A universal transfer box based on copper needle plate

By designing a universal transfer box for copper needle plates, utilizing the isolation seat and limit rod structure, and combining airflow cleaning and drying, the problem of low transfer efficiency of copper needle plates between workstations was solved, achieving efficient and stable transfer and cleaning and drying effects.

CN117775468BActive Publication Date: 2026-02-13HITE XINKE NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202311757919.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-19
Publication Date
2026-02-13
Estimated Expiration
2043-12-19

AI Technical Summary

Technical Problem

In the existing technology, when copper needle plates are transferred between different workstations, the transfer box needs to be changed frequently, which results in long loading and unloading times, wastes manpower and resources, and affects the preparation efficiency.

Method used

Design a universal transfer box based on copper needle plates. The box body is a metal transfer box without a top cover. The interior is equipped with an isolation seat and a limiting rod structure. Combined with a guide hole and an air distribution chamber, airflow promotes cleaning and drying, thereby achieving stable positioning and efficient transfer of copper needle plates.

Benefits of technology

It enables efficient and stable transfer of copper needle plates between different workstations, reduces pick-up and drop-off time, improves transfer efficiency, and enhances cleaning and drying effects through airflow.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to material transfer storage technology field, disclose a kind of general type transfer box based on copper needle plate, including transfer box body, the bottom surface of transfer box body is equipped with several array distribution's flow guide through-hole;The inside middle of transfer box body is equipped with isolation seat, isolation seat is equipped with a row of parallel distribution's upper limit rod, adjacent upper limit rod forms a copper needle plate storage area between each other, the downside of each copper needle plate storage area is equipped with lower limit rod;Isolation seat is equipped with closed gas distribution cavity, the top surface of isolation seat is equipped with gas inlet interface;The upper limit rod, lower limit rod transversely pass through gas distribution cavity;The upper limit rod, lower limit rod are all equipped with flow guide channel, the part of upper limit rod, lower limit rod in gas distribution cavity is equipped with gas inlet hole, the part of upper limit rod, lower limit rod outside gas distribution cavity is equipped with several exhaust holes.The present application has the beneficial effects of copper needle plate positioning stable, easy to use, strong universality.
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Description

TECHNICAL FIELD

[0001] The present application relates to material transfer and storage technology field, especially to a universal transfer box based on copper needle plate. BACKGROUND

[0002] The copper needle plate is a new energy vehicle IGBT radiator, its structure is usually a copper plate surface arrayed with a set of heat dissipation copper needle. The copper needle plate needs to be stored in the transfer box after processing, and then transferred to the work station for detection, and then cleaned, and then dried after cleaning, so the copper needle plate needs to be frequently transferred between different work stations. Currently, nylon boxes are usually used for storing copper needle plates to facilitate the transfer of copper needle plates, and the net box needs to be replaced at the cleaning station, and the drawer type support is replaced at the drying station. The copper needle plate needs to be frequently replaced in the transfer box after being transferred between different work stations, and the process of taking out and putting in the copper needle plate takes a long time, which wastes a lot of manpower and material resources, and seriously affects the preparation efficiency of the copper needle plate. SUMMARY

[0003] The present application provides a universal transfer box based on copper needle plate to solve the above problems in the prior art. The copper needle plate positioning is stable, easy to use, and can be used in multiple work stations, greatly reducing the time of taking and placing the copper needle plate back and forth, and improving the transfer efficiency of the copper needle plate.

[0004] In order to achieve the above purpose, the present application adopts the following technical scheme:

[0005] A universal transfer box based on copper needle plate, comprising a transfer box body without a top cover, the transfer box body is made of metal, and the bottom surface of the transfer box body is provided with a plurality of arrayed flow guide through holes; the inside of the transfer box body is provided with a partition seat, the partition seat is provided with a row of parallel distributed upper limiting rods, and a copper needle plate storage area is formed between adjacent upper limiting rods, and the lower side of each copper needle plate storage area is provided with a lower limiting rod connected with the partition seat, and the lower limiting rod is distributed in a staggered manner with the upper limiting rod; the partition seat is provided with a closed air distribution cavity, and the top surface of the partition seat is provided with an air inlet interface communicated with the air distribution cavity; the upper limiting rod and the lower limiting rod transversely penetrate the air distribution cavity; the upper limiting rod and the lower limiting rod are provided with flow guide channels, and the parts of the upper limiting rod and the lower limiting rod in the air distribution cavity are provided with air inlet holes, and the parts of the upper limiting rod and the lower limiting rod outside the air distribution cavity are provided with a plurality of air outlet holes.

[0006] The copper needle plate is put into the copper needle plate storage area from the side, the front face (the face with the needle) of the copper needle plate is limited by one upper limiting rod, the back face of the copper needle plate is limited by another upper limiting rod, and the lower end edge of the copper needle plate is limited by a lower limiting rod. One copper needle plate is stored in each copper needle plate storage area. During the transfer process, the copper needle plates will not collide with each other, and there is enough space around each copper needle plate. When the transfer box and the copper needle plate are put into the sink for cleaning, the high-pressure air pipe can be connected to the air inlet. The air flow acts on the copper needle plate from the air outlet. The breaking of the air bubble can promote the cleaning of the oil stains on the surface of the copper needle plate, thereby improving the cleaning effect. Similarly, during drying, the air inlet can also be connected to the air pipe. The high-speed airflow acts on the surface of the copper needle plate, promoting the evaporation and drying of the water on the surface of the copper needle plate.

[0007] Preferably, the air inlet one-way valve is connected to the air inlet connector in the air distribution cavity.

[0008] Preferably, the air outlet holes on the upper limiting rod are distributed on the lower semicircular surface area of the upper limiting rod, and the air outlet holes on the lower limiting rod are distributed on the upper semicircular surface area of the lower limiting rod. The airflow on the upper limiting rod acts forward, backward and downward, and the airflow on the lower limiting rod acts forward, backward and upward, so that the airflow can act on the surface of the copper needle plate in multiple ways, thereby promoting cleaning or drying.

[0009] Preferably, the lower end of each of the two opposite outer sides of the transfer box body is fixedly provided with a connecting seat, and the bottom of the connecting seat is provided with a row of supporting wheels. The supporting wheels facilitate the movement of the transfer box between stations.

[0010] Preferably, the connecting seat is provided with horizontally distributed sliding holes, and the sliding holes are provided with pull rods. The pull rod is in a U-shaped structure, and the two ends of the pull rod are respectively inserted into the sliding holes of the two connecting seats to form a sliding connection. The outer side of the connecting seat is provided with a long slot hole connected with the sliding hole, and the end of the pull rod is fixedly provided with a limiting pin extending into the long slot hole. When the transfer box needs to be pulled, the pull rod is pulled out of the sliding hole, so that the supporting wheels of the transfer box can be easily rolled on the plane, which is very convenient to use.

[0011] The front end of the transfer box body is provided with a front limiting seat corresponding to the pull rod, and the front limiting seat is provided with a clamping groove. When the two ends of the pull rod are retracted into the sliding hole, the pull rod is clamped into the clamping groove.

[0012] Preferably, the top surface of the connecting seat is provided with a U-shaped groove, and the U-shaped groove is provided with two lifting rods. The lifting rod is in a U-shaped structure, and the two ends of the lifting rod are respectively connected with the two connecting seats through a pin shaft. The lifting rod has a folding state of retracting into the U-shaped groove and an unfolded state of rotating upward to contact each other. When the transfer box needs to be carried by hand, the two lifting rods are rotated to the unfolded state, which is convenient for hand holding and lifting.

[0013] As preferred, the lower end of the connecting seat exceeds the bottom surface of the transfer box body, and the inner side edge of the lower end of the connecting seat is provided with an inclined chamfer. When the transfer boxes need to be stacked, one transfer box is directly stacked on another transfer box, and the two connecting seats are respectively positioned to the left and right of the transfer box, so that the stacking is more orderly and stable.

[0014] As preferred, the rear end of the transfer box body is provided with a rear limiting seat, and the lower end of the front limiting seat and the rear limiting seat both exceeds the bottom surface of the transfer box body, and the lower end of the front limiting seat and the rear limiting seat both is provided with an inclined chamfer towards one side of the transfer box body. When the transfer boxes are stacked, the front limiting seat and the rear limiting seat are respectively positioned to the front and rear of the transfer box, so that the stacking of the transfer boxes is more stable.

[0015] As preferred, the top surface of the rear limiting seat is provided with a rear supporting surface, the top surface of the front limiting seat is provided with a front supporting surface, and the front supporting surface and the rear supporting surface are both embedded with permanent magnets. When the lifting rods are in the folded state, the two lifting rods are respectively supported by the front supporting surface and the rear supporting surface, and are positioned by the corresponding permanent magnets.

[0016] Therefore, the application has the beneficial effects of stable positioning of the copper needle plate, convenient use, and strong universality. Moreover, the copper needle plate can enhance the cleaning effect through air flow when being cleaned, and can increase the drying efficiency through air flow when being dried. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a structural schematic view of the application.

[0018] Figure 2 It is another view of Figure 1 .

[0019] Figure 3 It is a top view of Figure 1 .

[0020] Figure 4 It is a right view of Figure 2 .

[0021] Figure 5 It is an A-A sectional view of Figure 4 .

[0022] Figure 6 It is an exploded view of Figure 1 .

[0023] Figure 7 It is a schematic view of the pull rod in the pulled-out state.

[0024] Figure 8 It is a schematic view of the lifting rod in the unfolded state.

[0025] Figure 9A schematic view of the stacking state of the transfer box. DETAILED DESCRIPTION

[0026] In order to make the technical problems to be solved by the present application, technical solutions and beneficial technical effects more clearly, the present application will be further described in detail below in combination with the drawings and multiple exemplary embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, but not to limit the protection scope of the present application.

[0027] It should be understood that, in this document, the expressions "first", "second", etc. are only used for descriptive purposes, and should not be understood as indicating or implying relative importance, nor should it be understood as implicitly indicating the number of the technical features indicated. The features with "first", "second" can be explicitly or implicitly indicated to include at least one of the features.

[0028] As shown in Figures 1-6 A general transfer box based on copper needle plate, including a transfer box body 1 without a top cover, the transfer box body 1 is made of a cuboid structure of metal, the bottom surface of the transfer box body is provided with a plurality of flow guide through holes 100; the inside of the transfer box body 1 is provided with a partition seat 2, the partition seat is provided with a row of upper limit rods 3 distributed in parallel with each other, a copper needle plate storage area is formed between adjacent upper limit rods, and the lower side of each copper needle plate storage area is provided with a lower limit rod 4 connected with the partition seat, and the lower limit rod is distributed in a staggered manner with the upper limit rod; the lower end of the two opposite outer sides of the transfer box body 1 is fixedly provided with a connecting seat 5, and the bottom of the connecting seat 5 is provided with a row of supporting wheels 6. In some embodiments, the transfer box body is made of stainless steel, aluminum alloy or copper alloy, which has high strength, long service life, and can be cleaned and heated.

[0029] As shown in Figure 5 and Figure 6 The partition seat 2 is provided with a closed air distribution cavity 20, the top surface of the partition seat is provided with an air inlet interface 21 communicating with the air distribution cavity, and the air distribution cavity is provided with an air inlet check valve 22 connected with the air inlet connector; the upper limit rod 3 and the lower limit rod 4 transversely penetrate the air distribution cavity; the upper limit rod and the lower limit rod are both provided with a flow guide channel, the part of the upper limit rod and the lower limit rod located in the air distribution cavity is provided with an air inlet hole 30, and the part of the upper limit rod and the lower limit rod located outside the air distribution cavity is provided with a plurality of air outlet holes 31; the air outlet holes on the upper limit rod are distributed in the lower semicircular surface area of the upper limit rod, and the air outlet holes on the lower limit rod are distributed in the upper semicircular surface area of the lower limit rod.

[0030] The connecting seat 5 is provided with a horizontally distributed sliding hole 50, and the sliding hole is provided with a pull rod 7; the pull rod 7 is in a U-shaped structure, and the two ends of the pull rod 7 are respectively inserted into the sliding holes of the two connecting seats to form a sliding connection; the outer side of the connecting seat 5 is provided with a long slot hole 51 connected with the sliding hole, and the end of the pull rod 7 is fixedly provided with a limiting pin 70 extending into the long slot hole; the front end of the transfer box body 1 is provided with a front limiting seat 8 at the corresponding position of the pull rod, and the front limiting seat 8 is provided with a clamping groove 80; when the two ends of the pull rod are retracted into the sliding hole, the pull rod 7 is clamped into the clamping groove. The state of the pull rod clamped into the clamping groove is shown in Figure 1 , and the state of the pull rod pulled out of the sliding hole is shown in Figure 6 .

[0031] The top surface of the connecting seat 5 is provided with a U-shaped groove 52, and the U-shaped groove is provided with two lifting rods 9; the lifting rod 9 is in a U-shaped structure, and the two ends of the lifting rod are respectively rotationally connected with the two connecting seats through pin shafts 90; the lifting rod 9 has a retracted state of being retracted into the U-shaped groove and an unfolded state of being rotated upward to be in contact with each other; the retracted state of the lifting rod is shown in Figure 6 , and the unfolded state of the lifting rod is shown in Figure 7 .

[0032] As shown in Figure 4 , the lower end of the connecting seat 5 exceeds the bottom surface of the transfer box body 1, and the inner edge of the lower end of the connecting seat 5 is provided with an inclined chamfer 500; the rear end of the transfer box body 1 is provided with a rear limiting seat 10; the lower ends of the front limiting seat 8 and the rear limiting seat 10 all exceed the bottom surface of the transfer box body, and the lower ends of the front limiting seat and the rear limiting seat are both provided with an inclined chamfer (not shown in the figure, and the inclination state is the same as or similar to the inclined chamfer 500) toward one side of the transfer box body.

[0033] As shown in Figure 6 and Figure 8 , the top surface of the rear limiting seat 10 is provided with a rear supporting surface 1000, and the top surface of the front limiting seat 8 is provided with a front supporting surface 800; the front supporting surface and the rear supporting surface are both embedded with permanent magnets 12; when the lifting rod is in the retracted state, the two lifting rods are respectively supported by the front supporting surface and the rear supporting surface and are positioned by the corresponding permanent magnets.

[0034] The principle of the present application is as follows in combination with the drawings: as shown in Figure 1 and Figure 6 , the two adjacent upper limiting rods 3 and the corresponding lower limiting rod 4 form a copper needle plate storage area, and each storage area stores one copper needle plate 11; the copper needle plate is only positioned by the three rods, and the copper needle plates will not collide with each other in the moving and carrying process of the transfer box; since there is enough space around each copper needle plate for medium flow, the copper needle plate does not need to be taken out when being cleaned and dried, and the transfer box storing the copper needle plate can be directly placed in a cleaning tank for cleaning or in a drying box for drying. When the transfer box is stored, in order to reduce the space occupation, the transfer box can be placed in a vertical position or a horizontal position according to the actual situation. Figure 8The shown way stacks the transfer boxes together; when it is needed to transfer the transfer boxes, one can pull out the pull rod on one of the transfer boxes, thus pulling the stack of transfer boxes to transfer; when it is needed to transfer a single transfer box, one can unfold the lifting rod to the state shown, thus easily lifting the transfer box and then transferring it. The transfer box can be applied to the transfer of copper needle plates at different stations, and is very convenient to use and has strong versatility. Figure 8 The shown way stacks the transfer boxes together; when it is needed to transfer the transfer boxes, one can pull out the pull rod on one of the transfer boxes, thus pulling the stack of transfer boxes to transfer; when it is needed to transfer a single transfer box, one can unfold the lifting rod to the state shown, thus easily lifting the transfer box and then transferring it. The transfer box can be applied to the transfer of copper needle plates at different stations, and is very convenient to use and has strong versatility. Figure 7 The shown way stacks the transfer boxes together; when it is needed to transfer the transfer boxes, one can pull out the pull rod on one of the transfer boxes, thus pulling the stack of transfer boxes to transfer; when it is needed to transfer a single transfer box, one can unfold the lifting rod to the state shown, thus easily lifting the transfer box and then transferring it. The transfer box can be applied to the transfer of copper needle plates at different stations, and is very convenient to use and has strong versatility.

[0035] As shown in Figure 5 When the copper needle plate is cleaned at the cleaning station, the transfer box and the copper needle plate are put into the water tank for cleaning, the high-pressure air pipe is connected to the air inlet, and the air flow acts on the copper needle plate from the air outlet, the breaking of the air bubbles can promote the cleaning of the oil stains on the surface of the copper needle plate, thereby improving the cleaning effect; similarly, when the copper needle plate is dried at the drying station, the air inlet can also be connected to the air pipe, and the high-speed air flow acts on the surface of the copper needle plate, promoting the evaporation and drying of the moisture on the surface of the copper needle plate.

[0036] In the description of the present application, it should be understood that the directions or positional relationships indicated by up, down, left, right, inner end, outer end, one end, and the other end are based on the positions or relationships shown in the drawings, and are only for the purpose of more clearly and conveniently describing the technical solutions of the present application, and do not indicate or imply that the devices or elements referred to must have a specific direction, be constructed in a specific direction, and be operated. It cannot be understood as a limitation on the scope of the present application.

[0037] Although specific embodiments of the present application are described in detail herein, they are given only for the purpose of explanation and should not be considered as limiting the scope of the present application. Various substitutions, changes and modifications can be conceived without departing from the spirit and scope of the present application.

Claims

1. A general-purpose transfer box based on a copper needle plate, comprising a top cover-free transfer box body, characterized in that, The transfer box body is made of metal, and the bottom surface of the transfer box body is provided with a plurality of arrayed flow guide through holes; An isolation seat is arranged in the middle of the inside of the transfer box body, the isolation seat is provided with a row of upper limiting rods arranged in parallel with each other, an adjacent upper limiting rod forms a copper needle plate storage area, the lower side of each copper needle plate storage area is provided with a lower limiting rod connected with the isolation seat, and the lower limiting rods are arranged in a staggered manner with the upper limiting rods; The isolation seat is provided with a closed air distribution cavity, the top surface of the isolation seat is provided with an air inlet interface in communication with the air distribution cavity, the upper limiting rods and the lower limiting rods transversely penetrate the air distribution cavity, the upper limiting rods and the lower limiting rods are provided with flow guide channels, the parts of the upper limiting rods and the lower limiting rods in the air distribution cavity are provided with air inlet holes, and the parts of the upper limiting rods and the lower limiting rods outside the air distribution cavity are provided with a plurality of air outlet holes.

2. A universal transfer box based on copper needle plate according to claim 1, characterized in that, The air distribution cavity is provided with an air inlet check valve connected with the air inlet joint.

3. A universal transfer box based on copper needle plate according to claim 1 or 2, characterized in that, The air outlet holes on the upper limiting rods are arranged on the lower semicircular surface area of the upper limiting rods, and the air outlet holes on the lower limiting rods are arranged on the upper semicircular surface area of the lower limiting rods.

4. A universal transfer box based on copper needle plate according to claim 1, characterized in that, The lower ends of the two opposite outer sides of the transfer box body are fixedly provided with connecting seats, and the bottom of each connecting seat is provided with a row of supporting wheels.

5. A universal transfer box based on copper needle plate according to claim 4, characterized in that, The connecting seat is provided with a horizontally arranged sliding hole, and the sliding hole is provided with a pull rod; the pull rod has a U-shaped structure, and the two ends of the pull rod are respectively inserted into the sliding holes of the two connecting seats to form a sliding connection; The outer side of the connecting seat is provided with a long slot hole connected with the sliding hole, and the end of the pull rod is fixedly provided with a limiting pin inserted into the long slot hole; The front end of the transfer box body is provided with a front limiting seat corresponding to the pull rod, and the front limiting seat is provided with a clamping groove; when the two ends of the pull rod are retracted into the sliding holes, the pull rod is clamped into the clamping groove.

6. A universal transfer box based on copper needle plate according to claim 5, characterized in that, The top surface of the connecting seat is provided with a U-shaped groove, and the U-shaped groove is provided with two lifting rods; the lifting rods have a U-shaped structure, and the two ends of the lifting rods are respectively rotatably connected with the two connecting seats through pin shafts; the lifting rods have a retracted state of being retracted into the U-shaped groove and an unfolded state of being upwardly rotated to be in contact with each other.

7. A universal intermediate container based on a copper needle plate according to claim 6, characterized in that, The lower end of the connecting seat exceeds the bottom surface of the transfer box body, and the inner edge of the lower end of the connecting seat is provided with an inclined chamfer.

8. A universal transfer box based on copper needle plate according to claim 7, characterized in that, The rear end of the transfer box body is provided with a rear limiting seat; the lower ends of the front limiting seat and the rear limiting seat exceed the bottom surface of the transfer box body, and the lower ends of the front limiting seat and the rear limiting seat are provided with an inclined chamfer toward one side of the transfer box body.

9. A universal transfer box based on copper needle plate according to claim 8, characterized in that, The top surface of the rear limiting seat is provided with a rear supporting surface, and the top surface of the front limiting seat is provided with a front supporting surface; the front supporting surface and the rear supporting surface are inlaid with permanent magnets; when the lifting rods are in the retracted state, the two lifting rods are supported by the front supporting surface and the rear supporting surface and are positioned by the corresponding permanent magnets.

Citation Information

Patent Citations

  • Copper needle plate transfer box structure

    CN221419084U