ball 304 can be controlled by the push rod 703, so that the pressing ball 304 moves to the inside of the blood glucose tester 1 and disengages from the pressing ball embedding hole at the end point of the activity. The reset rod 701 is connected to the push rod 703, and the movement of the push rod 703 can be controlled by pushing the reset rod 701.

[0032] Working principle: Before using the blood glucose tester 1, it is necessary to open the cover 12 first, and then move the spring three 602. After the spring three 602 moves, multiple blood glucose test strips 10 are placed in the blood glucose tester 1, and then the cover 12 is reassembled with the blood glucose tester 1. Then, when the blood glucose tester 1 needs to be used, the push rod 202 is pressed by the button 1 201. When the push rod 202 moves, it will drive the isosceles trapezoidal block 203 to move, so that the two wedge blocks 204 will slide in the wedge grooves 205 opened inside the two right-angled trapezoidal blocks 206. When the right-angled trapezoidal blocks 206 move, first, the two baffles 9 will move in opposite directions through the connecting plate 208, thereby allowing the blood glucose test strips 10 to slide out of the blood glucose tester 1. Secondly, the connecting rod 207 of the right-angled trapezoidal block 206 will drive the movable rod 406 to move together, and the push rod 207 will drive the movable rod 406 to move together, and the push rod 207 will drive the movable rod 406 to move together, and the push rod 207 will drive the movable rod 406 to move together, and the push rod 207 will drive the movable rod 406 to move together, and the push rod 207 will drive the movable rod 406 to move together, and the push rod 207 will drive the movable rod 406 to move together. When the rod 202 is moving, the movable plate 301 will drive the pressing ball 304 to move together in the blood glucose tester 1, and the movable plate 301 will apply a force to the compression spring 305 to shrink the compression spring 305. When the pressing ball 304 moves, the pressing ball 304 will contact and move along the inner wall of the blood glucose tester 1, so that the pressing ball 304 will apply a force to the spring 1 302. When the spring 1 302 is subjected to the force, it will provide a reaction force for the pressing ball 304, so that the pressing ball 304 is always in contact with the inner wall of the blood glucose tester 1. When the pressing ball 304 moves along the inside of the blood glucose tester 1 to one side of the push rod 703, the pressing ball will be located at the movable end point. The embedded through hole contacts the push rod 703, and at this time, the force applied by the spring 1 302 to the pressing ball 304 can push the push rod 703 to move. When the movable rod 406 moves, it will drive the connecting block 1 405 to move together, and when the connecting block 1 405 moves, the rotating rod 1 404 inside the connecting block 1 405 will rotate accordingly, thereby controlling the movement of the horizontal plate 402, and when the horizontal plate 402 moves, the pushing plate 401 connected to the horizontal plate 402 will move along with the movement of the horizontal plate 402, and the top plate 408 at the front end of the pushing plate 401 will control the application of force to the blood glucose test strip 10, so that the blood glucose test strip 10 will slide in the blood glucose detector 1, and when the horizontal plate 402 drives the pushing plate 401 to move, the horizontal plate 402 will generate a pulling force on the spring 2 403, and when the pushing plate 401 moves, the sliding rods 501 and the partitions 502 on both sides of the pushing plate 401 will slide accordingly in the blood glucose detector 1; After the blood glucose test strip 10 is moved out of the blood glucose detector 1, the blood glucose test can be performed. The top plate 408 pushes the blood glucose test strip 10 to make the blood glucose test strip 10 slide out of the blood glucose detector 1, and then the two slide bars 501 are pressed toward each other. When the slide bar 501 moves, the second connecting block 504 moves together. During the movement of the second connecting block 504, the second rotating rod 505 rotates accordingly. When the second rotating rod 505 rotates, the extension block 508 is controlled to move, so that the extension block 508 moves further, and the blood glucose test strip 10 can be ejected from the blood glucose detector 1 after the test is completed. After the slide bar 501 is released, the spring 509 beside the limit plate 507 contracts, so that the extension block 508 moves into the top plate 408. After the blood glucose test strip 10 is popped out, by pressing the reset rod 701, the top rod 703 applies a force to the pressing ball 304, and the pressing ball 304 can be controlled to move by the top rod 703, so that the pressing ball 304 moves to the inside of the blood glucose detector 1 and disengages from the pressing ball embedded through hole at the activity end point, and the compression spring 305 of the movable plate 301 will reset and push the movable plate 301, thereby resetting the button 1 201, and the two right-angled trapezoidal blocks 206 move toward each other, so that the top plate 408 moves backward, and at this time the spring three 602 will apply a force to the support plate two 604, so that the support plate two 604 pushes the blood glucose test strip 10 to move, fill the blood glucose test strip 10, and facilitate the next use.

[0033] The above is only a preferred embodiment of the present invention, and does not limit the present invention in other forms. Any technician familiar with the profession may use the above disclosed technical content to change or modify it into an equivalent embodiment with equivalent changes. However, any simple modification, equivalent change and modification made to the above embodiment according to the technical essence of the present invention without departing from the technical solution of the present invention still belongs to the protection scope of the technical solution of the present invention.

Claims

1. A blood glucose test strip automatic pusher device, comprising a blood glucose detector (1), characterized in that: The blood glucose detector (1) has a display screen (8) on the top, a detection plate (11) is fixed on the right side of the blood glucose detector (1), two baffles (9) are slidably connected to the front side of the blood glucose detector (1), a control mechanism (2) is provided on the side of the blood glucose detector (1) away from the baffles (9), a propulsion mechanism (4) is installed on the side of the control mechanism (2) away from the detection plate (11), a reset component 2 (7) is provided on the side of the blood glucose detector (1) away from the baffles (9), a plurality of blood glucose test strips (10) evenly distributed in a straight line are provided inside the blood glucose detector (1), a support component (6) is provided on the side of the blood glucose test strips (10) away from the detection plate (11), and a cover plate (12) is slidably connected to the bottom of the blood glucose detector (1); The control mechanism (2) comprises a push rod (202), the push rod (202) being slidably connected to the right rear side of the blood glucose detector (1), an isosceles trapezoidal block (203) being fixed on the side of the push rod (202) close to the blood glucose detector (1), right-angled trapezoidal blocks (206) being slidably provided on the upper and lower sides of the isosceles trapezoidal block (203), wedge blocks (204) being fixed on the upper and lower sides of the isosceles trapezoidal block (203), wedge grooves (205) being provided inside the two right-angled trapezoidal blocks (206), a connecting rod (207) being fixed on the side of the right-angled trapezoidal block (206) close to the blood glucose detector (1), a connecting plate (208) being fixed on the side of the right-angled trapezoidal block (206) close to the baffle (9), and a reset component 1 (3) being fixed on the periphery of the push rod (202).

2. The blood glucose test strip automatic pusher device according to claim 1, characterized in that: The propulsion mechanism (4) comprises a movable rod (406), wherein the movable rod (406) is fixed to a side of the connecting rod (207) away from the right-angle trapezoidal block (206), a connecting block 1 (405) is fixed to a side of the movable rod (406) away from the baffle (9), a rotating rod 1 (404) is rotatably arranged inside the connecting block 1 (405), a transverse plate (402) is rotatably arranged at an end of the rotating rod 1 (404) away from the movable rod (406), a propulsion plate (401) is fixed to a side of the transverse plate (402) close to the baffle (9), a top plate (408) is fixed to a side of the propulsion plate (401) close to the baffle (9), a spring 2 (403) is fixed to a side of the transverse plate (402) away from the propulsion plate (401), a movable block (407) is fixed to a side of the movable rod (406) away from the propulsion plate (401), and an auxiliary component (5) is arranged inside the propulsion plate (401).

3. The blood glucose test strip automatic pusher device according to claim 1, characterized in that: The support assembly (6) comprises a second support plate (604), the second support plate (604) being in contact with a side of the blood glucose test strip (10) away from the detection plate (11), a third spring (602) being fixed to the middle of the side of the second support plate (604) away from the blood glucose test strip (10), damping rods (603) being fixed to both front and rear ends of the side of the second support plate (604) away from the blood glucose test strip (10), and a first support plate (601) being fixed to the side of the damping rod (603) away from the second support plate (604).

4. The blood glucose test strip automatic pusher device according to claim 1, characterized in that: The reset component 1 (3) comprises a movable plate (301), the movable plate (301) being fixed to the outer periphery of the push rod (202), a compression spring (305) being fixed to one side of the movable plate (301), a spring 1 (302) being fixed inside the side of the movable plate (301) away from the push rod (202), a support rod (303) being fixed to the side of the spring 1 (302) away from the push rod (202), and a pressing ball (304) being fixed to the side of the support rod (303) away from the spring 1 (302).

5. The blood glucose test strip automatic pusher device according to claim 2, characterized in that: The auxiliary component (5) comprises two connecting blocks (504), the two connecting blocks (504) slide on the upper and lower sides of the inside of the pushing plate (401) respectively, the two connecting blocks (504) are fixed with connecting blocks (503) on the opposite sides, the two connecting blocks (503) are fixed with sliding rods (501) on the opposite sides, the outer peripheries of the two sliding rods (501) are fixed with partitions (502), the inside of the connecting block (504) is rotatably provided with a rotating rod (505), the end of the rotating rod (505) away from the connecting block (504) is rotatably provided with a connecting block (506), the side of the connecting block (506) away from the rotating rod (505) is fixed with a protruding block (508), and the front and rear sides of the connecting block (504) are fixed with limiting plates (507).

6. The blood glucose test strip automatic pusher device according to claim 4, characterized in that: The second reset assembly (7) comprises a concave frame (702), the concave frame (702) being fixed to a side of the blood glucose detector (1) away from the baffle (9), a reset rod (701) being slidably disposed inside the concave frame (702), and a push rod (703) being fixed to one end of the reset rod (701) close to the blood glucose detector (1).

7. The blood glucose test strip automatic pusher device according to claim 1, characterized in that: A button 1 (201) is fixed to one end of the push rod (202) away from the isosceles trapezoidal block (203), and one end of the connecting plate (208) away from the right-angled trapezoidal block (206) is connected to the baffle (9) via the connecting rod (207).

8. The blood glucose test strip automatic pusher device according to claim 5, characterized in that: The partition (502) is slidably connected to the upper and lower sides of the interior of the blood glucose detector (1), and the protruding block (508) is slidably connected to the interior of the top plate (408).

9. The blood glucose test strip automatic pusher device according to claim 1, characterized in that: The wedge block (204) is slidably connected inside the wedge groove (205).

10. The blood glucose test strip automatic pusher device according to claim 6, characterized in that: The pressing ball (304) is movably connected to the interior of the blood glucose tester (1) in an upward and leftward extension manner, and the blood glucose tester (1) is provided with pressing ball embedding through holes at the movable starting point and movable end point of the pressing ball (304), and the push rod (703) corresponds to the pressing ball embedding through hole at the movable end point.