Collecting and bottling device based on dozens of medical test paper measurement

By designing an automated collection and bottling device, the problems of low efficiency and product damage risk of traditional manual bottling were solved, enabling rapid and accurate bottling of test strips and improving bottling efficiency and quality stability.

CN223865191UActive Publication Date: 2026-02-03URIT MEDICAL ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520483658.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-02-03
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

Traditional manual bottling processes are difficult to fill medical test strips efficiently and reliably, posing a risk of product damage and resulting in low efficiency.

Method used

A collection and bottling device based on dozens of medical test strips was designed, including a receiving conveyor belt assembly, a rotating vertical bottling assembly, a secondary discharge hopper, a lifting assembly, a bottle positioning clamp assembly, a detection assembly, and an air blowing auxiliary assembly. The device achieves rapid closure, positioning, and detection of the test strips through an automated production line, and solves the problem of static electricity.

Benefits of technology

This enables rapid and accurate bottling of test strips, reducing the risk of product damage and improving bottling efficiency and quality stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of detection test paper processing, in particular to a collecting and bottling device based on dozens of pieces of medical detection test paper, which comprises a material receiving conveying belt assembly, a rotary vertical bottling assembly, a secondary blanking hopper, a lifting assembly, a bottle barrel positioning clamp assembly, a detection assembly, an air blowing auxiliary assembly and an ionic wind functional assembly, the test strips are collected through the material receiving conveying belt assembly and are gathered into the second-stage blanking hopper; when the second-stage blanking hopper rotates to the vertical direction, the bottle barrel positioning clamp assembly positions the bottle body; according to the device, dozens of test strips are folded and collected through the material receiving conveying belt assembly, rapid discharging of the test strips is achieved through the arrangement of the lifting assembly, the accurate positioning of bottles and the clamping jaw shaking function are achieved through the bottle barrel positioning clamp assembly, and the test strips can be rapidly discharged through the bottle barrel positioning clamp assembly. The detection assembly is used for detecting the test strip which is not completely bottled, so that the air blowing auxiliary assembly is started to blow air, and the test strip is assisted to be bottled.
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Description

TECHNICAL FIELD

[0001] The utility model relates to test paper processing technical field especially based on medical test paper dozens of quantity loading's collection bottle device. BACKGROUND

[0002] In the traditional medical test paper production and processing process, the production process of test paper end product mainly includes slitting, folding and collecting, bottling, drying agent loading, cap loading and packaging.

[0003] At present, the bottling process in the medical test paper production process still relies on traditional manual bottling. However, the test paper strip product itself is a small size, light quality, thin strip-shaped test paper strip, and the number of disposable simultaneous bottling is large, etc.

[0004] However, there are many external factors rubbing the product in the bottling link, and the product material itself is also easy to be affected by the production environment and generate static electricity; therefore, under the influence of the conditions, the operator is easy to take out the test paper strip with the bottle when manually bottling, so there is a certain risk to the product quality. UTILITY MODEL CONTENT

[0005] The utility model aims at providing based on medical test paper dozens of quantity loading's collection bottle device, aims at disposable dozens of quantity test paper strip fast automatic collection, simultaneously automatic bottling.

[0006] In order to achieve the above object, first, the utility model provides based on medical test paper dozens of quantity loading's collection bottle device, including material receiving conveyor belt assembly, rotating vertical bottling assembly, two-stage material drop, lifting assembly, bottle cylinder positioning clamp assembly, detection assembly, blowing auxiliary assembly and ion wind function assembly;The ion wind function assembly is arranged on one side of the material receiving conveyor belt assembly, the lifting assembly is arranged on the side of the material receiving conveyor belt assembly away from the ion wind function assembly, the rotating vertical bottling assembly is arranged on one side of the lifting assembly, the two-stage material drop is arranged on the side of the rotating vertical bottling assembly away from the lifting assembly, the detection assembly is arranged on one side of the two-stage material drop, the bottle cylinder positioning clamp assembly is arranged on one side of the detection assembly, and the blowing auxiliary assembly is arranged on one side of the two-stage material drop.

[0007] The receiving conveyor belt assembly includes a fixed base plate, a guide rail slider, a first cylinder, a guide rail limiting block, a conveyor belt fixing plate, a second cylinder, an end limiting block, a synchronous belt, a driving synchronous pulley, a driven pulley, a pulley shaft, a pulley fixing seat, a pulley bearing, a motor fixing seat, a motor, a receiving baffle plate, a slider fixing block, a slider positioning block, and a handle screw. The fixed base plate is located on one side of the ion wind functional component, the guide rail slider is located on one side of the fixed base plate, the guide rail limiting block is fixedly connected to the guide rail slider and located on both sides of the guide rail slider, the slider fixing block is located on one side of the guide rail slider, the slider positioning block is located between the slider fixing block and the guide rail slider, and the handle screw is located on the side of the conveyor belt fixing plate away from the slider fixing block. The first cylinder is fixedly connected to the fixed base plate and located on the side of the fixed base plate closer to the guide rail slider. The fixed plate is fixedly connected to the output end of the first cylinder and slidably connected to the guide rail slider, and is located at the top of the guide rail slider. The guide rail slider is fixedly connected to the conveyor belt fixing plate and is located at the top of the conveyor belt fixing plate. The end limiting block is fixedly connected to the output end of the second cylinder and is located on one side of the second cylinder. The motor fixing seat is located at the bottom of the conveyor belt fixing plate. The active synchronous pulley is located on one side of the motor fixing seat. The pulley fixing seat is located at the bottom of the conveyor belt fixing plate. The pulley bearing is located on one side of the pulley fixing seat. The pulley shaft is fixedly connected to the pulley bearing and is located on one side of the pulley bearing. The driven pulley is located on one side of the pulley bearing. The receiving baffle is located on one side of the conveyor belt fixing plate. The motor is fixedly connected to the motor fixing seat, and its output end is fixedly connected to the active synchronous pulley and passes through the motor fixing seat.

[0008] The secondary discharge hopper includes a secondary discharge hopper body and a fixing component. The fixing component is fixedly connected to the fixed base plate and is located at the bottom of the fixed base plate. The secondary discharge hopper body is disposed on one side of the fixing component.

[0009] The lifting assembly includes a vertical plate, a fixed plate, and a lifting cylinder. The vertical plate is fixedly connected to the fixed base plate and is located on one side of the fixed base plate. The fixed plate is fixedly connected to the vertical plate and is located on one side of the vertical plate. The lifting cylinder is fixedly connected to the fixed plate and is located on the side of the fixed plate away from the vertical plate.

[0010] Secondly, this utility model also provides a collection method based on dozens of medical test strips in a package, which is applied to the collection and bottling device based on dozens of medical test strips in a package as described in the first aspect above, including the following;

[0011] The semi-finished test paper is rolled into dozens of small thin test strips, which are collected by the receiving conveyor belt assembly and gathered into the secondary discharge hopper;

[0012] The secondary discharge hopper is rotated to a vertical position by the rotating vertical bottling assembly, and the bottle positioning clamp assembly positions the bottle body so that the discharge hole of the receiving hopper is concentric with the bottle mouth.

[0013] The test strip falls freely into the packaging bottle, and the quality of the test strip filling is checked by the detection component.

[0014] This invention relates to a collection and bottling device for dozens of medical test strips. Semi-finished test strips are rolled and cut into dozens of thin strips, which are collected and gathered into a secondary hopper via a receiving conveyor assembly. The secondary hopper is rotated vertically by a rotating vertical bottling assembly, and a bottle positioning clamp assembly positions the bottle, ensuring the discharge hole of the secondary hopper is concentric with the bottle opening. The test strips fall freely into the packaging bottle, and the bottling quality is monitored by a detection assembly. The device uses the receiving conveyor assembly to collect dozens of test strips, the rotating vertical bottling assembly to rotate 90 degrees for vertical bottling, a lifting assembly for rapid strip dropping, a bottle positioning clamp for precise bottle positioning and gripper vibration, and a detection assembly to detect partially filled test strips. This triggers an air blowing auxiliary assembly to assist in bottling. An ion wind function component addresses static electricity generated during the hopper process. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the structure of the collection and bottling device based on dozens of medical test strips provided by this utility model.

[0017] Figure 2 This is a side view of the collection and bottling device based on dozens of medical test strips provided by this utility model.

[0018] Figure 3 This is a schematic diagram of the structure of the synchronous belt receiving conveyor assembly of this utility model.

[0019] Figure 4 This is a side view of the synchronous belt receiving conveyor assembly of this utility model.

[0020] Figure 5 This is a schematic diagram of the rotating vertical bottling assembly of this utility model.

[0021] Figure 6 This is a cross-sectional view of the rotating vertical bottling assembly of this utility model.

[0022] Figure 7 This is an installation diagram of the two-stage discharge hopper of this utility model.

[0023] Figure 8 This is an installation diagram of the lifting component of this utility model.

[0024] Figure 9 This is a schematic diagram of the bottle positioning clamp assembly of this utility model.

[0025] Figure 10 This is a schematic diagram of the detection component of this utility model.

[0026] Figure 11 This is an installation diagram of the air blowing auxiliary component of this utility model.

[0027] Figure 12 This is an installation diagram of the ion wind functional component of this utility model.

[0028] Figure 13 This is a flowchart of a method for collecting dozens of test strips based on medical test strips, provided by this utility model.

[0029] In the diagram: 1-Receiving conveyor belt assembly, 2-Rotating vertical bottling assembly, 3-Secondary feeding hopper, 4-Lifting assembly, 5-Bottle positioning clamp assembly, 6-Detection assembly, 7-Blowing auxiliary assembly, 8-Ionizing air function assembly, 9-Fixed base plate, 10-Guide rail slider, 11-First cylinder, 12-Guide rail limit block, 13-Conveyor belt fixing plate, 14-Second cylinder, 15-End limit block, 16-Synchronous belt, 17-Driving synchronous pulley, 18-Driven pulley, 19-Pulley shaft, 20-Pulley fixing plate 21-Fixed seat, 22-Pulley bearing, 23-Motor mounting base, 24-Material receiving baffle plate, 25-Slider fixing block, 26-Slider positioning block, 27-Handle screw, 28-Secondary discharge hopper body, 29-Fixed component, 30-Upright plate, 31-Fixed plate, 32-Lifting cylinder, 33-Motor mounting base plate, 34-Central shaft mounting plate, 35-Rotating central bearing, 36-Rotating central shaft, 37-Rotating bearing cover, 38-Connecting rod, 39-Rotating motor, 40-Wire harness slip ring, 4 1-Slip ring fixing sleeve, 42-Connecting hopper fixing piece, 43-Harness, 44-Hopper side guard, 45-Angled guide block, 46-Baffle plate, 47-First-stage discharge hopper, 48-Discharge hopper connecting piece, 49-Baffle plate rotary motor, 50-Horizontal motor mounting piece, 51-Horizontal sensor mounting piece, 52-Upper limit fixing piece, 53-Lower limit fixing piece, 54-Sensor, 55-Miniature vibration motor, 56-Clamp bottom positioning plate, 57-Guide rail fixing plate, 58-Telescopic cylinder, 59-Extension 60-Guide rail slider, 61-Grip cylinder connector, 62-Grip, 63-Cylinder connector, 64-Cylinder connector, 65-Bracket base plate, 66-Bracket reinforcing rib, 67-Bracket upright plate, 68-U-shaped sensor mounting plate, 69-Strip sensor side mounting piece, 70-Strip sensor, 71-First air pipe fixing piece, 72-Second air pipe fixing piece, 73-Stainless steel air pipe connector, 74-Ion fan, 75-Ion fan support plate, 76-Ion fan fixing piece. Detailed Implementation

[0030] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0031] Please see Figures 1 to 12In one aspect, this utility model provides a collection and bottling device for dozens of medical test strips, including a receiving conveyor belt assembly 1, a rotating vertical bottling assembly 2, a secondary discharge hopper 3, a lifting assembly 4, a bottle positioning clamp assembly 5, a detection assembly 6, an air blowing auxiliary assembly 7, and an ion wind functional assembly 8; the ion wind functional assembly 8 is disposed on one side of the receiving conveyor belt assembly 1, the lifting assembly 4 is disposed on the side of the receiving conveyor belt assembly 1 away from the ion wind functional assembly 8, the rotating vertical bottling assembly 2 is disposed on one side of the lifting assembly 4, the secondary discharge hopper 3 is disposed on the side of the rotating vertical bottling assembly 2 away from the lifting assembly 4, the detection assembly 6 is disposed on one side of the secondary discharge hopper 3, the bottle positioning clamp assembly 5 is disposed on one side of the detection assembly 6, and the air blowing auxiliary assembly 7 is disposed on one side of the secondary discharge hopper 3.

[0032] In this embodiment of the invention, the semi-finished test paper is rolled and cut into dozens of small thin test strips, which are collected and gathered into the secondary discharge hopper 3 by the receiving conveyor belt assembly 1. The secondary discharge hopper 3 is rotated to a vertical position by the rotating vertical bottling assembly 2, and the bottle positioning clamp assembly 5 positions the bottle body so that the discharge hole of the secondary discharge hopper 3 is concentric with the bottle mouth. The test strips fall freely into the packaging bottle, and the quality of the test strips being bottled is checked by the detection assembly 6. This device achieves the collection and gathering of dozens of test strips through the receiving conveyor belt assembly 1, the rotating vertical bottling assembly 2 can rotate 90 degrees to vertically bottle, the lifting assembly 4 enables rapid dropping of test strips, the bottle positioning clamp assembly 5 achieves precise bottle positioning and the gripper 62 has a shaking function, the detection assembly 6 detects test strips that are not fully bottled, thereby activating the air blowing auxiliary assembly 7 to blow air and assist in bottling the test strips, and the ion wind function assembly 8 solves the static electricity problem generated during the hopper process.

[0033] Furthermore, the receiving conveyor belt assembly 1 includes a fixed base plate 9, a guide rail slider 10, a first cylinder 11, a guide rail limiting block 12, a conveyor belt fixing plate 13, a second cylinder 14, an end limiting block 15, a synchronous belt 16, a driving synchronous pulley 17, a driven pulley 18, a pulley shaft 19, a pulley fixing seat 20, a pulley bearing 21, a motor fixing seat 22, a motor 23, a receiving gap plate 24, a slider fixing block 25, a slider positioning block 26, and a handle screw 27. The fixed base plate 9 is located on one side of the ion wind functional component 8, and the guide rail slider... 10 is disposed on one side of the fixed base plate 9. The guide rail limiting block 12 is fixedly connected to the guide rail slider 10 and located on both sides of the guide rail slider 10. The slider fixing block 25 is disposed on one side of the guide rail slider 10. The slider positioning block 26 is disposed between the slider fixing block 25 and the guide rail slider 10. The handle screw 27 is disposed on the side of the conveyor belt fixing plate 13 away from the slider fixing block 25. The first cylinder 11 is fixedly connected to the fixed base plate 9 and located on the fixed base plate 9 near the guide rail slider 10. On one side, the conveyor belt fixing plate 13 is fixedly connected to the output end of the first cylinder 11 and slidably connected to the guide rail slider 10, and is located on top of the guide rail slider 10. The guide rail slider 10 is fixedly connected to the conveyor belt fixing plate 13 and is located on top of the conveyor belt fixing plate 13. The end limiting block 15 is fixedly connected to the output end of the second cylinder 14 and is located on one side of the second cylinder 14. The motor fixing seat 22 is disposed at the bottom of the conveyor belt fixing plate 13, and the active synchronous pulley 17 is disposed on one side of the motor fixing seat 22. On one side, the pulley fixing seat 20 is disposed at the bottom of the conveyor belt fixing plate 13, the pulley bearing 21 is disposed on one side of the pulley fixing seat 20, the pulley shaft 19 is fixedly connected to the pulley bearing 21 and is located on one side of the pulley bearing 21, the driven pulley 18 is disposed on one side of the pulley bearing 21, the receiving baffle plate 24 is disposed on one side of the conveyor belt fixing plate 13, the motor 23 is fixedly connected to the motor fixing seat 22, and the output end is fixedly connected to the driving synchronous pulley 17 and passes through the motor fixing seat 22.

[0034] In this embodiment of the utility model, the motor mounting base 22 provides installation conditions for the motor 23, the motor 23 is used to drive the active synchronous pulley 17 to rotate, the guide rail slider 10 is installed above the fixed base plate 9, the guide rail limit blocks 12 are installed at both ends of the guide rail slider 10, and the first cylinder 11 is also installed above the fixed base plate 9; the first cylinder 11 is connected to the conveyor belt fixing plate 13; the conveyor belt fixing plate 13 is installed above the guide rail slider 10, and the second cylinder 14 is installed on the conveyor belt fixing plate 13, the second cylinder 14 is connected to the end A limiting block 15 is included; a motor mounting base 22 is installed below the conveyor belt fixing plate 13; a pulley mounting base 20 is installed below the conveyor belt fixing plate 13, and the pulley mounting base 20 is concentrically installed with the pulley bearing 21; the pulley bearing 21 is concentrically connected to the pulley shaft 19; the driven pulley 18 is concentrically connected to the pulley bearing 21; a receiving baffle 24 is installed on one side of the conveyor belt fixing plate 13. The receiving baffle 24 reduces the gap between the receiving conveyor belt assembly 1 and the rotating vertical bottling assembly 2, and also serves to guide the test strip. The conveyor belt fixing plate 13 provides installation conditions for the pulley fixing seat 20; the pulley fixing seat 20 is concentrically connected to the driven pulley 18, and the driven pulley 18 slides and guides the synchronous belt 16; the connecting wheel fixing seat 20 and the two sets of driven pulleys 18 are directly below the conveyor belt fixing plate 13, so that the distance between the two sets of driven pulleys 18 controls the included angle of the main synchronous pulley 17, ensuring that the friction between the driving synchronous pulley 17 and the synchronous belt 16 drives the synchronous belt 16; the first cylinder 11 is connected to the conveyor belt fixing plate 13, thereby driving the conveyor belt fixing plate 13. The fixed plate 13 moves back and forth to drive the receiving conveyor belt assembly 1, assisting in the smooth completion of receiving and cleaning the equipment; the second cylinder 14 is connected to the end limiting block 15, thereby limiting the conveying force of the front end of the test strip during the receiving process, so as to ensure that the test strip falls on the synchronous belt 16 at a constant position, and when the receiving conveyor belt assembly 1 starts running, the second cylinder 14 returns to the origin to avoid increasing the additional friction force on the test strip; the slider fixing block 25, the slider positioning block 26 and the handle screw 27 are set to assist in fixing the synchronous belt 16 when cleaning the equipment.

[0035] Furthermore, the secondary discharge hopper 3 includes a secondary discharge hopper body 28 and a fixing member 29. The fixing member 29 is fixedly connected to the fixing base plate 9 and is located at the bottom of the fixing base plate 9. The secondary discharge hopper body 28 is disposed on one side of the fixing member 29.

[0036] In this embodiment of the utility model, the fixing member 29 is installed below the fixing base plate 9, the secondary discharge hopper body 28 is connected to the fixing member 29, and is installed concentrically with the primary discharge hopper 47 in the rotating vertical bottling assembly 2, and the distance between the two surfaces is 3.0mm.

[0037] Furthermore, the lifting assembly 4 includes a vertical plate 30, a fixed plate 31, and a lifting cylinder 32. The vertical plate 30 is fixedly connected to the fixed base plate 9 and is located on one side of the fixed base plate 9. The fixed plate 31 is fixedly connected to the vertical plate 30 and is located on one side of the vertical plate 30. The lifting cylinder 32 is fixedly connected to the fixed plate 31 and is located on the side of the fixed plate 31 away from the vertical plate 30.

[0038] In this embodiment of the utility model, the lifting cylinder 32 is connected to the fixing plate 31, the fixing plate 31 is connected to the upright plate 30, and the lifting component 4 plays the role of lifting the rotating vertical bottling component 2 in the whole device, which can quickly realize the bottling of test strips and prevent test strips from remaining on the inner wall of the receiving hopper 43.

[0039] Furthermore, the rotating vertical bottling assembly 2 includes a motor fixing base plate 33, a central shaft mounting plate 34, a rotating central bearing 35, a rotating central shaft 36, a rotating bearing cover 37, a connecting rod 38, a rotating motor 39, a wire harness slip ring 40, a slip ring fixing sleeve 41, a connecting receiving hopper fixing component 42, a receiving hopper 43, a hopper side guard 44, an angled guide block 45, a baffle plate 46, a primary discharge hopper 47, a discharge hopper connecting component 48, a baffle plate rotating motor 49, a horizontal motor mounting component 50, a horizontal sensing mounting plate 51, an upper limit fixing component 52, a lower limit fixing component 53, a sensor 54, and a micro vibration motor 55.

[0040] The motor mounting plate 31 is connected to the central shaft mounting plate 34; the hole of the central shaft mounting plate 34 is installed with the rotating central bearing 35; the central shaft mounting plate 34 is connected and installed with the rotating bearing cover 37; the rotating central shaft 36 is concentrically installed with the rotating central bearing 35; the connecting rod 38 is connected to one side of the central shaft mounting plate 34; the connecting rod 38 is connected to the rotating motor 39; the wire harness slip ring 40 is installed above the central shaft mounting plate 34; the slip ring fixing sleeve 41 is also installed on the wire harness slip ring 40; the connecting hopper fixing component 29 is connected to the rotating central shaft 36; the connecting hopper fixing component 29 is connected to the receiving hopper 43; the receiving hopper 43 is connected to the side flange 44 of the hopper; the receiving hopper 43 is connected to the angled guide block 45; the receiving hopper 43 is connected to the dropping hopper connecting component 48; the primary dropping hopper 47 is connected to the dropping hopper connecting component. The hopper 47 and the receiving hopper 43 are connected by a 48-type connection, with the hole of the first-stage discharge hopper 47 concentric with the hole of the receiving hopper 43, and the distance between the two surfaces is 2.5 mm. The horizontal motor mounting component 50 is connected to the receiving hopper 43. The baffle rotary motor 49 is mounted on the horizontal motor mounting component 50. The baffle rotary motor 49 is connected to the baffle 46, and the baffle 46 is installed between the distance between the two surfaces of the receiving hopper 43 and the first-stage discharge hopper 47. The horizontal motor mounting component 50 is connected to the horizontal sensor 54 mounting plate. The sensor 54 is mounted on the horizontal sensor 54 mounting plate. The upper limit fixing component 52 is installed above the motor fixing plate 31. The upper limit fixing component 52 is connected to the sensor 54. The lower limit fixing component 53 is installed below the motor fixing plate 31. The lower limit fixing component 53 is connected to the sensor 5422. The micro vibration motor 55 is installed on the back of the receiving hopper 43.

[0041] Furthermore, the bottle positioning clamp assembly includes a clamp bottom positioning plate 56, a guide rail fixing plate 57, a telescopic cylinder 58, a telescopic guide rail slider 59, a gripper cylinder connector 60, a gripper cylinder 61, a gripper 62, a cylinder connector 63, and a cylinder connector 64. The guide rail fixing plate 57 is installed above the clamp bottom positioning plate 56; the telescopic cylinder 58 is installed above the guide rail fixing plate 57; the telescopic guide rail slider 59 is also installed above the guide rail fixing plate 57; the telescopic cylinder 58 is connected to the cylinder connector 63; the gripper cylinder connector 60 is connected above the telescopic guide rail slider 59; the gripper cylinder 61 is installed above the gripper cylinder connector 60; the gripper cylinder 61 is connected to the gripper 62; the cylinder connector 63 is connected to the cylinder connector 64; and the cylinder connector 64 is connected to the gripper cylinder connector 60.

[0042] Furthermore, the detection component 6 includes a support base plate 65, a support reinforcing rib 66, a support upright plate 67, a U-shaped sensor mounting plate 68, a strip sensor lateral mounting component 69, a strip sensor 70, and first and second air tube fixing components 72. The support base plate 65 is connected to the support upright plate 67 at the top; the support base plate 65 is connected to the support reinforcing rib 66 at the top; the support upright plate 67 is connected to the U-shaped sensor mounting plate 68 at the top; the U-shaped sensor mounting plate 68 is connected to the strip sensor lateral mounting component 69; the strip sensor lateral mounting component 69 is connected to the strip sensor 70; the support reinforcing rib 66 is connected below the U-shaped sensor mounting plate 68; a pair of strip sensors 70 are mounted on one end of the U-shaped sensor mounting plate 68; and the first and second air tube fixing components 72 are mounted on the U-shaped sensor 54.

[0043] Furthermore, the blowing assist component 7 includes a second air tube fixing member 72 and a stainless steel air tube connector 73. The second air tube fixing member 72 and the stainless steel air tube connector 73 are installed horizontally on both sides of the bottle opening, with the two blowing tube openings symmetrically opposite each other. Through electrical control, the blowing tubes cross and blow air to each other, thereby causing the bottle containing the test strip and the test strip to shake, solving the problem that the test strip does not completely fall to the bottom of the bottle.

[0044] Furthermore, the ion wind functional component 8 comprises an ion wind fan 74, an ion wind fan support plate 75, and an ion wind fan fixing component 76. The ion wind fan 74, the ion wind fan support plate 75, and the ion wind fan fixing component 76 are installed on the right side of the device. Utilizing the flexibility of the serpentine tube, the air outlet extends to the inlet of the receiving hopper 43, thereby resolving the static electricity problem that occurs in the receiving hopper 43 during the production process.

[0045] Please see Figure 13 Secondly, this utility model also provides a collection method based on dozens of medical test strips in a package, which is applied to the collection and bottling device based on dozens of medical test strips in a package as described in the first aspect above, including the following;

[0046] S1 semi-finished test paper is rolled into dozens of small thin test paper strips, which are collected by the receiving conveyor belt assembly 1 and gathered into the secondary discharge hopper 3;

[0047] The S2 secondary discharge hopper 3 is rotated to the vertical direction by the rotating vertical bottling assembly 2, and the bottle positioning clamp assembly 5 positions the bottle body so that the discharge hole of the receiving hopper 43 is concentric with the bottle mouth of the bottle body.

[0048] The S3 test strip falls freely into the packaging bottle, and the quality of the test strip in the bottle is checked by the detection component 6.

[0049] The above-disclosed embodiments are merely preferred embodiments of the collection and bottling device for dozens of medical test strips based on this utility model. Of course, they should not be construed as limiting the scope of this utility model. Those skilled in the art can understand that implementing all or part of the above embodiments and making equivalent changes according to the claims of this utility model still fall within the scope of this utility model.

Claims

1. A collection and bottling device based on dozens of medical test strips, characterized in that... ; It includes a receiving conveyor belt assembly, a rotating vertical bottling assembly, a secondary discharge hopper, a lifting assembly, a bottle positioning clamp assembly, a detection assembly, an air blowing auxiliary assembly, and an ion wind functional assembly; The ion wind functional component is located on one side of the receiving conveyor belt assembly, the lifting component is located on the side of the receiving conveyor belt assembly away from the ion wind functional component, the rotating vertical bottling assembly is located on one side of the lifting component, the secondary discharge hopper is located on the side of the rotating vertical bottling assembly away from the lifting component, the detection component is located on one side of the secondary discharge hopper, the bottle positioning clamp assembly is located on one side of the detection component, and the air blowing auxiliary component is located on one side of the secondary discharge hopper.

2. The collection and bottling device based on dozens of medical test strips as described in claim 1, Its characteristics are: The receiving conveyor belt assembly includes a fixed base plate, a guide rail slider, a first cylinder, a guide rail limiting block, a conveyor belt fixing plate, a second cylinder, an end limiting block, a synchronous belt, a driving synchronous pulley, a driven pulley, a pulley shaft, a pulley fixing seat, a pulley bearing, a motor fixing seat, a motor, a receiving baffle plate, a slider fixing block, a slider positioning block, and a handle screw. The fixed base plate is located on one side of the ion wind functional component, the guide rail slider is located on one side of the fixed base plate, the guide rail limiting block is fixedly connected to the guide rail slider and located on both sides of the guide rail slider, the slider fixing block is located on one side of the guide rail slider, the slider positioning block is located between the slider fixing block and the guide rail slider, and the handle screw is located on the side of the conveyor belt fixing plate away from the slider fixing block. The first cylinder is fixedly connected to the fixed base plate and located on the side of the fixed base plate closer to the guide rail slider. The conveyor belt fixing... The plate is fixedly connected to the output end of the first cylinder and slidably connected to the guide rail slider, and is located at the top of the guide rail slider. The guide rail slider is fixedly connected to the conveyor belt fixing plate and is located at the top of the conveyor belt fixing plate. The end limiting block is fixedly connected to the output end of the second cylinder and is located on one side of the second cylinder. The motor fixing seat is located at the bottom of the conveyor belt fixing plate. The active synchronous pulley is located on one side of the motor fixing seat. The pulley fixing seat is located at the bottom of the conveyor belt fixing plate. The pulley bearing is located on one side of the pulley fixing seat. The pulley shaft is fixedly connected to the pulley bearing and is located on one side of the pulley bearing. The driven pulley is located on one side of the pulley bearing. The receiving baffle is located on one side of the conveyor belt fixing plate. The motor is fixedly connected to the motor fixing seat, and its output end is fixedly connected to the active synchronous pulley and passes through the motor fixing seat.

3. The collection and bottling device based on dozens of medical test strips as described in claim 2, characterized in that... ; The secondary discharge hopper includes a secondary discharge hopper body and a fixing component. The fixing component is fixedly connected to the fixed base plate and is located at the bottom of the fixed base plate. The secondary discharge hopper body is disposed on one side of the fixing component.

4. The collection and bottling device based on dozens of medical test strips as described in claim 2, characterized in that; The lifting assembly includes a vertical plate, a fixed plate, and a lifting cylinder. The vertical plate is fixedly connected to the fixed base plate and is located on one side of the fixed base plate. The fixed plate is fixedly connected to the vertical plate and is located on one side of the vertical plate. The lifting cylinder is fixedly connected to the fixed plate and is located on the side of the fixed plate away from the vertical plate.