Battery tray structure for placing soft package batteries at high and low positions

By adopting a staggered high-low layout and a pneumatic ejection mechanism in the soft-pack battery tray, the interference problem caused by the excessively dense vertical placement of batteries is solved, achieving efficient and flexible battery loading and unloading and multi-specification compatibility, thus improving production efficiency and equipment adaptability.

CN224053218UActive Publication Date: 2026-03-27SHENZHEN LISHIZHI TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In the current automated baking production of soft-pack batteries, the vertically placed batteries are too dense, resulting in insufficient uniformity of the air bags. When the grippers are loading and unloading, they are prone to interference with the air bags of adjacent batteries. In addition, the traditional tray has a single function and cannot be compatible with batteries of different specifications and integrate positioning detection.

Method used

The battery tray structure adopts a high-low staggered layout. By setting the spacers between the heat-conducting plates to form the high-low staggered layout, combined with the pneumatic ejection mechanism and guide groove design, it can achieve high-density placement of batteries and interference-free loading and unloading. The removable spacers and adjustable heat-conducting plate spacing can be used to adapt to batteries of different specifications.

Benefits of technology

It increases battery placement density, avoids interference from grippers, shortens loading and unloading time, improves production efficiency, reduces battery damage rate, and enhances equipment versatility and adaptability to diversified production.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224053218U_ABST
    Figure CN224053218U_ABST
Patent Text Reader

Abstract

The utility model discloses a battery tray structure for placing soft package batteries at high and low positions, which comprises a tray main body and heat conducting plates, a plurality of groups of heat conducting plates are arranged in the tray main body, the heat conducting plates are arranged in parallel, filler strips are arranged among the heat conducting plates, a pneumatic ejection mechanism is arranged at the bottom of the tray main body, and the pneumatic ejection mechanism is arranged on the tray main body. Soft package batteries are arranged between the heat conduction plates, and auxiliary grabbing mechanisms are arranged on the outer walls of the heat conduction plates. According to the utility model, the filler strips are arranged between the heat-conducting plates, so that the adjacent soft-package batteries are arranged in a high-low-position staggered manner, the high-position batteries are lifted by the filler strips, the low-position batteries are directly arranged on the heat-conducting plates, and the vertical distance between the adjacent batteries is obviously increased, so that dense placement in the horizontal direction is realized, and the placement density is improved compared with that of a traditional tray; and interference between the clamping jaw and an adjacent battery air bag during grabbing is avoided. And meanwhile, the pneumatic ejection mechanism at the bottom of the tray main body can eject the low-position battery upwards, so that the frictional resistance between the battery and the heat conducting plate is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to battery tray technical field especially relates to a kind of battery tray structure of soft package battery high-low position placement. BACKGROUND

[0002] In soft package battery automatic baking production, the battery placement density in tray directly affects the production capacity with gripper work efficiency. In the prior art, the vertical placement of battery is too dense to cause the gas bag regularity to be insufficient, and the gripper is easily interfered with the gas bag of adjacent battery during feeding and discharging, causing the problems of low placement density and poor feeding and discharging efficiency. In addition, the traditional tray has single function and cannot meet the diversified production needs, such as compatibility of different specifications of battery, integrated positioning detection and other auxiliary functions. Therefore, a multifunctional tray structure is needed to improve the production efficiency. SUMMARY

[0003] The utility model aims at solving the shortcomings in the prior art and provides a kind of battery tray structure of soft package battery high-low position placement.

[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0005] A kind of battery tray structure of soft package battery high-low position placement, including tray main body and heat conduction plate, multiple groups of heat conduction plates are provided in the tray main body, the heat conduction plate is provided as parallel arrangement, the heat conduction plate is provided with spacer between the heat conduction plate, the tray main body bottom is provided with pneumatic ejection mechanism, the heat conduction plate is provided with soft package battery between the heat conduction plate, the outer wall of heat conduction plate is provided with auxiliary grabbing mechanism.

[0006] Preferably, the heat conduction plate is formed by spacer between the heat conduction plate.

[0007] Preferably, the spacer is connected by screw thread or installed by buckle type.

[0008] Preferably, the pneumatic ejection mechanism includes micro air cylinder and ejector rod, the ejector rod and micro air cylinder are fixedly connected, the bottom of micro air cylinder and tray main body are fixedly connected, and the ejector rod is arranged below the spacer.

[0009] Preferably, the auxiliary grabbing mechanism includes guide groove and elastic silica gel strip, the guide groove is opened in the outer wall of heat conduction plate, and the elastic silica gel strip and guide groove inner wall are fixedly connected.

[0010] The utility model has the beneficial effects that:

[0011] 1. By setting the gasket between the heat-conducting plates, the adjacent soft-pack batteries are arranged in high and low positions, the high-position batteries are lifted by the gasket, the low-position batteries are directly placed on the heat-conducting plates, the vertical spacing between adjacent batteries is significantly increased, the dense placement in the horizontal direction is realized, the placement density is improved compared with the traditional tray, and the interference with the adjacent battery air bag during the gripping of the clamping jaw is avoided. At the same time, the pneumatic ejection mechanism at the bottom of the tray body can lift the low-position battery upward, reduce the friction resistance between the battery and the heat-conducting plate, guide the clamping jaw path in cooperation with the guide groove on the outer wall of the heat-conducting plate, shorten the single feeding and discharging time, improve the efficiency, and significantly improve the production capacity of the automatic production line.

[0012] 2. By setting the elastic silica gel strip embedded in the guide groove on the outer wall of the heat-conducting plate, when the clamping jaw grips the battery, the air bag can naturally avoid along the arc profile of the guide groove, and the elastic buffer effect of the silica gel strip can effectively reduce the impact force of the clamping jaw on the air bag, reduce the damage rate, and improve the product yield. In addition, the gasket is designed to be detachable by screw or buckle, which supports quick replacement of different height specifications, and cooperates with the parallel spacing adjustment function of the heat-conducting plate to be compatible with various thickness soft-pack batteries, meet diversified production needs, reduce production line change time, and improve equipment versatility. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 A main structure schematic view of a battery tray structure for high and low position placement of soft-pack batteries is provided for the utility model;

[0014] Figure 2 An internal main structure schematic view of a battery tray structure for high and low position placement of soft-pack batteries is provided for the utility model;

[0015] Figure 3 A Figure 2 An enlarged structure schematic view of position A in the middle;

[0016] Figure 4 A Figure 2 An enlarged structure schematic view of position B in the middle.

[0017] In the figure: 1 tray body, 2 heat-conducting plate, 3 gasket, 4 soft-pack battery, 5 micro air cylinder, 6 ejector rod, 7 guide groove, 8 elastic silica gel strip. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0019] Referring to Figures 1-4The utility model discloses a soft -walled battery high low place places battery tray structure, including tray main body 1 and heat conduction board 2, be provided with multiple sets of heat conduction board 2 in tray main body 1, heat conduction board 2 are provided as parallel arrangement, be provided with pad strip 3 between heat conduction board 2, the bottom of tray main body 1 is provided with pneumatic knockout mechanism, be provided with soft -walled battery 4 between heat conduction board 2, the outer wall of heat conduction board 2 is provided with auxiliary grabbing mechanism, through setting up pad strip 3 between heat conduction board 2, make adjacent soft -walled battery 4 form high low place dislocation layout, high -level battery is elevated by pad strip 3, low -level battery is directly placed in heat conduction board 2, adjacent battery vertical spacing increases significantly, realize the intensive placement of horizontal direction, compared with traditional tray, promote the density of placement, avoid the interference of adjacent battery air bag when gripper is grabbed.

[0020] In the utility model, high low place dislocation space is formed between heat conduction board 2 through pad strip 3, adjacent soft -walled battery 4 form high low place dislocation layout by setting up pad strip 3 between heat conduction board 2, high -level battery is elevated by pad strip 3, low -level battery is directly placed in heat conduction board 2, adjacent battery vertical spacing increases significantly, realized the intensive placement of horizontal direction, compared with traditional tray, promote the density of placement, avoided the interference of adjacent battery air bag when gripper is grabbed;

[0021] It is characterized in that pad strip 3 adopts screw connection or buckle type installation, pad strip 3 adopts screw or buckle type detachable design, supports quick replacement different height specifications, cooperates with the parallel spacing adjustment function of heat conduction board 2, can be compatible with a variety of soft -walled battery 4 of thickness, satisfies the diversified production demand, reduces the model change time of production line, improves the universality of equipment;

[0022] Pneumatic knockout mechanism includes micro -cylinder 5 and jackscrew 6, and jackscrew 6 is fixedly connected with micro -cylinder 5, and the bottom of micro -cylinder is fixedly connected with tray main body 1, and jackscrew 6 is arranged below pad strip 3, auxiliary grabbing mechanism includes guide groove 7 and elastic silica gel strip 8, guide groove 7 is set up in the outer wall of heat conduction board 2, and elastic silica gel strip 8 is fixedly connected with the inner wall of guide groove 7, the pneumatic knockout mechanism of the bottom of tray main body 1 can be elevated low -level battery 4 upward, reduces the friction resistance of battery and heat conduction board 2, cooperates with the guide groove 7 of the outer wall of heat conduction board 2 and guides the gripper path, makes single time of feeding time shorten, and efficiency improves, significantly improves the production capacity of automatic production line.

[0023] Working principle: in the idle place of the device, all the components are connected, the specific connection means should be referred to the working principle, the working order of each component is completed, the detailed connection means is the public technical knowledge in the art, the working principle and process are mainly introduced below, and no further explanation is given. When using the device, the tray body 1 is installed in parallel with multiple heat-conducting plates 2, the distance between adjacent heat-conducting plates 2 is suitable for the thickness of the soft-pack battery 4 to realize dense arrangement. By installing the pad strip 3 between part of the heat-conducting plates 2, the battery 4 at the corresponding position is lifted to a high position, and the battery 4 in the area without the pad strip is at a low position, forming a layered layout with high and low dislocation. During feeding and discharging, the clamping jaw first grabs the high-position battery, at this time, the low-position battery forms sufficient operating space with the high-position battery due to the height difference; when the low-position battery needs to be grabbed, the micro pneumatic cylinder 5 drives the ejector rod 6 to rise upward, slightly lifting the low-position battery and reducing the contact friction between the low-position battery and the heat-conducting plate 2, and the clamping jaw is accurately positioned along the guide groove 7 on the outer wall of the heat-conducting plate 2, and the elastic silica gel strip 8 avoids the deformation of the air bag by buffering and guiding. The structure realizes non-interference and efficient feeding and discharging under high-density placement through the collaborative design of high and low dislocation, pneumatic auxiliary ejection and guide buffering, and simultaneously, through the detachable pad strip 3 and adjustable heat-conducting plate 2 distance, different specifications of batteries are flexibly adapted, and the multifunctionality and production adaptability of the tray are improved.

[0024] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A battery tray structure for soft package batteries placed in high and low positions, comprising a tray main body (1) and a heat conducting plate (2), characterized in that: A plurality of groups of heat-conducting plates (2) are arranged in the tray body (1), the heat-conducting plates (2) are arranged in parallel, a gasket (3) is arranged between the heat-conducting plates (2), a pneumatic ejection mechanism is arranged at the bottom of the tray body (1), a soft package battery (4) is arranged between the heat-conducting plates (2), and an auxiliary grabbing mechanism is arranged on the outer wall of the heat-conducting plate (2). 2.The battery tray structure for high and low placement of soft package batteries according to claim 1, wherein, The heat-conducting plates (2) are formed with high-low dislocation space through the gasket (3). 3.The battery tray structure for high and low placement of soft package batteries according to claim 2, wherein, The gasket (3) is installed in a threaded connection or a buckle type. 4.The battery tray structure for high and low placement of soft package batteries according to claim 3, wherein, The pneumatic ejection mechanism comprises a micro air cylinder (5) and a ejector rod (6), the ejector rod (6) and the micro air cylinder (5) are fixedly connected, the bottom of the micro air cylinder (5) is fixedly connected with the tray body (1), and the ejector rod (6) is arranged below the gasket (3). 5.The battery tray structure for high and low placement of soft package batteries according to claim 1, wherein, The auxiliary grabbing mechanism comprises a guide groove (7) and an elastic silica gel strip (8), the guide groove (7) is arranged on the outer wall of the heat-conducting plate (2), and the elastic silica gel strip (8) is fixedly connected with the inner wall of the guide groove (7).