Simple internal peep-proof mechanical structure

By installing a baffle structure controlled by a rotary drive motor and photoelectric switch at the entrance of the medical testing equipment, the problems of internal structural leakage and improper placement of slides were solved, thus achieving privacy protection for the equipment and standardized placement of the slide box.

CN223822386UActive Publication Date: 2026-01-23BOTOU YINGCONG (SUZHOU) TECH CO LTD
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Patent Information

Application Number
CN202520095818.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-01-23
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

After the medical testing equipment has finished testing, the slide box is directly removed by the operator, which allows the internal structure of the equipment to be seen, and the equipment may be damaged if the slides are not placed in the correct position.

Method used

A simple internal anti-peeping mechanical structure is installed at the entrance of the medical testing equipment, including a rotary drive motor, a transmission shaft, a lifting gear, and a baffle. The baffle is raised and lowered by a photoelectric switch to ensure that the inside of the equipment is not viewed during the entry and exit of the slide box and to prevent the slides from being misplaced.

Benefits of technology

It achieves the protection of the internal structure of the equipment from being seen during the process of moving the slide box in and out, while ensuring that the slides in the slide box are evenly placed to avoid damage to the equipment. The structure is simple and easy to assemble and operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a simple internal peep-proof mechanical structure which comprises a warehousing vertical plate, at least one slide box channel is arranged on the warehousing vertical plate, two ends of the warehousing vertical plate along the length direction are respectively provided with a side vertical plate, and a rotary driving motor is arranged on each side vertical plate; the transmission shaft is located between the two side vertical plates and rotationally connected to each side vertical plate, and one end of the transmission shaft is connected with the driving end of the rotary driving motor; a lifting gear is arranged on the transmission shaft and close to the inner side of the vertical plate on each side; the side edge, away from the warehousing vertical plate, of each side vertical plate is slidably connected with a rack in the vertical direction, each rack is meshed with the corresponding lifting gear, and a baffle is connected between the two racks. According to the mechanical structure provided by the utility model, the problem that the internal structure of the medical detection equipment can be peeped due to the fact that the slide box is directly taken away by an operator after the detection of the medical detection equipment is finished can be solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to medical instrument technical field, especially a simple internal peep -proof mechanical structure. BACKGROUND

[0002] Usually, after the detection of medical detection equipment, the slide box is directly taken away by the operator, which causes the mechanical structure inside the equipment to be directly peeped from the outside, thus directly or indirectly causing the leakage of relevant information such as the internal structure of the medical detection equipment. In addition, usually, multiple slides are stacked in a slide box, so it is easy to cause the problem of equipment damage caused by the operator not putting the slide in place. CONTENT OF THE UTILITY MODEL

[0003] To solve the above technical problems, the utility model provides a simple internal peep -proof mechanical structure.

[0004] The technical scheme of the utility model is:

[0005] A simple internal peep -proof mechanical structure, characterized by comprising a warehouse entering vertical plate, at least one slide box channel is arranged on the warehouse entering vertical plate, one side vertical plate is arranged at each end of the warehouse entering vertical plate along the length direction, a rotating drive motor is arranged on the side vertical plate, a transmission shaft is located between the two side vertical plates and is rotationally connected to each side vertical plate, one end of the transmission shaft is connected to the driving end of the rotating drive motor, and a lifting gear is arranged on the transmission shaft and close to the inner side of each side vertical plate.

[0006] A rack is slidably connected to each side vertical plate away from the side edge of the warehouse entering vertical plate in the vertical direction, each rack is engaged with the lifting gear, and a baffle is connected between the two racks.

[0007] Further, an upper stop block is arranged at the upper end of each side vertical plate, a lower stop block is arranged at the lower end of each side vertical plate, a slide rod is connected between each upper stop block and the corresponding lower stop block, a sliding seat is slidably connected to each slide rod, and each rack is connected to the sliding seat.

[0008] Further, a linear bearing is sleeved in each sliding seat, and each linear bearing is slidably sleeved on each slide rod.

[0009] Further, an upper limiting strip is arranged on the baffle and close to the top end of the side vertical plate, a lower limiting strip is arranged on the sliding seat on the same side of the upper limiting strip, an upper limiting photoelectric switch is arranged at the upper end of the side vertical plate on the same side of the upper limiting strip, and a lower limiting photoelectric switch is arranged at the lower end of the side vertical plate.

[0010] Further, the warehouse entering vertical plate is provided with a slide box placing part in the direction of the baffle, and each slide box channel is arranged on the slide box placing part and penetrates the warehouse entering vertical plate.

[0011] Further, the baffle is provided with a proper distance from each slide channel.

[0012] Further, each rack is provided with a strip-shaped recess on the side away from the lifting gear, each strip-shaped recess is open to the baffle, and each strip-shaped recess is covered with a rack sheet metal, and the baffle is clamped in each strip-shaped recess on both sides in the length direction.

[0013] Further, the transmission shaft is provided with a transmission gear at one end after penetrating through one side stand plate.

[0014] The beneficial technical effects of the utility model are as follows:

[0015] The mechanical structure is used for the entry port of the detection bin of the medical detection equipment, and the slide channel and the entry port of the detection bin of the medical detection equipment are provided with the automatically-lifted baffle, so that the problem that the internal structure of the medical detection equipment can be viewed due to the fact that the slide channel is directly taken away by the operator after the medical detection equipment is detected is avoided; meanwhile, the upper and lower limit photoelectric switches are further provided on the mechanical structure, so that any slide in the slide channel is placed in place, and the problem of equipment damage is avoided. In addition, the mechanical structure is simple, convenient to assemble and produce, easy to operate, can realize single module or multiple module simultaneous installation and use, and is practical. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is the overall schematic view of the utility model when the slide channel is provided with the baffle and the baffle is in the falling closed state;

[0017] Figure 2 is Figure 1 is another angle schematic view;

[0018] Figure 3 is the overall schematic view of the utility model when the slide channel is provided with the baffle and the baffle is in the falling closed state;

[0019] Figure 4 is Figure 3 is the schematic view of the rack and the slide channel.

[0020] Wherein:

[0021] 001-Slide box, 002-Slide, 100-Intake stand, 101-Slide box placement section, 200-Slide box channel, 300-Side stand, 301-Upper stop, 302-Lower stop, 303-Slide rod, 304-Sliding seat, 3041-Linear bearing, 400-Rotary drive motor, 401-Motor gear, 500-Drive shaft, 501-Lifting gear, 502-Drive gear, 600-Rack, 700-Baffle, 800-Upper limit bar, 801-Lower limit bar, 802-Upper limit photoelectric switch, 803-Lower limit photoelectric switch. Detailed Implementation

[0022] In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.

[0023] This utility model provides a simple internal privacy-prevention mechanical structure, which is applied to the inlet of the testing chamber of a medical testing equipment. The slide box and the slides inside the slide box enter and exit the testing chamber of the medical testing equipment via this mechanical structure. Specifically, when placing the slide box into the mechanical structure, the slide box with its opening facing the inlet of the testing chamber of the medical testing equipment is positioned. The slide box 001 is a conventional slide box in the prior art, and its appearance is as follows... Figure 3 , Figure 4 As shown, its specific structure will not be described in detail here. The glass slide 002 is stacked in the glass slide box 001 with alternating layers.

[0024] like Figures 1-4 As shown, the mechanical structure of this utility model includes a rectangular entry plate 100. A rectangular slide box placement part 101 protrudes from the entry plate 100 towards the testing chamber of the medical testing equipment. The slide box placement part 101 has several slide box channels 200, each channel communicating with the entry plate 100 to allow slide boxes 001 to enter and exit the testing chamber of the medical testing equipment via the channel 200. This utility model has a total of five slide box channels 200. In actual use, the number of slide box channels 200 can be set according to specific needs, and there is no particular limitation.

[0025] The side plate 300 is fixedly connected to the both sides of the length direction of the loading plate 100, and the extension direction of the side plate 300 is close to the detection chamber direction of the medical detection equipment. The side plate 300 is fixedly connected with a rotating drive motor 400 on the outer side of the side plate 300 away from the slide box placing part 101. The driving end of the rotating drive motor 400 is connected with a motor gear 401, and the rotating drive motor 400 drives the motor gear 401 to rotate. A transmission shaft 500 is arranged between the two side plates 300, and the both ends of the transmission shaft 500 are rotatably connected to the two side plates 300. The transmission shaft 500 penetrates through the side plate 300 and is sleeved with a transmission gear 502. The transmission gear 502 is engaged with the motor gear 401. The lifting gear 501 is arranged on the transmission shaft 500 and close to the inner side of each side plate 300.

[0026] The top end of each side plate 300 is fixedly connected with an upper stop block 301, and the bottom of each side plate 300 is fixedly connected with a lower stop block 302. A slide rod 303 is fixedly connected between each upper stop block 301 and the corresponding lower stop block 302. A sliding seat 304 is slidably connected to each slide rod 303 in the vertical direction. A rack 600 is fixedly connected to each sliding seat 304. Each rack 600 is engaged with the corresponding lifting gear 501.

[0027] As a preferred, the rack 600 is fixedly connected with a sheet metal connector on the sliding seat 304. One side of the sheet metal connector is connected to the rack 600, and the other side is connected to the sliding seat 304.

[0028] Each rack 600 is a long rectangular bar. The side of each rack 600 facing the lifting gear 501 is provided with a sawtooth surface. The sawtooth surface of each rack 600 is engaged with the corresponding lifting gear 501. A straight groove is arranged on one straight angle side of the side of each rack 600 away from the lifting gear 501. The two straight grooves on the two racks 600 are arranged adjacent to each other. A rack sheet metal is fixedly connected on each straight groove to facilitate the clamping of the baffle 700. The baffle 700 is clamped in the straight groove of each rack 600 along the two side edges of the length direction of the baffle 700. In use, the baffle 700 is placed adjacent to the loading port of the detection chamber of the medical detection equipment. At this time, the baffle 700 is shielded between each slide box channel 200 and the loading port of the detection chamber of the medical detection equipment, and a proper distance is arranged between the baffle 700 and each slide box channel 200.

[0029] The rotating driving motor 400 is started to drive the motor gear 401, the transmission gear 502, each lifting gear 501 and the transmission shaft 500 to rotate, and meanwhile, each rack 600 engaged with the lifting gear 501 is lifted to drive the baffle 700 to synchronously rise, so that each slide box channel 200 is communicated with the entrance of the detection chamber of the medical detection equipment, and the slides in the detection chamber of the medical detection equipment can be put into the slide box on the slide box channel 200; when each rack 600 engaged with the lifting gear 501 is lowered, the baffle 700 is synchronously lowered, and the baffle 700 is shielded between each slide box channel 200 and the entrance of the detection chamber of the medical detection equipment, so that the internal structure of the detection chamber of the medical detection equipment is prevented from being exposed.

[0030] As a preferred, in order to increase the stability of the baffle 700 during the rising and lowering process, a linear bearing 3041 is sleeved in each sliding seat 304, and each linear bearing 3041 is slidably sleeved on the corresponding sliding rod 303.

[0031] In addition, in order to control the running position of the baffle and prevent the slide from being not put in place, an upper limit position strip 800 is arranged on the top end of the baffle 700 and away from the rotating driving motor 400, a lower limit position strip 801 is arranged on the sliding seat 304 on the same side of the upper limit position strip 800, and in order to fully utilize the space position, the lower limit position strip 801 is arranged on the inner side of the sliding seat 304 facing the slide box channel 200, an upper limit position photoelectric switch 802 is arranged on the outer side of the upper end of the corresponding side plate 300 on the same side of the upper limit position strip 800, and a lower limit position photoelectric switch 803 is arranged on the lower end of the side plate 300, and in order to fully utilize the space position, the lower limit position photoelectric switch 803 is arranged on the inner side of the side plate 300 facing the slide box channel 200, and the upper limit position photoelectric switch 802 is located in the running path of the upper limit position strip 800 and the lower limit position strip 801, and the lower limit position photoelectric switch 803 is located in the running path of the lower limit position strip 801. When the baffle 700 in the device structure of the utility model is closed to the in-place state, the upper limit position strip 800 is limited at the upper limit position photoelectric switch 802, and the lower limit position strip 801 is limited at the lower limit position photoelectric switch 803.

[0032] The operation process of the utility model is as follows:

[0033] 1) when the medical detection equipment detects the slide 002 inside the box needs to be put into the slide box 001, start the rotary drive motor 400, through the motor gear 401, transmission gear 502, each lifting gear 501 and transmission shaft 500 rotation drive each rack 600 and baffle 700 rise, the upper limit bar 800 remove the trigger of the upper limit photoelectric switch 802, when the lower limit bar 801 runs to the upper limit photoelectric switch 802, trigger the upper limit photoelectric switch 802, indicating that the baffle 700 is raised to the position, the rotary drive motor 400 stops running, the medical detection equipment detects the slide inside the box can be placed in the slide box;

[0034] 2) when the empty slide box or the slide box with slide needs to be taken out, control the rotary drive motor 400 to run, through the motor gear 401, transmission gear 502, each lifting gear 501 and transmission shaft 500 rotation drive each rack 600 and baffle 700 fall, when the lower limit bar 801 triggers the lower limit photoelectric switch 803 and the upper limit bar 800 triggers the upper limit photoelectric switch 802, the surface baffle 700 falls to the position, the slide box can be normally taken away; when the slide is not sent to the specified position of the slide box, the baffle 700 will be stopped by the slide in the process of falling, and cannot continue to fall; in addition, if only the lower limit bar 801 triggers the lower limit photoelectric switch 803, the upper limit photoelectric switch 802 is not triggered, it is indicated that the slide is not placed in the specified position, that is, the upper fault holding information will be uploaded, so that any slide in the slide box from top to bottom is placed in place.

[0035] The above only describes the preferred embodiments of the present application, and is not used to limit the present application, it should be pointed out that for ordinary skilled in the art, without departing from the technical principles of the present application, can make a number of improvements and modifications, these improvements and modifications should also be considered as the protection scope of the present application.

Claims

1. A simple internal privacy-prevention mechanical structure, characterized in that, The system includes an inlet support plate (100), which has at least one slide box channel (200). Each end of the inlet support plate (100) along its length has a side support plate (300), and a rotary drive motor (400) is mounted on one of the side support plates (300). A drive shaft (500) is located between the two side support plates (300) and rotatably connected to each side support plate (300). One end of the drive shaft (500) is connected to the drive end of the rotary drive motor (400). A lifting gear (501) is mounted on the drive shaft and near the inner side of each side support plate (300). Each of the side uprights (300) is slidably connected to a rack (600) in the vertical direction on the side away from the entry upright (100), each of the racks (600) meshes with a lifting gear (501), and a baffle (700) is connected between the two racks (600).

2. The simplified internal privacy-prevention mechanical structure according to claim 1, characterized in that, Each of the side panels (300) has an upper stop block (301) at its upper end and a lower stop block (302) at its lower end. A slide rod (303) is connected between each upper stop block (301) and its corresponding lower stop block (302). A slide seat (304) is slidably connected to each slide rod (303). Each rack (600) is connected to a slide seat (304).

3. The simplified internal privacy-prevention mechanical structure according to claim 2, characterized in that, Each of the sliding seats (304) is fitted with a linear bearing (3041), and each linear bearing (3041) is slidably fitted on each of the sliding rods (303).

4. A simple internal privacy-prevention mechanical structure according to claim 2, characterized in that, An upper limit bar (800) is provided on the baffle (700) and near the top of a side plate (300). A lower limit bar (801) is provided on a sliding seat (304) on the same side as the upper limit bar (800). An upper limit photoelectric switch (802) is provided at the upper end of a side plate (300) on the same side as the upper limit bar (800), and a lower limit photoelectric switch (803) is provided at its lower end.

5. A simple internal privacy-prevention mechanical structure according to claim 4, characterized in that, The entry plate (100) has a slide box placement part (101) protruding towards the baffle (700), and each slide box channel (200) is opened on the slide box placement part (101) and communicates with the entry plate (100).

6. A simplified internal privacy-prevention mechanical structure according to claim 5, characterized in that, The baffle (700) is provided at an appropriate distance from each of the slide box channels (200).

7. A simplified internal privacy-prevention mechanical structure according to claim 1, characterized in that, Each rack (600) has a strip-shaped groove on the side away from the lifting gear (501). The opening of each strip-shaped groove faces the baffle (700). Each strip-shaped groove is covered with rack sheet metal. The two sides of the baffle (700) along its length direction are respectively engaged in each strip-shaped groove.

8. A simplified internal privacy-prevention mechanical structure according to claim 1, characterized in that, One end of the drive shaft (500) passes through a side plate (300) and is fitted with a drive gear (502); the drive end of the rotary drive motor (400) is connected to a motor gear (401), and the motor gear meshes with the drive gear (502).