Cutting device for kit production

The automated drive mechanism and hydraulic push rod system enable automatic alignment and fixed cutting of reagent material stacks, solving the problems of low production efficiency and reliance on manual alignment in existing technologies, and improving cutting efficiency and accuracy.

CN224239689UActive Publication Date: 2026-05-15HENAN BLUEWOR MEDICAL EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN BLUEWOR MEDICAL EQUIP CO LTD
Filing Date
2025-06-19
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing reagent kit production cutting equipment requires manual straightening during the cutting of stacked paper, resulting in low production efficiency, high labor intensity for workers, and a high risk of errors.

Method used

The automated drive mechanism and hydraulic push rod system enable automatic alignment and fixed cutting of reagent kit pallets, reducing manual operation and improving cutting efficiency and accuracy.

Benefits of technology

It shortens the cutting cycle, improves the overall efficiency of paper cutting, reduces labor costs and human error rate, and ensures neat cutting edges.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224239689U_ABST
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Abstract

The utility model provides a cutting device for kit production, which comprises a placing table, a connecting frame plate is arranged at the upper end of the placing table, a plurality of first guide columns are arranged in the connecting frame plate in a sliding manner, a cutting knife is arranged among the lower ends of the first guide columns, second guide columns are arranged in a plurality of first guide grooves formed in the placing table, and a plurality of second guide grooves are formed in the placing table. A push plate is slidably arranged between the multiple second guide columns, third guide columns are arranged in multiple second guide grooves formed in the containing table, a positioning plate is arranged between the multiple third guide columns adjacent in the front-back direction, a driving mechanism is arranged at the lower end of the containing table, and the driving mechanism can drive the push plate and the positioning plates to move. According to the cutting device for kit production, stacked kit material paper can be automatically and regularly pushed and cut, the time needed by each period is greatly shortened, the overall cutting efficiency of the kit material paper is improved, and dependence on manual operation is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of reagent kit production technology, and specifically relates to a cutting device for reagent kit production. Background Technology

[0002] A reagent kit manufacturing cutting device is a specialized device for precisely cutting materials (such as cardboard) required for reagent kit production. This device typically includes one or more cutting tools (such as blades) that are mechanically driven to move and complete the cutting operation. Its main purpose is to ensure that the cut material is dimensionally accurate and has neat edges for subsequent reagent kit manufacturing.

[0003] Existing reagent kit production cutting devices cut reagent kit paper by driving a cutting blade downwards. To improve cutting efficiency, the paper is generally cut in stacks. During cutting, to avoid uneven cuts, personnel need to manually use positioning plates to straighten the stacks of reagent kit paper before cutting. The manual straightening process is time-consuming, especially when processing large quantities of paper, which significantly reduces the efficiency of the entire production process. Moreover, frequent manual adjustments increase the workload of workers, which is detrimental to their health in the long run and can lead to worker fatigue, thereby increasing the error rate. Utility Model Content

[0004] In view of this, this utility model addresses the shortcomings of the prior art by providing a cutting device for reagent kit production. This device can automatically and systematically push and cut stacked reagent kit materials, greatly shortening the time required for each cycle, improving the overall efficiency of reagent kit material cutting, and reducing reliance on manual operation. This not only reduces labor costs but also reduces problems caused by human error.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a cutting device for reagent kit production, including a placement platform, a connecting frame plate at the upper end of the placement platform, the placement platform and the connecting frame plate being fixed together by bolts, a plurality of guide posts slidably arranged inside the connecting frame plate, a cutting blade arranged between the lower ends of the plurality of guide posts 1, a plurality of guide grooves 1 opened inside the placement platform each having a guide post 2, a push plate slidably arranged between the plurality of guide posts 2, a plurality of guide grooves 2 opened inside the placement platform each having a guide post 3, a positioning plate arranged between the plurality of adjacent guide posts 3, the left and right positions of the two positioning plates corresponding, a driving mechanism at the lower end of the placement platform, the driving mechanism being able to drive the push plate and the positioning plate to move, a hydraulic push rod 1 at the upper end of the connecting frame plate, the telescopic end of the hydraulic push rod 1 being connected to the upper end of the cutting blade.

[0006] The drive mechanism includes a transverse mounting frame plate located at the lower end of the placement platform. A lead screw 1, which is threadedly connected to a push plate, is rotatably mounted inside the transverse mounting frame plate. A longitudinal mounting frame plate is located at the lower end of the placement platform. A lead screw 2, which is rotatably mounted inside the longitudinal mounting frame plate, is mounted inside the longitudinal mounting frame plate. Two positioning plates are threadedly connected to the corresponding front and rear ends of the lead screw 2, respectively. Drive units are located on the left side of the transverse mounting frame plate and the rear side of the longitudinal mounting frame plate, respectively. Each drive unit includes a motor 1 mounted on the transverse mounting frame plate. The output shaft of motor 1 is connected to the left side of lead screw 1 via a coupling. A motor 2 is located on the rear side of the longitudinal mounting frame plate. The output shaft of motor 2 is connected to the rear end of lead screw 2 via a coupling.

[0007] As a further improvement of this utility model, the placement platform has a docking groove inside, which corresponds to the upper and lower positions of the cutting blade.

[0008] As a further improvement of this utility model, a hydraulic push rod 2 is provided at the upper end of the connecting frame plate, and a pressure plate is provided on the telescopic end of the hydraulic push rod 2. Multiple guide posts 4 are provided inside the connecting frame plate, and the lower ends of the multiple guide posts 4 are respectively connected to the upper end of a pressure plate. The guide posts 4 and the pressure plate are fixed together by welding.

[0009] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0010] Firstly, by placing the reagent kit stacks to be cut on the placement table, the motor is turned on, and the output shaft drives the lead screw to rotate, which in turn moves the pusher plate forward under the constraint of the guide post 2, pushing the reagent kit stack to the lower end of the cutter. After moving it to the upper end of the appropriate cutting position, the electric pusher is turned off. Then, the motor is turned on again, and the output shaft drives the lead screw to rotate, which in turn moves the positioning plates on both sides closer together under the constraint of the guide post 3, thus neatly positioning the reagent kit stack. This can automatically neatly push and cut the stacked reagent kits, greatly shortening the time required for each cycle, improving the overall efficiency of reagent kit cutting, and reducing reliance on manual operation. This not only reduces labor costs but also reduces problems caused by human error.

[0011] Secondly, by controlling the operation of hydraulic push rod two, the telescopic end drives the pressure plate to move downward under the restriction of guide post four and contact the reagent kit material stack, fixing its upper end. Then, by controlling the operation of hydraulic push rod one, the telescopic end drives the cutting blade to move downward under the restriction of limit post one, which can realize the limiting and fixing cutting of reagent kit material stack, making the reagent kit material stack cut more neatly.

[0012] Third, after the cutting blade has finished cutting the reagent kit stack, the system can avoid contact with the placement platform to prevent damage caused by the cutting blade making hard contact with the placement platform. Attached Figure Description

[0013] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0014] Figure 1 This is a schematic diagram of the structure of this utility model;

[0015] Figure 2 This is a front sectional view of the present invention.

[0016] Figure 3 This is a top view of the structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the structure of this utility model from a bottom view.

[0018] In the diagram: 101, placement platform; 102, connecting frame plate; 103, guide post one; 104, cutting blade; 105, hydraulic push rod one; 106, docking slot; 201, longitudinal mounting frame plate; 202, positioning plate; 203, push plate; 204, transverse mounting frame plate; 205, lead screw one; 206, motor one; 207, lead screw two; 208, guide post two; 209, motor two; 210, guide post three; 301, guide post four; 302, hydraulic push rod two; 303, pressure plate. Detailed Implementation

[0019] To better understand this utility model, the following embodiments further illustrate its content, but the scope of protection of this utility model is not limited to the embodiments described below. Numerous specific details are set forth in the following description to provide a more thorough understanding of this utility model. However, it will be apparent to those skilled in the art that this utility model can be practiced without one or more of these details.

[0020] like Figure 1 , 2As shown in Figure 3, a cutting device for reagent kit production includes a placement platform 101. A connecting frame plate 102 is provided at the upper end of the placement platform 101. Multiple guide posts 103 are slidably arranged inside the connecting frame plate 102. A cutting blade 104 is arranged between the lower ends of the multiple guide posts 103. The guide posts 103 and the cutting blade 104 are fixed by welding. Multiple guide grooves 1 opened inside the placement platform 101 are each provided with a guide post 208. A push plate 203 is slidably arranged between the multiple guide posts 208. Multiple guide grooves 2 opened inside the placement platform 101 are each provided with a guide post 310. A positioning plate 202 is respectively arranged between the multiple adjacent guide posts 310. A driving mechanism is provided at the lower end of the placement platform 101. The driving mechanism can drive the push plate 203 and the positioning plate 202 to move. A hydraulic push rod 105 is provided at the upper end of the connecting frame plate 102. The telescopic end of the hydraulic push rod 105 is connected to the upper end of the cutting blade 104.

[0021] like Figure 2 , 3 As shown in Figure 4, the driving mechanism includes a transverse mounting frame plate 204 disposed at the lower end of the placement platform 101. A lead screw 205, which is threadedly connected to the push plate 203, is rotatably disposed inside the transverse mounting frame plate 204. A longitudinal mounting frame plate 201 is disposed at the lower end of the placement platform 101. A lead screw 207 is rotatably disposed inside the longitudinal mounting frame plate 201. Two positioning plates 202 are threadedly connected to the front and rear corresponding ends of the lead screw 207, respectively. Driving units are disposed on the left side of the transverse mounting frame plate 204 and the rear side of the longitudinal mounting frame plate 201, respectively. The driving unit includes a motor 206 disposed on the transverse mounting frame plate 204. The output shaft of the motor 206 is connected to the left side of the lead screw 205 through a coupling. A motor 209 is disposed on the rear side of the longitudinal mounting frame plate 201. The output shaft of the motor 209 is connected to the rear end of the lead screw 207 through a coupling.

[0022] like Figure 1 , 2 As shown, a hydraulic push rod 302 is provided at the upper end of the connecting frame plate 102, and a pressure plate 303 is provided on the telescopic end of the hydraulic push rod 302. Multiple guide posts 301 are provided inside the connecting frame plate 102, and the lower ends of the multiple guide posts 301 are respectively connected to the upper end of a pressure plate 303.

[0023] By placing the reagent kit stack to be cut on the placement platform 101, the motor 206 is turned on and the output shaft drives the lead screw 205 to rotate, which in turn drives the push plate 203 to move forward under the constraint of the guide post 208, pushing the reagent kit stack to the lower end of the cutter 104 and moving it to the upper end of the appropriate cutting position. Then the electric push rod is turned off. Next, the motor 209 is turned on and the output shaft drives the lead screw 207 to rotate, which in turn drives the positioning plates 202 on both sides to move closer to each other under the constraint of the guide post 210, thus positioning the reagent kit stack neatly.

[0024] Subsequently, the hydraulic push rod 2 302 is opened and operated. The telescopic end drives the pressure plate 303 to move downward under the restriction of the guide post 4 301 and contact the reagent kit material stack, fixing its upper end. Then, the hydraulic push rod 1 105 is opened and operated. The telescopic end drives the cutting blade 104 to move downward under the restriction of the limit post 1, realizing the cutting of the reagent kit material stack. The oil inlet pipes of hydraulic push rod 1 105 and hydraulic push rod 2 302 are respectively connected to the external hydraulic pump.

[0025] According to another embodiment of the present invention, such as Figure 1 , 4 As shown, the placement platform 101 has a docking slot 106 inside, and the cutting blade 104 can avoid the cutting blade 104 after the reagent kit stack is cut.

[0026] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.

Claims

1. A cutting device for reagent kit production, comprising a stage (101), characterized in that: The upper end of the placement platform (101) is provided with a connecting frame plate (102). Multiple guide posts (103) are slidably arranged inside the connecting frame plate (102). A cutting blade (104) is arranged between the lower ends of the multiple guide posts (103). Multiple guide grooves (208) are provided inside the placement platform (101). A push plate (203) is slidably arranged between the multiple guide posts (208). Multiple guide grooves (210) are provided inside the placement platform (101). A positioning plate (202) is arranged between the multiple adjacent guide posts (210). The lower end of the placement platform (101) is provided with a driving mechanism that can drive the push plate (203) and the positioning plate (202) to move.

2. The cutting device for reagent kit production as described in claim 1, characterized in that: The driving mechanism includes a transverse mounting frame plate (204) disposed at the lower end of the placement platform (101). A lead screw (205) is rotatably disposed inside the transverse mounting frame plate (204) and threadedly connected to the push plate (203). A longitudinal mounting frame plate (201) is disposed at the lower end of the placement platform (101). A lead screw (207) is rotatably disposed inside the longitudinal mounting frame plate (201). Two positioning plates (202) are threadedly connected to the front and rear corresponding ends of the lead screw (207) respectively. A driving unit is disposed on the left side of the transverse mounting frame plate (204) and the rear side of the longitudinal mounting frame plate (201).

3. The cutting device for reagent kit production as described in claim 2, characterized in that: The drive unit includes a motor (206) mounted on a transverse mounting frame (204), the output shaft of which is connected to the left side of a lead screw (205) via a coupling, and a motor (209) mounted on the rear side of a longitudinal mounting frame (201), the output shaft of which is connected to the rear end of a lead screw (207) via a coupling.

4. The cutting device for reagent kit production as described in claim 1, characterized in that: The upper end of the connecting frame plate (102) is provided with a hydraulic push rod (105), and the telescopic end of the hydraulic push rod (105) is connected to the upper end of the cutting blade (104).

5. A cutting device for reagent kit production as described in claim 1, characterized in that: The upper end of the connecting frame plate (102) is provided with a hydraulic push rod two (302), and a pressure plate (303) is provided on the telescopic end of the hydraulic push rod two (302).

6. A cutting device for reagent kit production as described in claim 5, characterized in that: The connecting frame plate (102) is provided with a plurality of guide posts (301) inside, and the lower ends of the plurality of guide posts (301) are respectively connected to the upper end of a pressure plate (303).

7. A cutting device for reagent kit production as described in claim 1, characterized in that: The placement platform (101) has a docking slot (106) inside.