High-strength wear-resistant environmental-friendly plastic and preparing method thereof

An environmentally friendly plastic, high-strength technology, applied in the field of plastics, can solve the problems of shortening the service life, poor environmental performance, endangering people's health, etc., to achieve improved tensile strength and elongation at break, excellent impact and tensile strength performance, The effect of good environmental compatibility

Inactive Publication Date: 2016-02-24
ANHUI GUANGYUAN TECH DEV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented technology relates to making polymers from certain types of chemical compounds called piloacea aminobenzoate (PABA) or its modified analogues. These polymers have several advantages over other similar ones: they degrade easily without harming environmentally friendly substances like nitrous gases, while still maintain their beneficial characteristics for various applications including biodegradables, packaging films, medical devices, automobile parts, etc.. They provide superior durability compared to existing resins due to strong cohesive forces between chains caused by aliphatic groups on both ends of each chain. Additionally, these polymers exhibit enhanced toughness when formed into products made up of different components. Overall, this technical results lead to increased demand for new type of biobased polymers suitable for industrial production.

Problems solved by technology

This technical problem addressed in this patented text relates to finding ways to recycle or dispose of excessive amounts of unwanted material made up mostly of common types of plastic (PP) and other synthetic polymers like polypropylene). These disposables pose potential harmful effects when exposed over many decades through decomposition into small pieces called white rubbish, causing significant negative ecologic consequences including contamination of groundwater resources with pesky residue remnants containing various compounds found at levels above specific limits. Additionally, these disposables may contain metal elements that could potentially enter food sources negatively affected due their high content level relative to non-metallics commonly added in consumer goods manufacturing processes.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] A kind of high-strength wear-resistant environmental protection plastic that the present invention proposes, its raw material comprises by weight: 60 parts of PAA copolymer, 50 parts of polylactic acid PLA, 10 parts of ethylene-vinyl acetate copolymer EVA, 8 parts of plant powder, 3 parts of graphite fiber, silane 5 parts of coupling agent KH5505, 3 parts of ABS grafted maleic anhydride, 6 parts of styrene-butadiene thermoplastic elastomer SBS, 5 parts of methyl methacrylate-butadiene-styrene copolymer MBS, hydrogenated styrene-butadiene 5 parts of ene-styrene block copolymer SEBS, 3 parts of dipentaerythritol ester PCB, 6 parts of epoxy soybean oil octyl ester, 2 parts of tributyl citrate, 3 parts of monoglyceride stearate, 15 parts of kaolin, coal ash powder 12 parts, 5 parts of silk white powder, 10 parts of white carbon black, 1 part of antioxidant SP; wherein the PAA copolymer is to add 6-aminocaproic acid and γ-aminobutyric acid into the reaction kettle, and use de...

Embodiment 2

[0017] A kind of high-strength wear-resistant environmental protection plastic that the present invention proposes, its raw material comprises by weight: 80 parts of PAA copolymer, 30 parts of polylactic acid PLA, 25 parts of ethylene-vinyl acetate copolymer EVA, 4 parts of plant powder, 6 parts of graphite fiber, silane 2 parts of coupling agent KH5502, 8 parts of ABS grafted maleic anhydride, 3 parts of styrene-butadiene thermoplastic elastomer SBS, 10 parts of methyl methacrylate-butadiene-styrene copolymer MBS, hydrogenated styrene-butadiene 1 part of ene-styrene block copolymer SEBS, 8 parts of dipentaerythritol ester PCB, 3 parts of epoxy soybean oil octyl ester, 5 parts of tributyl citrate, 1 part of monoglyceride stearate, 18 parts of kaolin, coal ash powder 7 parts, 10 parts of silk white powder, 4 parts of white carbon black, 3 parts of antioxidant SP; wherein said PAA copolymer is that 6-aminocaproic acid, γ-aminobutyric acid are added in the reactor, with deionized ...

Embodiment 3

[0019]A kind of high-strength wear-resistant environmental protection plastic that the present invention proposes, its raw material comprises by weight: 65 parts of PAA copolymer, 45 parts of polylactic acid PLA, 12 parts of ethylene-vinyl acetate copolymer EVA, 7 parts of plant powder, 4 parts of graphite fiber, silane 4 parts of coupling agent KH5504, 5 parts of ABS grafted maleic anhydride, 5 parts of styrene-butadiene thermoplastic elastomer SBS, 6 parts of methyl methacrylate-butadiene-styrene copolymer MBS, hydrogenated styrene-butadiene 4 parts of ethylene-styrene block copolymer SEBS, 5 parts of dipentaerythritol ester PCB, 5 parts of epoxy soybean oil octyl ester, 3 parts of tributyl citrate, 2 parts of monoglyceride stearate, 16 parts of kaolin, coal ash powder 10 parts, 8 parts of silk white powder, 8 parts of white carbon black, 1 part of antioxidant SP; wherein the PAA copolymer is to add 6-aminocaproic acid and γ-aminobutyric acid into the reaction kettle, and use...

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PUM

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Abstract

High-strength wear-resistant environmental-friendly plastic and a preparing method thereof are disclosed. The plastic comprises following raw materials by weight: PAA copolymer, polylactic acid (PLA), ethylene-vinyl acetate copolymer (EVA), plant powder, graphite fiber, a silane coupling agent KH550, ABS-grafted maleic anhydride, styrene-butadiene thermoplastic elastomer (SBS), methyl methacrylate-butadiene-styrene copolymer (MBS), hydrogenated styrene-butadiene-styrene block copolymer (SEBS), dipentaerythritol ester PCB, octyl esters of epoxidized soybean oil, tributyl citrate, glyceryl monostearate, kaolin, coal ash, silk white powder, white carbon black and an antioxidant SP. The PAA copolymer is prepared by reacting 6-aminocaproic acid and gamma-aminobutyric acid in a mole ratio of 5-10:0.5-4. The plastic is excellent in wear resistance and strength, and can be fully degraded into water and carbon dioxide under actions of light/bacteria so as to avoid environment pollution.

Description

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Claims

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Application Information

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Owner ANHUI GUANGYUAN TECH DEV
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