Plastic uptake drying turnover tray

By designing a transparent cover, a tray body, and a sealed base within the blister pack to form a drying chamber, the oxidation and corrosion problems caused by contact between the desiccant and the components are solved, achieving effective drying of the components and maintaining the thinness of the tray.

CN223632038UActive Publication Date: 2025-12-05SUZHOU SHICHENG MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520285306.X
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

When transporting electronic components, existing blister packs cause oxidation and corrosion due to the contact between the desiccant and the components, and also increase the thickness of the tray.

Method used

Design a thermoformed drying turnover tray, including a transparent cover, a tray body and a sealed base to form a drying chamber. The tray and the drying chamber are connected through a through hole and a flow channel to prevent the desiccant from contacting the components and to maintain the thinness of the tray.

Benefits of technology

This achieves effective drying of components, avoiding oxidation and corrosion, while maintaining the tray's thinness and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a blister drying turnover tray which sequentially comprises a transparent cover body, a placing tray body and a sealing base from top to bottom, a drying cavity for placing a drying bag is formed between the sealing base and the placing tray body, the upper surface of the placing tray body is sunken downwards to form a placing groove, and a communication channel is arranged between a finger catching groove and a center groove. A first through hole communicating with the drying cavity is formed in the finger lock groove in a downward penetrating mode, and a second through hole communicating with the drying cavity is formed in the center groove in a downward penetrating mode. The first through hole, the second through hole and the circulation channel reduce the overall weight, dryness is kept, meanwhile, the drying bag does not occupy the containing space of the containing disc body, and contact between the drying agent and the electronic elements is avoided.
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Description

TECHNICAL FIELD

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

[0002] The turnover tray can be used to store, transport and protect electronic components, effectively protecting the electronic components from physical damage, and the turnover tray containing electronic components can be effectively classified during transportation, improving the storage and transportation efficiency.

[0003] In the prior art, when electronic components are transported in the blister turnover tray, the electronic components are usually placed in the placing groove in the turnover tray, and the surface of the turnover tray is provided with a cover for covering protection to prevent the internal electronic components from falling off, but the built-in electronic components are very sensitive to moisture, which can easily cause the internal electronic components to oxidize and corrode, affecting the performance and service life. Dryer is usually placed in the turnover tray to dry the turnover tray, and the bagged dryer is easy to contact with the electronic components, which increases the thickness of the turnover tray. SUMMARY

[0004] The utility model discloses a kind of blister drying turnover trays, by lower dryer, with the advantages that dryer and electronic component are avoided to contact, and the thickness of tray is avoided to increase.

[0005] The above technical purpose of the utility model is realized by the following technical scheme: a kind of blister drying turnover tray, from top to bottom include transparent cover body, placing disc body and sealing base in sequence, the transparent cover body is arranged on the upper surface of placing disc body, the sealing base is arranged at the bottom of placing disc body, the sealing base and placing disc body form dry cavity that dry bag is placed between, the upper surface of placing disc body is concave downward and forms placing groove, the placing groove is evenly distributed on the upper surface of placing disc body, and separating strip is formed between adjacent placing groove, adjacent placing groove is formed with flow-through channel at separating strip position, the length direction both ends of the placing groove bottom are provided with finger buckle groove, adjacent finger buckle groove is provided with center groove, the finger buckle groove and center groove are provided with communication channel, first through-hole that is communicated with dry cavity is arranged in the finger buckle groove and is penetrated downward, second through-hole that is communicated with dry cavity is arranged in the center groove and is penetrated downward.

[0006] Preferably, the outer side of the placing groove on the length direction of the placing disc body is provided with a taking-out groove, the longitudinal section shape and the cross section shape of the taking-out groove are semicircular, and the taking-out groove is communicated with the placing groove.

[0007] By adopting the above technical scheme, the taking-out groove is used for the user to take out the electronic components in the placing groove, and the semicircular shape is used for the finger to enter.

[0008] Preferably, the flow channel is formed by the upper surface of the partition bar being concave downward, the longitudinal section of the flow channel is semicircular, and the flow channel is located in the middle of the short side of the placement groove.

[0009] By adopting the above technical scheme, the flow channel not only allows air to pass through, but also allows the fingers to take out the electronic components in the placement groove close to the middle.

[0010] Preferably, the finger buckle groove is rectangular, the long side of the finger buckle groove is flush with the inner side of the placement groove, and the short side of the finger buckle groove is shorter than the width of the placement groove.

[0011] By adopting the above technical scheme, it is convenient for the user to take out the electronic components.

[0012] Preferably, the cross section of the center groove is circular or rectangular.

[0013] By adopting the above technical scheme, the shape of the center groove can be changed according to the shape of the middle of the electronic component, without affecting the normal use of the tray.

[0014] Preferably, the first through hole is circular, the first through hole is uniformly distributed in the finger buckle groove, the second through hole is circular, and the second through hole is uniformly distributed in the center groove.

[0015] By adopting the above technical scheme, the finger buckle groove and the center groove both have a channel communicating with the lower drying cavity.

[0016] Preferably, the first through hole is consistent with the orthographic projection shape of the finger buckle groove, and the second through hole is consistent with the orthographic projection shape of the center groove.

[0017] By adopting the above technical scheme, the first through hole directly penetrates the finger buckle groove, and the second through hole directly penetrates the center groove, thereby improving the drying effect.

[0018] Preferably, three communication channels are arranged on both sides of the center groove in the width direction, one end of the communication channel in the length direction uniformly communicates with the long side of the finger buckle groove, and the other end of the communication channel in the length direction uniformly communicates with the side surface of the center groove.

[0019] By adopting the above technical scheme, the air flow area of the bottom of the electronic component is expanded, thereby improving the drying effect.

[0020] Preferably, the length direction of the placement disc body and the transparent cover body is concave downward to form an opening groove, the side surface of the opening groove communicates with the outside, the cross section of the opening groove is rectangular, and the opening groove is located between adjacent taking-out grooves.

[0021] By adopting the technical scheme, the opening groove is used for a user to open the transparent cover from the position.

[0022] Preferably, the side bottom of the placing disc body extends outward in a horizontal direction to form an extension edge, and the edge of the sealing base is hot melt connected with the extension edge.

[0023] By adopting the technical scheme, the placing disc body and the sealing base are connected.

[0024] As described above, before the electronic component is mounted into the placing disc body, the drying bag is placed between the placing disc body and the sealing base, and the two are fixed by hot melting to prevent the drying bag from falling out. When the electronic component is placed into the placing groove of the placing disc body, the transparent cover is closed to make the inside of the tray in a sealed state. The first through hole, the second through hole and the flow channel reduce the overall weight, make the inside air flow, and further keep dry. Meanwhile, the drying bag does not occupy the placing space of the placing disc body, avoids the contact between the drying agent and the electronic component, and avoids the increase of the thickness of the tray. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is a top view of embodiment 1;

[0026] Figure 2 is Figure 1 is an enlarged view of A part shown in the figure;

[0027] Figure 3 is a partial section view of embodiment 1;

[0028] Figure 4 is a partial section view of embodiment 2;

[0029] In the figure, 1 is a transparent cover; 2 is a placing disc body; 21 is a taking-out groove; 22 is an opening groove; 23 is an extension edge; 3 is a sealing base; 31 is a drying cavity; 4 is a placing groove; 41 is a separation strip; 42 is a flow channel; 43 is a finger buckle groove; 44 is a first through hole; 45 is a center groove; 46 is a second through hole; and 47 is a communication channel. DETAILED DESCRIPTION

[0030] The utility model will be explained in further detail below in combination with the drawings.

[0031] The specific embodiment is only an explanation of the utility model, and is not a limitation of the utility model. Those skilled in the art can make modifications to the embodiment without creative contribution after reading the specification, but as long as the modifications are within the scope of the claims of the utility model, the utility model is protected by the patent law.

[0032] Embodiment 1:

[0033] As Figures 1 to 4As shown, a blister drying turnover tray comprises a transparent cover 1, a placing disc 2 and a sealing base 3 from top to bottom, all of which are formed by blistering, the transparent cover 1 is fixed on the upper surface of the placing disc 2 by latching, and the transparent cover 1 can be removed, the sealing base 3 is arranged on the bottom of the placing disc 2 by bonding, and the sealing base 3 and the placing disc 2 form a drying cavity 31 for placing drying bags, the upper surface of the placing disc 2 is concave downward to form a placing groove 4, and a plurality of placing grooves 4 are uniformly distributed on the upper surface of the placing disc 2, during the blistering production process, a separation strip 41 is formed between adjacent placing grooves 4, the separation strip 41 plays a spacing role, and a flow-through channel 42 is formed at the position of the separation strip 41 between adjacent placing grooves 4, so that air flows between adjacent placing grooves 4.

[0034] As shown in Figures 1 to 3 , the specific structure in the placing groove 4 is that the length direction of the placing groove 4 is provided with a finger buckle groove 43, the shape of the finger buckle groove 43 is rectangular, in order to facilitate blistering processing, as shown in Figure 1 and Figure 2 , the long side surface of the finger buckle groove 43 is flush with the inner side surface of the length direction of the placing groove 4 in the height direction, and the short side of the finger buckle groove 43 is not flush with the width direction of the placing groove 4, that is, the length of the short side of the finger buckle groove 43 is less than the width of the placing groove 4.

[0035] As shown in Figures 1 to 3 , a center groove 45 is arranged between adjacent finger buckle grooves 43, the cross-sectional shape of the center groove 45 is circular or rectangular, the cross-sectional shape of the center groove 45 of embodiment 1 is circular, a communication channel 47 is arranged between the finger buckle groove 43 and the center groove 45, three communication channels 47 are arranged on both sides of the width direction of the center groove 45, one end of the length direction of the communication channel 47 is uniformly communicated to the long side of the finger buckle groove 43, and the other end of the length direction of the communication channel 47 is uniformly communicated to the side surface of the center groove 45, thereby ensuring that the air at the bottom of the electronic component can flow, thereby ensuring the drying of the bottom of the electronic component.

[0036] As shown in Figures 1 to 3 , in order to ensure that the upper placing groove 4 is communicated with the drying cavity 31 at the bottom, a first penetrating hole 44 which is communicated with the drying cavity 31 is arranged in the finger buckle groove 43, a second penetrating hole 46 which is communicated with the drying cavity 31 is arranged in the center groove 45, the first penetrating hole 44 is circular, the first penetrating hole 44 is uniformly distributed in the finger buckle groove 43, the second penetrating hole 46 is circular, and the second penetrating hole 46 is uniformly distributed in the center groove 45, the drying of the two sides of the placing groove 4 is ensured through the first penetrating hole 44, the drying of the middle part of the placing groove 4 is ensured through the second penetrating hole 46, and the drying between the finger buckle groove 43 and the center groove is ensured through the communication channel 47.

[0037] As shown in Figures 1 to 4As shown, in order to facilitate the removal of electronic components from the placement tray 2, a removal slot 21 is provided on the outer side of the placement slot 4 near the two sides along the length of the placement tray 2. The longitudinal section of the removal slot 21 is semi-circular, and the cross-section of the removal slot 21 is also semi-circular. The bottom of the removal slot 21 is connected to the placement slot 4, allowing the user to insert their fingers to remove the electronic components from the placement slot 4.

[0038] The flow channel 42 can be formed by penetrating the side. In order to facilitate the removal of electronic components in the middle placement slot 4, the flow channel 42 is formed by the downward indentation of the upper surface of the partition strip 41. The longitudinal cross-section of the flow channel 42 is semi-circular. The flow channel 42 is located in the middle of the short side of the placement slot 4, so that electronic components can be removed from both sides of the placement slot 4 in the length direction through the flow channel 42.

[0039] like Figures 1 to 3 As shown, the two ends of the placement plate 2 and the transparent cover 1 are recessed downwards in the length direction to form an opening groove 22. The cross-sectional shape of the opening groove 22 is rectangular. The side of the opening groove 22 is connected to the outside. The opening groove 22 is located between the adjacent removal groove 21 in the width direction of the placement plate 2 to ensure that the transparent cover 1 can be removed. At the same time, in order to connect to the sealing base 3, the sealing base 3 is flat. The bottom of the placement plate 2 extends outward in the horizontal direction to form an extension edge 23. The edge of the sealing base 3 is heat-fused to the extension edge 23 to achieve connection and sealing.

[0040] Working principle:

[0041] During the assembly of the placement tray 2, the drying bag is placed between the placement tray 2 and the sealing base 3. The sheet-shaped sealing base 3 is fixed to the placement tray 2 by heat fusion at the extension edge 23 position to prevent the drying bag from falling out. After the electronic components are placed into the placement slot 4 of the placement tray 2, the transparent cover 1 is closed, and the two sides of the transparent cover 1 correspond to the opening slot 22.

[0042] Example 2:

[0043] The difference between Embodiment 2 and Embodiment 1 lies in the different ways in which the first through hole 44 and the second through hole 46 are set. In Embodiment 1, the first through hole 44 and the second through hole 46 are fixed in a uniformly distributed manner to prevent small electronic components from falling into the drying chamber 31. In Embodiment 2, the first through hole 44 is consistent with the orthographic projection shape of the finger-loop groove 43, that is, the finger-loop groove 43 is set downward through the hole. The second through hole 46 is consistent with the orthographic projection shape of the central groove 45, that is, the second through hole 46 is set downward through the hole. The working principle of Embodiment 2 is the same as that of Embodiment 1.

Claims

1. A blister dry cycle tote, characterized by: From top to bottom, it includes transparent cover (1), placing disc body (2) and sealing base (3) in turn, the transparent cover (1) is arranged on the upper surface of placing disc body (2), the sealing base (3) is arranged at the bottom of placing disc body (2), the sealing base (3) and placing disc body (2) form dry cavity (31) for placing dry bag between, the upper surface of placing disc body (2) is concave downward and forms placing groove (4), the placing groove (4) is uniformly distributed on the upper surface of placing disc body (2), the adjacent placing groove (4) forms separation strip (41) between, the adjacent placing groove (4) is formed with flow channel (42) at the position of separation strip (41), the bottom of placing groove (4) is provided with finger buckle groove (43) at the both ends of length direction, the adjacent finger buckle groove (43) is provided with center groove (45), the finger buckle groove (43) and center groove (45) are provided with communication channel (47), the first through hole (44) is provided with in the finger buckle groove (43) and is communicated with dry cavity (31), the second through hole (46) is provided with in the center groove (45) and is communicated with dry cavity (31).

2. The blister dry transit tray of claim 1, wherein: The outer side of placing groove (4) on the both sides of placing disc body (2) is provided with taking-out groove (21), the longitudinal section shape and the cross section shape of taking-out groove (21) are semicircular, and the taking-out groove (21) is communicated with placing groove (4).

3. The blister dry transit tray of claim 1, wherein: The flow channel (42) is formed by the upper surface of the separation strip (41) being concave downward, the longitudinal section shape of the flow channel (42) is semicircular, and the flow channel (42) is located at the middle of the short side of the placing groove (4).

4. The blister dry transit tray of claim 1, wherein: The shape of the finger buckle groove (43) is rectangular, the long side side of the finger buckle groove (43) is flush with the inner side of the placing groove (4), and the short side length of the finger buckle groove (43) is less than the width of the placing groove (4).

5. The blister dry transit tray of claim 4, wherein: The cross section shape of the center groove (45) is circular or rectangular.

6. The blister dry transit tray of claim 5, wherein: The first through hole (44) is circular, the first through hole (44) is uniformly distributed in the finger buckle groove (43), the second through hole (46) is circular, and the second through hole (46) is uniformly distributed in the center groove (45).

7. The blister dry transit tray of claim 5, wherein: The first through hole (44) is consistent with the orthographic projection shape of the finger buckle groove (43), and the second through hole (46) is consistent with the orthographic projection shape of the center groove (45).

8. The blister dry transit tray of claim 7, wherein: Three communication channels (47) are arranged on the both sides of the width direction of the center groove (45), one end of the length direction of the communication channel (47) is uniformly communicated to the long side of the finger buckle groove (43), and the other end of the length direction of the communication channel (47) is uniformly communicated to the side of the center groove (45).

9. The blister dry transit tray of claim 2, wherein: The both ends of the length direction of the placing disc body (2) and the transparent cover (1) are concave downward and form opening groove (22), the side of the opening groove (22) is communicated with the outside, the cross section shape of the opening groove (22) is rectangular, and the opening groove (22) is located between the adjacent taking-out grooves (21).

10. The blister dry transit tray of claim 1, wherein: The bottom of the placing disc body (2) extends outward in horizontal direction to form an extension edge (23), and the edge of the sealing base (3) is hot melt connected with the extension edge (23).