Degradable BOPP packing film and manufacturing method thereof
A packaging film and blending technology, which is applied in the field of BOPP packaging film and its production method, can solve the problems of inability to decompose, environmental pollution, and inability to use, reduce the structural regularity of polyketone, overcome thermal stability, and improve processing. performance effect
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Embodiment 1
[0023] Example 1: A degradable BOPP packaging film is formed by co-extrusion of surface layer, core layer and inner layer three-layer materials, wherein the surface layer and inner layer materials are blended by the following components and weight ratio: random Multi-component copolymerized polypropylene modified raw material 90%, slip agent 7%, anti-adhesive agent 3%; the core layer is made of the following components and weight ratio blending and copolymerization: homopolypropylene 90%, binary polyketone polymerization substance 7%, antistatic agent 3%;
[0024] Among them, the modified raw material of random multi-component copolymerized polypropylene is formed by blending and copolymerizing the following components and weight proportions: 92% of random ternary copolymerized polypropylene and 8% of binary polyketone polymer.
[0025] The preparation method is as follows:
[0026] (1) Preparation of random multi-component copolymerized polypropylene modified raw materials: ...
Embodiment 2
[0033] Example 2: A degradable BOPP packaging film, which is co-extruded from three layers of materials, the surface layer, the core layer and the inner layer, wherein the surface layer and the inner layer materials are blended by the following components and weight ratio: random multi-component Copolymerized polypropylene modified raw material 93%, slip agent 4%, anti-adhesive agent 3%; the core layer is made of the following components and weight ratio blending and copolymerization: homopolypropylene 93%, binary polyketone polymer 4%, antistatic agent 3%;
[0034] Among them, the random multi-component copolymerization polypropylene modified raw material is formed by blending and copolymerization of the following components and weight ratio: 88% of random ternary copolymerization polypropylene and 12% of binary polyketone polymer.
[0035] Its preparation method is as follows:
[0036] 1. After mixing the various materials of the above-mentioned surface layer and inner laye...
Embodiment 3
[0043] Example 3: The basic components and manufacturing method are the same as in Example 1, except that the weight ratio of the components is different: the surface layer and the inner layer material are blended by the following components and weight ratio: random multi-component Copolymerized polypropylene modified raw material 92%, slip agent 6%, anti-sticking agent 2%; the core layer is formed by blending and copolymerizing the following components and weight ratio: homopolypropylene 92%, binary polyketone polymer 6%, antistatic agent 2%;
[0044] Among them, the modified raw material of random multi-component copolymerized polypropylene is obtained by blending and copolymerizing the following components and weight proportions: 90% of random terpolymerized polypropylene and 10% of binary polyketone polymer.
[0045] Various functional tests were carried out on the film prepared above, and the various data obtained all reached the ideal effect measured in Example 1.
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