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A soft packaging composite material that is easy to be formed by cold stamping, its manufacturing method and molding method

A composite material and soft technology, applied in the direction of chemical instruments and methods, layered products, metal layered products, etc., can solve problems such as improper molding, large drop, electrolyte pollution, etc., to improve depth and yield, The effect of reducing the coefficient of friction and improving workability

Active Publication Date: 2016-05-11
FSPG HI TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] However, for some electronic components or pharmaceuticals that have high requirements for cleanliness and sealing, packaging materials coated with lubricants on the inner surface will not be suitable. Pollution and contamination of the electrolyte in the battery or capacitor will also affect the original heat-sealing performance of the packaging material. The smoother the surface performance of the packaging material, the greater the decline in heat-sealing performance, and the more likely it is to occur after packaging due to water vapor, Failure of package contents due to oxygen infiltration
[0008] At the same time, the cold stamping of soft packaging composite materials for electronic components in the prior art, especially the packaging materials of lithium-ion secondary batteries or capacitors, still has long-term technical problems of punching shell damage and low processing yield due to improper molding.

Method used

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  • A soft packaging composite material that is easy to be formed by cold stamping, its manufacturing method and molding method
  • A soft packaging composite material that is easy to be formed by cold stamping, its manufacturing method and molding method
  • A soft packaging composite material that is easy to be formed by cold stamping, its manufacturing method and molding method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0067] The flexible packaging composite material of this embodiment is configured according to the above-mentioned X shape.

[0068] Its general process is as follows figure 1 As shown, first, while obtaining the thermoplastic resin film layer A of EVA (hot melt adhesive resin layer A2) and mPE (surface layer heat-sealing layer A1), thermocompression compounding obtains the laminated composite body AB of the thermoplastic resin film layer / aluminum foil layer ; Then, use the method of heating and rolling the AB film to form a fine convex-concave pattern on the surface of the heat-sealing layer A1 of the AB film; finally, combine the ON (heat-resistant or printed film layer C) with the dry composite method. The lower surface Bb of the aluminum foil layer B is bonded to form a multi-layer aluminum-plastic laminated composite that is easy to be formed by cold stamping.

[0069] Specifically, the above method includes the following steps:

[0070] A, by casting co-extrusion, obta...

Embodiment 2

[0077] The difference between this embodiment and Embodiment 1 is: 1. The flexible packaging composite material is formed according to the above-mentioned Y shape; 2. When rolling to form convex and concave lines during the compounding process, the surface of the cooling roller 301 adopts diamond-shaped lines, and the lines are convex and concave. The depth is 2 μm; 3. In step C, use the heating guide roller group 6 to heat (such as image 3 shown).

[0078] Carry out the same experimental test as embodiment 1. The test results are shown in Table 1.

Embodiment 3

[0080] The difference between this embodiment and Embodiment 1 is: 1. The flexible packaging composite material is composed of the above-mentioned Z shape; 2. When rolling to form convex and concave lines in the compounding process, the surface of the cooling roller 301 adopts a grid pattern, and the lines are convex and concave. The depth is 10 μm.

[0081] Carry out the same experimental test as embodiment 1. The test results are shown in Table 1.

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Abstract

The invention provides an easy-cold-punch-molding soft packaging composite material. The composite material comprises a thermoplastic resin film layer, an aluminum foil metal core layer, and a heatproof or printing film layer; the aluminum foil metal core layer is positioned between the thermoplastic resin film layer and the heatproof or printing film layer; the thermoplastic resin film layer comprises a surface heat-sealing layer and a hot melt adhesive resin layer compounded with the aluminum foil metal core layer; and the surface of the heat-sealing layer has fine slight convex-concave lines formed through heating roll molding in the compounding process, and the convex-concave depth of the fine slight convex-concave lines is 0.5-25mum. By utilizing the fine convex-concave characteristics of the fine slight convex-concave lines, a bonding problem formed by the clinging of the surface of the composite material and a die can be avoided during stamping, and air can be residual in a slit between the die and the convex-concave lines on the surface of the composite material during the stamping, so the surface friction coefficient value of the composite material is greatly reduced, and it is in favor of demolding the composite material in the cold punch molding process. The invention also provides a preparation method of the composite material, and a molding method when used.

Description

technical field [0001] The invention relates to a soft packaging composite material which is easy to be formed by cold stamping and a corresponding manufacturing method and a molding method during use, in particular to a composite material with high formability, cleanliness and sealing which is suitable for post-cold stamping processing applications. Flexible packaging composite materials for electronic components or pharmaceuticals with high performance requirements, as well as the corresponding manufacturing methods and molding methods during use. Background technique [0002] In recent years, with the convenient development of office automation and intelligent life technology, various electronic devices such as mobile communication terminals, laptop computers, military electronic tools, handheld DVD players, power vehicles, and energy storage batteries have gradually become more advanced. Performance, miniaturization, light weight, and thinning upgrades require that elect...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B32B3/28B32B15/08B32B15/20B32B15/04
Inventor 徐冰吴耀根李永鸿
Owner FSPG HI TECH
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