Temporary mounting sheet storage device

By designing a temporary slide storage device with a side opening and a manual push mechanism, the problems of sliding and contamination during the transfer and storage of temporary slides are solved, enabling convenient and stable handling and storage. This device is suitable for temporary slide loading operations in scientific research experiments.

CN224546944UActive Publication Date: 2026-07-24HUNAN INST OF GARDENING
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN INST OF GARDENING
Filing Date
2025-07-24
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Temporary slides are prone to slipping and contamination during transfer and storage, leading to damage to the coverslip. Existing devices are not suitable for the stable handling and storage of temporary slides.

Method used

A temporary slide storage device was designed, which adopts a storage box with a side opening and a hand-operated push structure, combined with ferrite magnets, rubber sheets, conical pinch pieces, polyurethane microporous elastomers and helical springs to achieve stable removal and placement of individual temporary slides.

Benefits of technology

It enables convenient and stable removal and placement of temporary slides, reduces the difficulty of operation, is suitable for novice experimenters, and reduces the risk of specimen damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of temporary mounting piece storage device, including temporary mounting piece storage box and plastic fixing frame, temporary mounting piece storage box right end is equipped with opening, and multiple partition plates are fixed longitudinally in opening, temporary mounting piece placement notch is formed between multiple partition plates, temporary mounting piece carrier plate is slidably installed in the inside lower end of multiple temporary mounting piece placement notch, temporary mounting piece storage box upper end is fixed with plastic fixing frame by hot melt adhesive, temporary mounting piece storage box upper end is connected with the inside of plastic fixing frame, this design solves the problem that temporary mounting piece is easily contaminated and damaged during moving and storing, and is simple and quick to operate, requires lower proficiency for experimental personnel, and is easy to promote. The utility model makes temporary mounting piece storage box open on side, and cooperates with hand-pushing structure, which can realize complete taking out or placing of temporary mounting piece.
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Description

Technical Field

[0001] This utility model is a temporary slide storage device, belonging to the field of temporary slide technology. Background Technology

[0002] In scientific research experiments, cell observation is a fundamental research tool in fields such as life sciences, medicine, and materials science. It can reveal cell structure and function, dynamically monitor life activities, study and diagnose disease mechanisms, and monitor the environment and ecology.

[0003] Temporary mounts are simple, quick, and inexpensive to prepare, and are widely used in experiments such as cell and microbial observation, chromosome karyotype analysis, and pathological biopsy specimen testing. They are frequently used in teaching demonstrations, cell research, and preliminary testing. However, because temporary mounts are not sealed, the coverslips are prone to slipping and contamination during transfer and storage, which can damage the specimen.

[0004] Chinese patent CN219506480U discloses a sample analysis slide isolation and storage device. When slides are needed for pharmacokinetic experiments, the device uses tweezers to remove the slides from the storage box and place them on a cleaning box. A cleaning plate is then used to clean the surface of the slides, preventing them from falling and being damaged during cleaning. After cleaning, the slides can be easily pushed out of the cleaning box for convenient retrieval. However, this device is mainly designed for handling ordinary slides. When used for temporary slide mounting, it is prone to causing coverslips to slip and damage the specimen, making it inconvenient to use and promote. There is an urgent need for a temporary slide storage device to solve the above-mentioned problems. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a temporary tablet storage device to solve the problems mentioned in the background art. This utility model makes the temporary tablet storage box open on the side and is equipped with a manual push structure, which can realize the removal or placement of a single temporary tablet.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a temporary tablet storage device, comprising a temporary tablet storage box and a plastic adhesive frame. The temporary tablet storage box has an opening at its right end, and multiple partitions are longitudinally fixed within the opening. Temporary tablet placement slots are formed between the partitions. Temporary tablet carrier plates are slidably installed at the lower ends of each of the temporary tablet placement slots. The plastic adhesive frame is fixed to the upper end of the temporary tablet storage box with hot melt adhesive, and the upper end of the temporary tablet storage box communicates with the interior of the plastic adhesive frame. Next, multiple strip-shaped operating slots are provided on the upper right side of the plastic adhesive frame. The left end of each of the multiple strip-shaped operating slots is bonded with a first ferrite magnet block by epoxy resin. The right end of each of the multiple strip-shaped operating slots is bonded with a polyurethane microporous elastomer. The polyurethane microporous elastomer has a horizontally formed spring groove inside each of the multiple spring grooves. A helical spring is installed in each of the multiple spring grooves. A second ferrite magnet block is installed at the left end connection of each of the multiple polyurethane microporous elastomers and multiple helical springs. A bent connecting plate is fixed to the lower end of each of the multiple second ferrite magnet blocks.

[0007] Furthermore, a rubber sheet is adhered to the right end face of each of the first ferrite magnet blocks.

[0008] Furthermore, each of the second ferrite magnet blocks has a conical pinch piece attached to its upper end.

[0009] Furthermore, each of the temporary substrate carriers has a sheet-like cover longitudinally attached to its right side, and the sheet-like covers are respectively longitudinally engaged on the right side of the temporary substrate placement slots.

[0010] Furthermore, multiple second ferrite magnet blocks are slidably positioned within multiple strip-shaped operating slots.

[0011] Furthermore, the multiple bent connecting plates are respectively fixed to the upper left side of the multiple temporary mounting plates.

[0012] The beneficial effects of this utility model are as follows: This utility model provides a temporary slide storage device. Because it adds a temporary slide storage box, a first ferrite magnet block, a rubber sheet, a second ferrite magnet block, a conical pinch piece, a polyurethane microporous elastomer, a spiral spring, a bending connecting plate, a temporary slide carrier plate, and a sheet-like cover, the structure is reasonable. The temporary slide storage box has a side opening, and with the addition of a hand-operated push mechanism, it can easily take out or place a single temporary slide. Moreover, the process of taking out or placing the slide is relatively stable, the operation is simple, and even novice experimentalists can operate it, making it highly practical. Attached Figure Description

[0013] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0014] Figure 1 This is a schematic diagram of the structure of a temporary substrate storage device according to the present invention;

[0015] Figure 2 This is a schematic diagram of the connection structure of the second ferrite magnet block in a temporary substrate storage device according to the present invention.

[0016] Figure 3 This is a schematic diagram of the protruding structure of a single temporary glass slide carrier plate in a temporary slide storage device according to the present invention.

[0017] In the diagram: 1-Temporary tablet storage box, 2-Divider plate, 3-Plastic adhesive frame, 4-Strip operation slot, 5-First ferrite magnet block, 6-Rubber sheet, 7-Second ferrite magnet block, 8-Conical pinch plate, 9-Polyurethane microporous elastomer, 10-Spring slot, 11-Helical spring, 12-Bending connecting plate, 13-Temporary tablet carrier plate, 14-Sheet cover, 15-Temporary tablet placement slot. Detailed Implementation

[0018] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0019] Please see Figures 1-3 This utility model provides a technical solution: a temporary tablet storage device, including a temporary tablet storage box 1 and a plastic adhesive frame 3. The temporary tablet storage box 1 has an opening at its right end, and multiple partition plates 2 are longitudinally fixed inside the opening, forming temporary tablet placement slots 15 between the partition plates 2. Temporary tablet carrier plates 13 are slidably installed at the lower end of each of the multiple temporary tablet placement slots 15. The plastic adhesive frame 3 is fixed to the upper end of the temporary tablet storage box 1 by hot melt adhesive. The upper end of the temporary tablet storage box 1 is connected to the interior of the plastic adhesive frame 3. Multiple strip-shaped operating slots 4 are opened on the right side of the upper end of the plastic adhesive frame 3. The left end of each component is bonded with an epoxy resin first ferrite magnet block 5. The right end of each of the multiple strip-shaped operating grooves 4 is bonded with a polyurethane microporous elastomer 9. Each of the multiple polyurethane microporous elastomers 9 has a horizontally opened spring groove 10. Each of the multiple spring grooves 10 is equipped with a helical spring 11. The left end of each of the multiple polyurethane microporous elastomers 9 and the multiple helical springs 11 is connected with a second ferrite magnet block 7. The lower end of each of the multiple second ferrite magnet blocks 7 is fixed with a bent connecting plate 12. This design solves the problem of easy contamination and damage during temporary slide movement and storage. It is also simple and quick to operate, requires less skill from the experimenters, and is easy to promote.

[0020] In the first embodiment of this utility model: A rubber sheet 6 is adhered to the right end face of each of the multiple first ferrite magnet blocks 5. The added rubber sheet 6 prevents the left side of each of the multiple second ferrite magnet blocks 7 from directly attracting the multiple first ferrite magnet blocks 5, thereby preventing wear at the attraction point. A conical pinch piece 8 is adhered to the upper end of each of the multiple second ferrite magnet blocks 7. The added conical pinch piece 8 facilitates the experimenter to pull the second ferrite magnet blocks 7 to the left or right. A sheet-like cover 14 is longitudinally adhered to the right side of each of the multiple temporary slide carrier plates 13. The multiple sheet-like covers 14 are respectively longitudinally engaged on the right side of the multiple temporary slide placement slots 15. The addition of the multiple sheet-like covers 14 longitudinally engaged on the right side of the multiple temporary slide placement slots 15 can block the right side of the temporary slide placement slots 15 when the temporary slides are placed. Multiple second ferrite magnet blocks 7 are slidably positioned within multiple strip-shaped operating slots 4. By adding these multiple second ferrite magnet blocks 7, which can only move left and right, the latter can only move in these directions. Multiple bent connecting plates 12 are fixed to the upper left side of multiple temporary substrate carriers 13. By fixing these bent connecting plates 12 to the upper left side of the temporary substrate carriers 13, when the second ferrite magnet blocks 7 move left or right, the bent connecting plates 12 can drive the temporary substrate carriers 13 to move synchronously.

[0021] As a second embodiment of this utility model: when it is necessary to store and place the temporary slide, the conical pinch plate 8 is moved to the right, forcing the second ferrite magnet block 7 to separate from the rubber sheet 6, and causing the magnetic adsorption effect between the second ferrite magnet block 7 and the first ferrite magnet block 5 to be broken. When the second ferrite magnet block 7 moves to the right in the strip-shaped operating groove 4, it can squeeze the polyurethane microporous elastomer 9 and the helical spring 11. Utilizing the slow rebound principle: viscoelastic materials have a "hysteresis effect" - when subjected to force deformation, the friction between the molecular chains of the polyurethane microporous elastomer 9 will consume energy. During this process, the temporary slide carrier plate 13 and the sheet-like cover 14 can be moved to the right by bending the connecting plate 12 (see reference). Figure 3 At this point, the experimenter can place the temporary slide horizontally within the temporary slide carrier 13. Afterward, slowly push the conical pinch plate 8 to the left. The polyurethane microporous elastomer 9 and the helical spring 11 will then return to their original position to the left. When the helical spring 11 rebounds, the viscous resistance of the polyurethane microporous elastomer 9 will hinder the rapid extension of the helical spring 11, forcing the rebound speed to slow down until the second ferrite magnet 7 re-adheres to the rubber sheet 6 and indirectly attracts the first ferrite magnet 5. At this point, the temporary slide carrier 13 is completely moved into the temporary slide placement slot 15, and the sheet-like cover 14 is longitudinally engaged on the right side of the temporary slide placement slot 15 (see reference). Figure 1 ).

[0022] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0023] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A temporary slide storage device, comprising a temporary slide storage box (1) and a plastic adhesive frame (3), characterized in that: The temporary slide storage box (1) has an opening at its right end, and multiple partition plates (2) are fixed longitudinally inside the opening. The partition plates (2) form temporary slide placement slots (15). Temporary slide carrier plates (13) are slidably installed at the lower end of each of the temporary slide placement slots (15). A plastic adhesive frame (3) is fixed to the upper end of the temporary slide storage box (1) by hot melt adhesive. The upper end of the temporary slide storage box (1) is connected to the interior of the plastic adhesive frame (3). Multiple strip-shaped operating slots (4) are opened on the right side of the upper end of the plastic adhesive frame (3). The left end of each groove (4) is glued with epoxy resin to form a first ferrite magnet block (5). The right end of each of the multiple strip-shaped operating grooves (4) is glued with a polyurethane microporous elastomer (9). Each of the multiple polyurethane microporous elastomers (9) has a horizontally opened spring groove (10). Each of the multiple spring grooves (10) is equipped with a helical spring (11). A second ferrite magnet block (7) is installed at the left end connection of each of the multiple polyurethane microporous elastomers (9) and the multiple helical springs (11). A bent connecting plate (12) is fixed at the lower end of each of the multiple second ferrite magnet blocks (7).

2. The temporary substrate storage device according to claim 1, characterized in that: Each of the first ferrite magnet blocks (5) has a rubber sheet (6) attached to its right end face.

3. The temporary substrate storage device according to claim 1, characterized in that: Each of the second ferrite magnet blocks (7) has a conical pinch piece (8) attached to its upper end.

4. A temporary substrate storage device according to claim 1, characterized in that: Each of the temporary substrate carriers (13) has a sheet-like cover (14) longitudinally attached to its right side, and the sheet-like covers (14) are respectively longitudinally secured to the right side of the temporary substrate placement slots (15).

5. A temporary substrate storage device according to claim 1, characterized in that: Multiple second ferrite magnet blocks (7) slide within multiple strip-shaped operating slots (4).

6. A temporary wafer storage device according to claim 1, characterized in that: The multiple bending connecting plates (12) are respectively fixed to the upper left side of the multiple temporary mounting plates (13).