A kind of film with high stretching ratio and production method thereof

A stretching ratio and film technology, which is applied in the field of high stretching ratio film and its production, can solve the problems of inorganic salts and films that cannot be tightly combined at the molecular level, poor fracture resistance, and low stretching ratio, and achieve strength improvement , High retraction force, high stretch ratio effect

Active Publication Date: 2020-09-15
NINGBO HONGYAN PACKING MATERIAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] With the development of industrial automation, more and more large companies are switching from worker packaging and traditional semi-automatic packaging to fully automatic packaging lines. However, the traditional stretch film has low stretching ratio and poor fracture resistance, which cannot meet this high-speed packaging. High tensile automatic packaging equipment
For example, the Chinese patent application number CN201610617646.3 discloses a high-stretch heat-resistant PVC film formula. The film adopts a single-layer structure, and the main material is PVC. Salt, has good heat resistance, but the added inorganic salt cannot be tightly combined with the film at the molecular level, and it is easy to cause local fracture of the film during the high-speed stretching process of the automatic packaging equipment

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0037] A high-stretching film composed of outer layer, middle layer and inner layer;

[0038] The composition and weight parts of the outer layer:

[0039] 300 parts by weight of metallocene linear low density polyethylene;

[0040] 500 parts by weight of ethylene modified polyethylene terephthalate;

[0041] The composition and weight parts of the intermediate layer:

[0042] 100 parts by weight of maleic anhydride grafted low-density polyethylene;

[0043] Graphene oxide modified low density polyethylene 40 parts by weight;

[0044] The composition and weight parts of the inner layer:

[0045] 100 parts by weight of polyamide-11;

[0046] The preparation method of the graphene oxide modified low-density polyethylene includes adding graphene oxide to deionized water, uniformly dispersing the graphene oxide solution by ultrasonic stirring, and then adding the low-density polyethylene to the graphene oxide solution. Continue ultrasonic stirring to be uniform, and after vacuum filtration, UV...

Embodiment 2

[0059] A high-stretching film composed of outer layer, middle layer and inner layer;

[0060] The composition and weight parts of the outer layer:

[0061] 500 parts by weight of metallocene linear low density polyethylene;

[0062] 700 parts by weight of ethylene modified polyethylene terephthalate;

[0063] The composition and weight parts of the intermediate layer:

[0064] 300 parts by weight of maleic anhydride grafted low-density polyethylene;

[0065] 80 parts by weight of graphene oxide modified low-density polyethylene;

[0066] The composition and weight parts of the inner layer:

[0067] 200 parts by weight of polyamide-12;

[0068] The preparation method of the graphene oxide modified low-density polyethylene includes adding graphene oxide to deionized water, uniformly dispersing the graphene oxide solution by ultrasonic stirring, and then adding the low-density polyethylene to the graphene oxide solution. Continue to ultrasonically stir uniformly. After vacuum filtration, cros...

Embodiment 3

[0081] A high-stretching film composed of outer layer, middle layer and inner layer;

[0082] The composition and weight parts of the outer layer:

[0083] 400 parts by weight of metallocene linear low density polyethylene;

[0084] 600 parts by weight of ethylene modified polyethylene terephthalate;

[0085] The composition and weight parts of the intermediate layer:

[0086] Maleic anhydride grafted low density polyethylene 200 parts by weight;

[0087] Graphene oxide modified low density polyethylene 60 parts by weight;

[0088] The composition and weight parts of the inner layer:

[0089] 150 parts by weight of polyamide-11;

[0090] The preparation method of the graphene oxide modified low-density polyethylene includes adding graphene oxide to deionized water, uniformly dispersing the graphene oxide solution by ultrasonic stirring, and then adding the low-density polyethylene to the graphene oxide solution. Continue to ultrasonically stir uniformly. After vacuum filtration, cross-link...

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Abstract

The invention discloses a film with a high drawing ratio. The film is composed of an outer layer, an intermediate layer and an inner layer. The outer layer is a metallocene linear low density polyethylene and ethylene modified polyethylene glycol terephthalate blending modified resin; the intermediate layer comprises the compositions of maleic anhydride grafted low density polyethylene and graphene oxide modified low density polyethylene; and the inner layer is polyamide-11 or polyamide-12. The invention also discloses a production method of the film with the high drawing ratio. Compared withthe prior art, the packaging film has the advantages of high drawing ratio, low cost, good comprehensive performance, strong market competitive strength and the like. The invention also discloses theproduction method of the film with the high drawing ratio.

Description

Technical field [0001] The invention relates to the technical field of films, in particular to a film with a high stretching ratio and a production method thereof. Background technique [0002] Film types include single-layer film, composite film and co-extruded film. The shortcomings of single-layer film such as low mechanical strength and surface hardness, flammability and poor heat resistance limit its scope of use, and the co-extruded film market is relatively broad. Among them, the multi-layer co-extrusion technology is to use more than 3 extruders to melt and extrude resin materials with different functions such as PA, PE, PP, etc., and merge them in a die through their respective runners, and then blow them. Expanding and forming, cooling and compounding multiple layers of composite film. [0003] The film produced by the multi-layer co-extrusion method can well meet the needs of various industrial packaging, and has the incomparable advantages of dry composite film. By adj...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B29C48/92B29C69/02B32B27/06B32B27/32B32B27/36B32B27/34C08L23/08C08L67/02C08L51/06C08L23/06C08K3/04C08J5/18
CPCB32B27/08B32B27/32B32B27/327B32B27/34B32B27/36B32B2307/412B32B2307/54B32B2307/5825B32B2307/712B32B2307/7265C08J5/18C08J2351/06C08J2367/02C08J2423/06C08J2423/08C08K3/042
Inventor 李玉斌
Owner NINGBO HONGYAN PACKING MATERIAL
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