A slide conversion structure

CN224651657UActive Publication Date: 2026-08-18NINGBO CLINICAL PATHOLOGICAL DIAGNOSIS CENT
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Patent Information

Application Number
CN202522350053.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-08-18
Estimated Expiration
2035-11-05

AI Technical Summary

Technical Problem

[0004]将封好的玻片装入第一玻片架之后,统一送到载玻片整理机上进行整理,然而,理片机上有配套第二玻片架,由于载玻片放置在第一玻片架和第二玻片架之间的间距不同,较难将第一玻片架上的载玻片插入第二玻片架,操作者需要从第一玻片架上一片片得将载玻片取出,然后依次插入到第二玻片架上,比较麻烦,影响载玻片从第一玻片架转移至第二玻片架上的效率,有待改进

Benefits of technology

1、其中一个限位件关闭位于出料端处转换通道的开口,操作者将转换架放置在第一玻片架的上方,使得第一限位部与转换板一一对应,操作者同时握住转换架和第一玻片架并将转换架和第一玻片架进行翻转,第一玻片架内的载玻片受重力的影响插入相邻两个转换板之间,由于相邻两个进料端之间的距离与相邻两个第一限位部之间的最小距离相等,便于载玻片从第一玻片架转移至转换架。另一个限位件关闭位于进料端处转换通道的开口,限位件打开位于出料端处转换通道的开口,操作者将第二玻片架放置在转换架的上方,使得第二限位部与转换板一一对应,操作者同时握住转换架和第二玻片架并将转换架和第二玻片架进行翻转,转换架内的载玻片受重力的影响插入相邻两个第二限位部之间,相邻两个出料端之间的距离与相邻两个第二限位部之间的最小距离相等,便于载玻片从转换架转移至第二玻片架,避免了操作者从第一玻片架上一片片得将载玻片取出并插入第二玻片架,提高了载玻片从第一玻片架转移至第二玻片架上的效率。

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Abstract

This application discloses a slide transfer structure, relating to the technical field of transfer frames. The transfer frame includes a transfer channel with several transfer plates spaced apart on its inner wall. Each transfer plate has an inlet and an outlet. The distance between two adjacent inlet ends is equal to the minimum distance between two adjacent first limiting parts, and the distance between two adjacent outlet ends is equal to the minimum distance between two adjacent second limiting parts. The transfer frame has two limiting members, which respectively restrict the opening or closing of the transfer channel. The fact that the distance between two adjacent outlet ends is equal to the minimum distance between two adjacent second limiting parts facilitates the transfer of slides from the transfer frame to the second slide holder, avoiding the need for the operator to manually remove slides one by one from the first slide holder and insert them into the second slide holder, thus improving the efficiency of transferring slides from the first slide holder to the second slide holder.
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Description

Technical Field

[0001] This application relates to the technical field of transfer frames, and in particular to a slide transfer structure. Background Technology

[0002] A glass slide is a specially made rectangular thin glass slide. Its core function is to safely, flatly, and transparently support the tiny sample being observed under a microscope.

[0003] When sealing slides, the hospital's slide sealing machine places the sealed slides into its dedicated first slide holder. The first slide holder can hold 20 or 30 slides, and the closest distance between two adjacent slides is 1.76 mm.

[0004] After the sealed slides are placed into the first slide holder, they are sent to the slide sorting machine for sorting. However, the slide sorting machine has a matching second slide holder. Due to the different spacing between the slides placed on the first and second slide holders, it is difficult to insert the slides from the first slide holder into the second slide holder. The operator needs to take the slides out one by one from the first slide holder and then insert them into the second slide holder in turn, which is quite troublesome and affects the efficiency of transferring the slides from the first slide holder to the second slide holder. This needs to be improved. Utility Model Content

[0005] The purpose of this application is to provide a slide transfer structure to improve the efficiency of transferring slides from a first slide holder to a second slide holder.

[0006] The slide conversion structure provided in this application adopts the following technical solution: it includes a first slide holder and a second slide holder. The first slide holder is provided with a first mounting groove, and the inner wall of the first mounting groove is provided with a plurality of first limiting parts at intervals. The second slide holder is provided with a second mounting groove, and the inner wall of the second mounting groove is provided with a plurality of second limiting parts at intervals. The minimum distance between two adjacent first limiting parts is less than the minimum distance between two adjacent second limiting parts. It also includes a conversion frame, which is provided with a conversion channel. The inner wall of the conversion channel is provided with a plurality of conversion plates at intervals. The conversion plates are provided with a feeding end and a discharging end. The distance between two adjacent feeding ends is equal to the minimum distance between two adjacent first limiting parts, and the distance between two adjacent discharging ends is equal to the minimum distance between two adjacent second limiting parts. The conversion frame is provided with two limiting members, which are used to restrict the opening or closing of the conversion channel, respectively.

[0007] By adopting the above technical solution, one of the limiting components closes the opening of the conversion channel located at the discharge end. The operator places the conversion frame above the first slide holder, so that the first limiting part corresponds one-to-one with the conversion plate. The operator holds the conversion frame and the first slide holder at the same time and flips the conversion frame and the first slide holder. The slide in the first slide holder is inserted between two adjacent conversion plates due to the influence of gravity. Since the distance between two adjacent feed ends is equal to the minimum distance between two adjacent first limiting parts, it is convenient for the slide to be transferred from the first slide holder to the conversion frame. Another limiting component closes the opening of the conversion channel at the feed end and opens the opening of the conversion channel at the discharge end. The operator places the second slide holder above the conversion frame, so that the second limiting part corresponds one-to-one with the conversion plate. The operator simultaneously holds the conversion frame and the second slide holder and flips them over. The slides in the conversion frame are inserted between two adjacent second limiting parts due to gravity. The distance between two adjacent discharge ends is equal to the minimum distance between two adjacent second limiting parts, which facilitates the transfer of slides from the conversion frame to the second slide holder. This avoids the operator having to take slides out one by one from the first slide holder and insert them into the second slide holder, thus improving the efficiency of transferring slides from the first slide holder to the second slide holder.

[0008] Optionally, the conversion frame is provided with four rotating parts, and one limiting member corresponds to two of the rotating parts. The limiting member includes a baffle and two rotating plates disposed on the baffle. The rotating plates are rotatably connected to the rotating parts.

[0009] By adopting the above technical solution, the operator applies force to the baffle, and the rotating plate rotates around the axis of the rotating part, so that the rotating plate covers the opening of the conversion channel. Thus, the opening or closing of the conversion channel is restricted by the rotation limiting component, which facilitates the control of the slide's entry and exit.

[0010] Optionally, the conversion frame is provided with four elastic limiting parts, each corresponding to one of the rotating plates. The rotating plate is provided with limiting holes, which are used to cooperate with the elastic limiting parts.

[0011] By adopting the above technical solution, when the rotating plate covers the opening of the conversion channel, the rotating plate applies force to the elastic limiting part. The elastic limiting part is compressed and undergoes elastic deformation and maintains the tendency of elastic reset until the elastic limiting part corresponds with the limiting hole. The elastic limiting part is then elastically reset and forced to be inserted into the limiting hole. The cooperation between the elastic limiting part and the limiting hole restricts the rotation of the rotating plate, thereby improving the stability of the baffle covering the opening of the conversion channel.

[0012] Optionally, the end of the elastic limiting portion away from the conversion frame is arc-shaped.

[0013] By adopting the above technical solution, during the rotation of the rotating plate, the rotating plate abuts against the arc-shaped end of the elastic limiting part, and the arc-shaped elastic limiting part is more likely to undergo elastic deformation.

[0014] Optionally, each of the conversion plates is provided with a guide portion, the feed end is located between the guide portion and the discharge end, and the distance between two adjacent guide portions gradually decreases towards the feed end.

[0015] By adopting the above technical solution, the conversion plate is equipped with a guide section and the distance between adjacent guide sections gradually decreases towards the feed end, so that the glass slide can be better guided when entering the feed end of the conversion channel, and enter the conversion channel more smoothly, thereby improving the efficiency of transferring the glass slide from the first slide holder to the second slide holder through the conversion frame.

[0016] Optionally, the number of the second slide holder is two.

[0017] By adopting the above technical solution, each slide has a number on one end. When the slide is mounted on the first slide holder, the number is visible outside the first slide holder. When the slide is transferred to the second slide holder, the number is visible inside the second slide holder. One second slide holder is placed on top of the other, and the operator simultaneously holds both second slide holders and flips them, transferring the slide from one second slide holder to the other. This ensures the slide number is visible outside the second slide holder, making it easy for the operator to observe the number.

[0018] Optionally, the distance between two adjacent first limiting portions decreases gradually in the direction away from the opening of the first mounting groove.

[0019] By adopting the above technical solution, the slide can be better guided when entering between two adjacent first limiting parts, and enter between two adjacent first limiting parts more smoothly, thereby improving the efficiency of the slide entering between two adjacent first limiting parts.

[0020] Optionally, the first slide holder is provided with two guide portions at intervals, the first limiting portion is located between the two guide portions, each guide portion is provided with a guide surface on the side away from the first limiting portion, and the distance between the two guide surfaces gradually decreases in the direction closer to the first limiting portion.

[0021] By adopting the above technical solution, the distance between the two guiding surfaces gradually decreases towards the first limiting part, which allows the slide to be better guided when entering the first slide holder and enter the first slide holder more smoothly, thereby improving the efficiency of the slide entering the first slide holder.

[0022] Optionally, each of the guide portions is provided with a plurality of limiting grooves, one of the limiting grooves corresponding to two adjacent first limiting portions, and the limiting grooves are used for inserting the glass slide.

[0023] By adopting the above technical solution, when the slide is inserted into the first slide holder, the slide is located in the limiting groove, and the outer surface of the slide is in contact with the inner wall of the limiting groove. The inner wall of the limiting groove restricts the movement of the slide, thereby improving the stability of the slide placed in the first slide holder.

[0024] Optionally, the inner wall of the limiting groove is provided with two guide surfaces, and the distance between the two guide surfaces gradually decreases in the direction away from the other guide part.

[0025] By adopting the above technical solution, the slide can be better guided when entering the limiting groove, and enter the limiting groove more smoothly, thereby improving the efficiency of the slide entering the limiting groove.

[0026] In summary, this application includes at least one of the following beneficial technical effects: 1. One of the limiting components closes the opening of the conversion channel at the discharge end. The operator places the conversion frame above the first slide holder, so that the first limiting part corresponds to the conversion plate. The operator holds the conversion frame and the first slide holder at the same time and flips them over. The slide in the first slide holder is inserted between two adjacent conversion plates due to gravity. Since the distance between two adjacent feed ends is equal to the minimum distance between two adjacent first limiting parts, it is convenient for the slide to be transferred from the first slide holder to the conversion frame. Another limiting component closes the opening of the conversion channel at the feed end and opens the opening of the conversion channel at the discharge end. The operator places the second slide holder above the conversion frame, so that the second limiting part corresponds one-to-one with the conversion plate. The operator simultaneously holds the conversion frame and the second slide holder and flips them over. The slides in the conversion frame are inserted between two adjacent second limiting parts due to gravity. The distance between two adjacent discharge ends is equal to the minimum distance between two adjacent second limiting parts, which facilitates the transfer of slides from the conversion frame to the second slide holder. This avoids the operator having to take slides out one by one from the first slide holder and insert them into the second slide holder, thus improving the efficiency of transferring slides from the first slide holder to the second slide holder.

[0027] 2. During the rotation process, the rotating plate abuts against the arc-shaped end of the elastic limiting part, and the arc-shaped elastic limiting part is more prone to elastic deformation. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.

[0029] Figure 2 This is a schematic diagram of the overall structure of the first slide holder.

[0030] Figure 3 yes Figure 2 An enlarged view of region A.

[0031] Figure 4 This is a schematic diagram of the overall structure of the second slide holder.

[0032] Figure 5 This is a schematic diagram of the overall structure of the conversion frame.

[0033] Figure 6 yes Figure 5 A sectional view.

[0034] Figure 7 yes Figure 6 A magnified view of region B.

[0035] Explanation of reference numerals in the attached drawings: 1. First slide holder; 11. First mounting groove; 12. First limiting part; 13. Guide part; 14. Guide surface; 15. Limiting groove; 16. Guide surface; 2. Conversion frame; 21. Conversion channel; 22. Conversion plate; 23. Feed end; 24. Discharge end; 25. Guide part; 26. Rotating part; 27. Elastic limiting part; 3. Second slide holder; 31. Second mounting groove; 32. Second limiting part; 4. Limiting element; 41. Baffle; 42. Rotating plate; 421. Limiting hole. Detailed Implementation

[0036] The following is in conjunction with the appendix Figure 1 -Appendix Figure 7 This application will be described in further detail.

[0037] This application discloses a slide conversion structure.

[0038] Combination Figure 1 , Figure 2 and Figure 3As shown, the system includes a first slide holder 1, a conversion holder 2, and two second slide holders 3. The first slide holder 1 has a first mounting groove 11. The bottom wall of the first mounting groove 11 is provided with a plurality of first limiting parts 12 spaced apart. The first limiting parts 12 are integrally formed with the first slide holder 1. The distance between two adjacent first limiting parts 12 gradually decreases in the direction away from the opening of the first mounting groove 11. The slide is held between two adjacent first limiting parts 12. The minimum distance between two adjacent first limiting parts 12 is 1.4 mm. The inner wall of the first mounting groove 11 is provided with two guide parts 13 facing each other. The guide parts 13 are integrally formed with the first slide holder 1. All the first limiting parts 12 are located between two guide parts 13. Each of the two guide parts 13 has a guide surface 14 on the side facing each other. The guide surface 14 is located on the side of the guide part 13 away from the first limiting part 12. The distance between the two guide surfaces 14 gradually decreases in the direction closer to the first limiting part 12. Each of the two guide sections 13 has a number of limiting grooves 15 spaced apart on the opposite side. Each limiting groove 15 corresponds to two adjacent first limiting sections 12. The slide is inserted into the limiting groove 15. The inner wall of the limiting groove 15 has two guide surfaces 16 facing each other. The distance between the two guide surfaces 16 gradually decreases in the direction away from the other first guide section 25.

[0039] like Figure 4 As shown, the second slide holder 3 has a second mounting groove 31. The bottom wall of the second mounting groove 31 is provided with a plurality of second limiting parts 32 at intervals. The second limiting parts 32 are integrally formed with the second slide holder 3. The distance between two adjacent second limiting parts 32 gradually decreases in the direction away from the opening of the second mounting groove 31. The slide is stuck between two adjacent second limiting parts 32. The minimum distance between two adjacent second limiting parts 32 is 2.1 mm.

[0040] Combination Figure 5 , Figure 6 and Figure 7 As shown, the conversion frame 2 has a conversion channel 21. Several conversion plates 22 are spaced apart on the inner wall of the conversion channel 21. Each conversion plate 22 is integrally formed with the conversion frame 2. The two ends of each conversion plate 22 are a feeding end 23 and a discharging end 24, respectively. The distance between two adjacent feeding ends 23 is equal to the minimum distance between two adjacent first limiting parts 12, and the distance between two adjacent discharging ends 24 is equal to the minimum distance between two adjacent second limiting parts 32. Each conversion plate 22 is provided with a guide part 25, which is integrally formed with the conversion plate 22. The feeding end 23 is located between the guide part 25 and the discharging end 24. The distance between two adjacent guide parts 25 gradually decreases towards the feeding end 23.

[0041] Combination Figure 5 , Figure 6 and Figure 7As shown, two limiting members 4 are connected to both ends of the conversion frame 2. The two limiting members 4 correspond to the two openings of the conversion channel 21, respectively, and limit the openings of the conversion channel 21 to open or close. Four rotating parts 26 are provided on the outer surface of the conversion frame 2. The rotating parts 26 are integrally formed with the conversion frame 2. One limiting member 4 corresponds to two rotating parts 26. The limiting member 4 includes a baffle 41 and two rotating plates 42 spaced apart on the baffle 41. The rotating plates 42 are integrally formed with the baffle 41. One rotating plate 42 corresponds to one rotating part 26. The rotating plates 42 and rotating parts 26 are rotatably connected. Four elastic limiting parts 27 are fixedly connected to the outer surface of the conversion frame 2. The end of the elastic limiting part 27 away from the conversion frame 2 is arc-shaped. The elastic limiting part 27 corresponds to the rotating plate 42 one by one. The rotating plate 42 has a limiting hole 421. The elastic limiting part 27 can be inserted into the limiting hole 421 and fit against the inner wall of the limiting hole 421.

[0042] The implementation principle of a slide conversion structure in this application embodiment is as follows: one of the limiting members 4 closes the opening of the conversion channel 21 located at the discharge end 24. The operator places the conversion frame 2 above the first slide holder 1, so that the first limiting part 12 corresponds one-to-one with the conversion plate 22. The operator holds the conversion frame 2 and the first slide holder 1 at the same time and flips the conversion frame 2 and the first slide holder 1. The slide in the first slide holder 1 is inserted between two adjacent conversion plates 22 due to the influence of gravity. Since the distance between two adjacent feed ends 23 is equal to the minimum distance between two adjacent first limiting parts 12, it is convenient for the slide to be transferred from the first slide holder 1 to the conversion frame 2. Another limiting member 4 closes the opening of the conversion channel 21 located at the feed end 23 and opens the opening of the conversion channel 21 located at the discharge end 24. The operator places the second slide holder 3 above the conversion frame 2, so that the second limiting part 32 corresponds one-to-one with the conversion plate 22. The operator simultaneously holds the conversion frame 2 and the second slide holder 3 and flips the conversion frame 2 and the second slide holder 3. The slides in the conversion frame 2 are inserted between two adjacent second limiting parts 32 due to the influence of gravity. The distance between two adjacent discharge ends 24 is equal to the minimum distance between two adjacent second limiting parts 32, which facilitates the transfer of slides from the conversion frame 2 to the second slide holder 3. This avoids the operator having to take out the slides one by one from the first slide holder 1 and insert them into the second slide holder 3, thus improving the efficiency of transferring slides from the first slide holder 1 to the second slide holder 3. Place one of the second slide holders 3 on top of the other second slide holder 3. The operator holds both slide holders 3 at the same time and flips them over, so that the slide is transferred from one slide holder 3 to the other, so that the slide number is exposed outside the slide holder 3, making it easy for the operator to observe the slide number.

[0043] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A slide conversion structure, comprising a first slide rack (1) and a second slide rack (3), the first slide rack (1) is provided with a first mounting groove (11), the inner wall of the first mounting groove (11) is provided with a plurality of first limiting portions (12) at intervals, the second slide rack (3) is provided with a second mounting groove (31), the inner wall of the second mounting groove (31) is provided with a plurality of second limiting portions (32) at intervals, the minimum distance between two adjacent first limiting portions (12) is smaller than the minimum distance between two adjacent second limiting portions (32), characterized in that: It also includes a conversion frame (2), which is provided with a conversion channel (21). The inner wall of the conversion channel (21) is provided with a plurality of conversion plates (22) spaced apart. The conversion plate (22) is provided with a feeding end (23) and a discharging end (24). The distance between two adjacent feeding ends (23) is equal to the minimum distance between two adjacent first limiting parts (12). The distance between two adjacent discharging ends (24) is equal to the minimum distance between two adjacent second limiting parts (32). The conversion frame (2) is provided with two limiting members (4). The two limiting members (4) are used to restrict the opening or closing of the conversion channel (21) respectively.

2. The slide conversion structure according to claim 1, characterized in that: The conversion frame (2) is provided with four rotating parts (26), and one limiting member (4) corresponds to two of the rotating parts (26). The limiting member (4) includes a baffle (41) and two rotating plates (42) disposed on the baffle (41). The rotating plates (42) are rotatably connected to the rotating parts (26).

3. The slide conversion structure according to claim 2, characterized in that: The conversion frame (2) is provided with four elastic limiting parts (27), each of which corresponds to one of the rotating plate (42). The rotating plate (42) is provided with limiting holes (421), which are used to cooperate with the elastic limiting parts (27).

4. The slide conversion structure according to claim 3, characterized in that: The end of the elastic limiting part (27) away from the conversion frame (2) is arc-shaped.

5. The slide conversion structure according to claim 1, characterized in that: Each of the conversion plates (22) is provided with a guide portion (25), the feed end (23) is located between the guide portion (25) and the discharge end (24), and the distance between two adjacent guide portions (25) gradually decreases towards the feed end (23).

6. The slide conversion structure according to claim 1, characterized in that: The number of the second slide holder (3) is two.

7. The slide conversion structure according to claim 1, characterized in that: The distance between two adjacent first limiting parts (12) gradually decreases in the direction away from the opening of the first mounting groove (11).

8. The slide conversion structure according to claim 1, characterized in that: The first slide holder (1) is provided with two guide portions (13) spaced apart. The first limiting portion (12) is located between the two guide portions (13). Each guide portion (13) has a guide surface (14) on the side away from the first limiting portion (12). The distance between the two guide surfaces (14) gradually decreases in the direction closer to the first limiting portion (12).

9. The slide conversion structure according to claim 8, characterized in that: Each of the guide portions (13) is provided with a plurality of limiting grooves (15), one of the limiting grooves (15) corresponds to two adjacent first limiting portions (12), and the limiting grooves (15) are used to insert the glass slide.

10. The slide conversion structure according to claim 9, characterized in that: The inner wall of the limiting groove (15) is provided with two guide surfaces (16), and the distance between the two guide surfaces (16) gradually decreases in the direction away from the other guide part (13).