Blister electronic turnover disc

By designing a transparent partition and positioning tube structure for the thermoformed electronic turnover tray, the problem of small electronic components being bumped during storage was solved, and convenient disassembly and reuse of the transparent partition were achieved, improving the user experience and environmental friendliness.

CN223632045UActive Publication Date: 2025-12-05SUZHOU SHICHENG MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520285104.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-12-05
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

Existing blister trays are prone to damage when storing small electronic components, and the individual disassembly of the carrier is cumbersome and not reusable.

Method used

A vacuum-formed electronic turnover tray was designed, comprising a tray body, transparent partitions, and positioning tube structures. The transparent partitions are fixed by positioning tubes and bottom pillars, and are stacked and connected using magnetic plates. The transparent partitions are reusable, and the positioning tube structure enhances the overall strength.

Benefits of technology

It provides effective protection for small electronic components, simplifies the disassembly process, improves ease of use, and supports the reuse of transparent partitions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a blister electronic turnover tray which comprises a tray body, the upper surface of the tray body is sunken downwards to form a first containing cavity, second containing cavities are evenly distributed in the upper surface of the first containing cavity, a transparent partition plate is arranged in the first containing cavity of the tray body, and the upper surface of the first containing cavity protrudes upwards to form a positioning pipe. A positioning hole matched with the positioning pipe is formed in the transparent partition plate, a bottom column piece is arranged in the positioning pipe and protrudes out of the positioning pipe, an upper plug piece is connected to the bottom column piece in a sliding mode, the bottom of the upper plug piece abuts against the upper surface of the transparent partition plate, and the top of the upper plug piece abuts against the bottom of the adjacent bottom column piece. After the transparent partition plate is opened, a plurality of elements can be taken at the same time, use is more convenient, the transparent partition plate can be repeatedly installed and utilized through use convenience of the upper plug piece and the bottom column piece, and the transparent partition plate can also be used as a table top for storage.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a blister tray, in particular to a blister electronic turnover tray. BACKGROUND

[0002] Blister trays are usually applied in the packaging industry, such as the transportation and turnover of electronic products, food or medical products, and a cavity for placing parts is usually arranged in the blister tray.

[0003] In the development process of electronic part turnover trays, PVC and other low-cost plastics were usually used in the early stage, only to meet the basic storage and transportation needs. With the development of the times, more environmentally friendly and durable materials such as PP, PE and PET are gradually used to improve the overall service life and environmental performance of the products.

[0004] In the specific use process, small and micro electronic components are usually placed in storage boxes for storage, but the parts are prone to bumping. Although the existing carrier tape method realizes single storage, it is relatively cumbersome to disassemble the carrier tape one by one, and the carrier tape cannot be reused. SUMMARY

[0005] The utility model aims at providing a blister electronic turnover tray, which has the advantages of good protection and reusability.

[0006] The above technical purpose of the utility model is realized by the following technical scheme: a blister electronic turnover tray, comprising a disc body, the upper surface of the disc body is recessed downward to form a first containing cavity, the upper surface of the first containing cavity is uniformly distributed with a second containing cavity, the second containing cavity is formed by recessing downward from the bottom of the first containing cavity, an upward protruding spacing belt is formed between adjacent second containing cavities, a transparent partition plate is arranged in the first containing cavity of the disc body, the upper surface of the first containing cavity is protruded upward to form a positioning tube, the transparent partition plate is provided with a positioning hole matched with the positioning tube, a bottom column piece is arranged in the positioning tube, the bottom column piece protrudes from the positioning tube, an upper plug piece is slidably connected to the bottom column piece, the bottom of the upper plug piece abuts against the upper surface of the transparent partition plate, and the top of the upper plug piece abuts against the bottom of the adjacent bottom column piece.

[0007] Preferably, the depth of the first containing cavity is 3-6mm, the thickness of the transparent partition plate is 0.5-1.5mm, and the positioning tube protrudes 1-2mm from the bottom of the first containing cavity.

[0008] By adopting the above technical scheme, the transparent partition plate is embedded in the first containing cavity, avoiding the shaking of the transparent partition plate in the first containing cavity.

[0009] Preferably, the positioning tube comprises an upper extension section, a bending section and a lower extension section in sequence, the upper extension section is located above the first accommodating cavity, one side of the bending section is connected with the upper extension section, the other side of the bending section is connected with the top of the lower extension section, the lower extension section is located in the upper extension section, and the lower extension section extends downward along the height direction below the first accommodating cavity, and the upper extension section and the lower extension section have a ring-shaped cross section.

[0010] By adopting the above technical scheme, compared with a single-layer structure formed by vacuum forming, the overall structural strength of the overlapped positioning tube is higher, and the length of the upper extension section is lower, facilitating the molding of vacuum forming.

[0011] Preferably, the upper extension section and the lower extension section are arranged to be inclined to the center.

[0012] By adopting the above technical scheme, the structural strength of the upper extension section and the lower extension section arranged to be inclined is higher.

[0013] Preferably, the upper surface of the bottom column member abuts against the bottom of the disc body located in the first accommodating cavity, the center of the bottom column member extends upward to form a connecting column, the connecting column is arranged concentrically with the lower extension section, the connecting column protrudes from the top of the upper extension section, and the top of the bottom column member is provided with an upper clamping groove for embedding the lower extension section.

[0014] By adopting the above technical scheme, the bottom column member plays a role in fixing and supporting the transparent partition plate through abutment and the upper clamping groove at the bottom.

[0015] Preferably, the upper clamping groove has a ring-shaped cross section, the upper clamping groove is arranged concentrically with the connecting column, and the inner side of the upper clamping groove is flush with the inner side of the connecting column.

[0016] By adopting the above technical scheme, when connected, the lower extension section is embedded into the upper clamping groove along the connecting column.

[0017] Preferably, the center of the upper plug member is provided with a sliding hole for the connecting column to pass through, the sliding hole is arranged through the axial direction of the upper plug member, the bottom of the upper plug member is recessed upward to form a stepped groove, the stepped groove is arranged concentrically with the sliding hole, and the stepped groove is matched with the top of the upper extension section and the bending section.

[0018] By adopting the above technical scheme, the stepped groove avoids excessive compression of the upper extension section when the upper plug member is pressed against the transparent partition plate, and the upper extension section is matched to play a role in positioning.

[0019] Preferably, the upper plug member is cylindrical, and the upper surface of the upper plug member is higher than the upper surface of the disc body.

[0020] By adopting the above technical scheme, the height can abut against the bottom of the bottom column member adjacent to the top.

[0021] Preferably, the inner circumferential surface of the sliding hole is radially recessed to form a first annular groove, the first annular groove is concentrically arranged with the sliding hole, the inner circumferential surface of the step groove is radially recessed to form a second annular groove, the first annular groove is provided with a first elastic ring abutting against the connecting column, and the second annular groove is provided with a second elastic ring matched with the upper extension section.

[0022] By adopting the above technical scheme, the elastic ring improves the friction between the two, so that the upper plug and the bottom column can be fixed to each other.

[0023] Preferably, the bottom of the bottom column is recessed upward along the axial direction to form a lower clamping groove, the lower clamping groove is provided with a magnetic plate, and the top of the connecting column is provided with a magnetic member matched with the magnetic plate.

[0024] By adopting the above technical scheme, the two are connected through magnetic attraction, the stacked turnover discs are stacked and connected, extrusion in the height direction is avoided, and the placement is more stable.

[0025] In summary, when stored and placed, the electronic components are placed in the second accommodating cavity, which is separated by the transparent partition plate, thereby protecting the electronic components. When used, the transparent partition plate can be opened, and compared with the carrier disc, multiple components can be taken at the same time, which is more convenient to use. The transparent partition plate can be repeatedly installed and used by using the upper plug and the bottom column, and can also be used for desktop storage. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is a top view of the embodiment;

[0027] Figure 2 is a partial longitudinal sectional view of the embodiment;

[0028] Figure 3 is a sectional view of the embodiment in a stacked state;

[0029] Figure 4 is Figure 3 is an enlarged view of part A shown in the figure;

[0030] Figure 5 is a sectional view of the embodiment from the side;

[0031] In the figure, 1. Disc body; 11. First receiving cavity; 12. Second receiving cavity; 13. Spacer strip; 2. Transparent partition; 21. Positioning hole; 3. Positioning tube; 31. Upper extension section; 32. Bending section; 33. Lower extension section; 4. Upper plug; 41. Sliding hole; 42. Step groove; 43. First annular groove; 44. First elastic ring; 45. Second annular groove; 46. Second elastic ring; 5. Bottom post; 51. Connecting post; 52. Magnetic component; 53. Upper locking groove; 54. Lower locking groove; 55. Magnetic suction plate. Detailed Implementation

[0032] The present invention will be further described in detail below with reference to the accompanying drawings.

[0033] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.

[0034] Example:

[0035] like Figures 1 to 5 As shown, a vacuum-formed electronic turntable includes a tray body 1, which is entirely formed by vacuum forming. The upper surface of the tray body 1 is recessed to form a first receiving cavity 11 for accommodating a transparent partition 2. Both the first receiving cavity 11 and the transparent partition 2 are rectangular. The transparent partition 2 is formed by cutting acrylic or vacuum-formed sheet. Second receiving cavities 12 are evenly distributed on the upper surface of the first receiving cavity 11. The second receiving cavities 12 are rectangular and are lower than the first receiving cavity 11. They are used to store electronic components. The second receiving cavities 12 are formed by the bottom of the first receiving cavity 11 being recessed downward. An upwardly protruding partition 13 is formed between adjacent second receiving cavities 12. The bottom of the partition 13 is a vacuum-formed cavity. The partition 13 is used to separate the second receiving cavities 12. The transparent partition 2 is disposed in the first receiving cavity 11 of the tray body 1. The height of the transparent partition 2 is slightly lower than the surface of the tray body 1.

[0036] like Figures 1 to 5 As shown, in order to fix the transparent partition 2, the upper surface of the first receiving cavity 11 protrudes upward to form a positioning tube 3 under the vacuum forming process. The transparent partition 2 is provided with a circular positioning hole 21 that cooperates with the positioning tube 3. A bottom column 5 is provided inside the positioning tube 3. The center of the bottom column 5 protrudes out of the positioning tube 3. An upper plug 4 is slidably connected to the bottom column 5. The bottom of the upper plug 4 abuts against the upper surface of the transparent partition 2. The upper plug 4 and the bottom column 5 cooperate to clamp the transparent partition 2 in the first receiving groove.

[0037] like Figure 3 and Figure 4As shown, in order to facilitate the positioning of the disc body 1 when stacking, the top of the upper plug 4 abuts the bottom of the adjacent bottom column 5, and in order to facilitate quick disassembly, the bottom of the bottom column 5 is recessed upward along the axial direction to form a lower clamping groove 54, and a magnetic plate 55 made of stainless steel is embedded in the lower clamping groove 54. The top of the connecting column 51 is provided with a magnetic member 52 cooperating with the magnetic plate 55, and the magnetic member 52 is a magnet.

[0038] As shown in the drawings, Figure 2 As shown, the structure of the positioning tube 3 is designed by using a three-section structure of the upper extension section 31, the curved section 32 and the lower extension section 33. The upper extension section 31 protrudes from the surface of the first accommodating cavity 11, the curved section 32 is used to connect the upper extension section 31 and the lower extension section 33, and the lower extension section 33 extends downward and is lower than the bottom of the second accommodating cavity 12. The specific structure is that the upper extension section 31 and the lower extension section 33 are both inclined to the center, the upper extension section 31 is located above the first accommodating cavity 11, one side of the curved section 32 is connected with the upper extension section 31, the other side of the curved section 32 is connected with the top of the lower extension section 33, the lower extension section 33 is located in the upper extension section 31, and the lower extension section 33 extends downward along the height direction below the first accommodating cavity 11. The cross-sectional shape of the upper extension section 31 and the lower extension section 33 is annular, and the height of the upper extension section 31 and the lower extension section 33 can be shortened according to the process requirements during the blow molding or the suction molding.

[0039] As shown above, the disc body 1 is used to place electronic components, and the size is small. The depth of the first accommodating cavity 11 is 3-6mm, the thickness of the transparent partition plate 2 is 0.5-1.5mm, and the positioning tube 3 protrudes 1-2mm from the bottom of the first accommodating cavity 11.

[0040] As shown in the drawings, Figures 2 to 4 As shown, in order to better fix the lower extension section 33, the upper surface of the bottom column 5 abuts the bottom of the disc body 1 located in the first accommodating cavity 11, the center of the bottom column 5 extends upward to form a connecting column 51, the connecting column 51 is concentrically arranged with the lower extension section 33, the connecting column 51 protrudes from the top of the upper extension section 31, and the top of the bottom column 5 is provided with an upper clamping groove 53 for embedding the lower extension section 33. The cross-sectional shape of the upper clamping groove 53 is annular, the upper clamping groove 53 is concentrically arranged with the connecting column 51, and the inner side of the upper clamping groove 53 is flush with the inner side of the connecting column 51.

[0041] As shown in the drawings, Figure 3 and Figure 4 As shown, the upper plug 4 is cylindrical, and the upper surface of the upper plug 4 is higher than the upper surface of the disc body 1. The overall structure of the upper plug 4 is that the center of the upper plug 4 is provided with a sliding hole 41 for the connecting column 51 to pass through, the sliding hole 41 is arranged along the axial direction of the upper plug 4, the bottom of the upper plug 4 is recessed upward to form a stepped groove 42, the stepped groove 42 is concentrically arranged with the sliding hole 41, the stepped groove 42 cooperates with the top of the upper extension section 31 and the curved section 32,

[0042] In order to avoid the difficulty in disassembling the rubber-made upper plug 4 and the bottom column 5, reduce the contact area between the sliding hole 41 and the connecting column 51, and realize the connection through the first and second elastic rings 44 and 46 made of rubber, the inner circumferential surface of the sliding hole 41 is radially recessed to form a first annular groove 43, the first annular groove 43 is concentrically arranged with the sliding hole 41, the inner circumferential surface of the stepped groove 42 is radially recessed to form a second annular groove 45, the first annular groove 43 is provided with the first elastic ring 44 abutting against the connecting column 51, and the second annular groove 45 is provided with the second elastic ring 46 cooperating with the upper extension section 31.

[0043] As shown in Figure 5 The side of the disc body 1 is recessed to form a receiving cavity for clamping the upper plug 4 and the bottom column 5 together.

[0044] Working principle:

[0045] After the turnover disc is produced, the upper plug 4 and the bottom column 5 are placed on the side of the disc body 1 in a matched manner; after the electronic component is placed in the second receiving cavity 12, the transparent partition plate 2 is placed on the first receiving cavity 11 to block the electronic component, then the bottom column 5 is placed below the positioning tube 3, the upper plug 4 is fixed with the bottom column 5 from above, the clamping and fixing of the transparent partition plate 2 are realized, then one disc body 1 is placed on other disc bodies 1 with installed electronic components through magnetic attraction, in use, the upper plug body is opened to take down the transparent partition plate 2 for use, and the disc body 1 and the transparent partition plate 2 can be repeatedly used.

Claims

1. A blister electronic turntable comprising a disc (1), characterized in that: The upper surface of the disc body (1) is concave downward to form a first containing cavity (11), the upper surface of the first containing cavity (11) is uniformly distributed with a second containing cavity (12), the second containing cavity (12) is formed by the bottom of the first containing cavity (11) being concave downward, the second containing cavities (12) are adjacent to each other and are formed with an upward protruding spacing strip (13), the disc body (1) is provided with a transparent partition plate (2) in the first containing cavity (11), the upper surface of the first containing cavity (11) is protruded upward to form a positioning tube (3), the transparent partition plate (2) is provided with a positioning hole (21) matched with the positioning tube (3), the positioning tube (3) is provided with a bottom column piece (5) inside, the bottom column piece (5) is protruded from the positioning tube (3), the upper plug piece (4) is slidably connected to the bottom column piece (5), the bottom of the upper plug piece (4) is abutted with the upper surface of the transparent partition plate (2), and the top of the upper plug piece (4) is abutted with the bottom of the adjacent bottom column piece (5).

2. The blister electronic turntable of claim 1, wherein: The depth of the first containing cavity (11) is 3-6mm, the thickness of the transparent partition plate (2) is 0.5-1.5mm, and the positioning tube (3) is protruded from the bottom of the first containing cavity (11) by 1-2mm.

3. The blister electronic turntable of claim 2, wherein: The positioning tube (3) comprises an upper extending section (31), a curved section (32) and a lower extending section (33) in sequence, the upper extending section (31) is located above the first containing cavity (11), one side of the curved section (32) is connected with the upper extending section (31), the other side of the curved section (32) is connected with the top of the lower extending section (33), the lower extending section (33) is located in the upper extending section (31), the lower extending section (33) extends downward along the height direction below the first containing cavity (11), and the cross-sectional shape of the upper extending section (31) and the lower extending section (33) is annular.

4. The blister electronic turntable of claim 3, wherein: The upper extending section (31) and the lower extending section (33) are inclined to the center.

5. The blister electronic turntable of claim 3, wherein: The upper surface of the bottom column piece (5) is abutted with the bottom of the disc body (1) in the first containing cavity (11), the center of the bottom column piece (5) extends upward to form a connecting column (51), the connecting column (51) is concentrically arranged with the lower extending section (33), the connecting column (51) is protruded from the top of the upper extending section (31), and the top of the bottom column piece (5) is provided with an upper clamping groove (53) for embedding the lower extending section (33).

6. The blister electronic turntable of claim 5, wherein: The cross-sectional shape of the upper clamping groove (53) is annular, the upper clamping groove (53) is concentrically arranged with the connecting column (51), and the inner side of the upper clamping groove (53) is flush with the inner side of the connecting column (51).

7. The blister electronic turntable of claim 5, wherein: The center of the upper plug piece (4) is provided with a sliding hole (41) for the connecting column (51) to pass through, the sliding hole (41) is arranged through the axial direction of the upper plug piece (4), the bottom of the upper plug piece (4) is concave upward to form a stepped groove (42), the stepped groove (42) is concentrically arranged with the sliding hole (41), and the stepped groove (42) is matched with the top of the upper extending section (31) and the curved section (32).

8. The blister electronic turntable of claim 7, wherein: The upper plug piece (4) is cylindrical, and the upper surface of the upper plug piece (4) is higher than the upper surface of the disc body (1).

9. The blister electronic turntable of claim 8, wherein: The inner circumferential surface of the sliding hole (41) is radially recessed to form a first annular groove (43), the first annular groove (43) is concentrically arranged with the sliding hole (41), the inner circumferential surface of the step groove (42) is radially recessed to form a second annular groove (45), the first annular groove (43) is provided with a first elastic ring (44) abutting against the connecting column (51), and the second annular groove (45) is provided with a second elastic ring (46) cooperating with the upper extension section (31).

10. The blister electronic turntable of claim 9, wherein: The bottom of the bottom column piece (5) is recessed upward along the axial direction to form a lower clamping groove (54), the lower clamping groove (54) is provided with a magnetic plate (55), and the top of the connecting column (51) is provided with a magnetic piece (52) cooperating with the magnetic plate (55).