Nanoparticles and maleic anhydride composite grafted polyolefin elastomer and its preparation

A polyolefin elastomer and nanoparticle technology, applied in the field of polymers, can solve the problems of toughened nylon processability, high degree of crosslinking of grafts, loss of nylon tensile strength, etc., to improve fluidity and toughness Efficiency, improvement of grafting efficiency, and improvement of processability

Active Publication Date: 2018-04-27
FINE BLEND POLYMER SHANGHAI CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The addition of conventional toughening agents to stably realize the super-toughening of nylon requires the addition of more than 15wt% of toughening agents, but the grafts made by conventional methods have a high degree of crosslinking, poor fluidity, and are not easy to disperse. The processability of toughened nylon has a great impact. In addition, since POE, EPDM, etc. are composed of flexible chain segments, a higher addition amount will lead to a significant loss of nylon tensile strength

Method used

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  • Nanoparticles and maleic anhydride composite grafted polyolefin elastomer and its preparation
  • Nanoparticles and maleic anhydride composite grafted polyolefin elastomer and its preparation
  • Nanoparticles and maleic anhydride composite grafted polyolefin elastomer and its preparation

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] According to the formula in Table 1, each component was weighed for subsequent use, and the POE used for preparing the POE-nanoparticle functionalized masterbatch was added from the main feeding port of the twin-screw extruder, and the three used POE-nanoparticle functionalized masterbatches were prepared. Ethylamine, antioxidant 1076 and antioxidant 168, microcrystalline paraffin, ethyl benzoate surface-modified nano-montmorillonite were added from the feeding port on the second side, and ultrasonic waves were introduced at the position immediately behind the feeding port on the second side Generating equipment, ultrasonic power is 600 ~ 1000W, through reactive extrusion to obtain POE-nanoparticle functionalized masterbatch;

[0036] After the POE for preparing polyolefin elastomer and the POE-nanoparticle functionalized masterbatch are uniformly mixed by a high-speed mixer, they are added from the main feeding port of the twin-screw extruder, and the maleate used for p...

Embodiment 2

[0038]According to the formula in Table 1, each component was weighed for subsequent use, and the POE used for preparing the POE-nanoparticle functionalized masterbatch was added from the main feeding port of the twin-screw extruder, and the three used POE-nanoparticle functionalized masterbatches were prepared. Ethylamine, antioxidant 1076 and antioxidant 168, microcrystalline paraffin, ethyl benzoate surface-modified nano-montmorillonite were added from the feeding port on the second side, and ultrasonic waves were introduced at the position immediately behind the feeding port on the second side Generating equipment, ultrasonic power is 600 ~ 1000W, through reactive extrusion to obtain POE-nanoparticle functionalized masterbatch;

[0039] After the POE for preparing polyolefin elastomer and the POE-nanoparticle functionalized masterbatch are uniformly mixed by a high-speed mixer, they are added from the main feeding port of the twin-screw extruder, and the maleate used for pr...

Embodiment 3

[0041] It is standby to weigh each component according to the formula of Table 1, the POE used for preparing POE-nanoparticle functionalized masterbatch is added from the main feeding port of the twin-screw extruder, and the used POE for preparing POE-nanoparticle functionalized masterbatch is added. The oxide is added from the first side feed port, and the triethylamine, antioxidant 1076 and antioxidant 168, microcrystalline paraffin, and ethyl benzoate surface-modified nano-membrane used for the preparation of POE-nanoparticle functional masterbatch are added. The desoiling is added from the feeding port on the second side, and the ultrasonic generating equipment is introduced at the position close to the feeding port on the second side. The ultrasonic power is 600-1000W, and the POE-nanoparticle functionalized masterbatch is obtained through reaction extrusion;

[0042] After the POE for preparing polyolefin elastomer and the POE-nanoparticle functionalized masterbatch are u...

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Abstract

The present invention relates to a polyolefin elastomer compound grafted with nanoparticles and maleic anhydride and its preparation; the polyolefin elastomer comprises POE, POE-nanoparticle functionalized masterbatch, maleic anhydride Anhydrides, peroxides, crosslinking inhibitors, antioxidants and lubricants. The preparation method of the polyolefin elastomer is: after mixing the POE of the polyolefin elastomer and the functionalized masterbatch of POE-nano particles uniformly, adding from the main feeding port of the twin-screw extruder, adding maleic anhydride, After mixing the peroxide, cross-linking inhibitor, antioxidant and lubricant, they are added from the first side feed port, and ultrasonic treatment is performed while blending to obtain the polyolefin elastomer. The advantages of the present invention are: 1. The toughening efficiency of polyolefin elastomer in toughened nylon is improved by introducing composite grafting of nano rigid particles; 2. The industrialization of rigid particle toughening is realized through ultrasonic technology and step-by-step processing Production.

Description

technical field [0001] The invention belongs to the field of macromolecules, and relates to a polyolefin elastomer compound-grafted with nanoparticles and maleic anhydride and a preparation method thereof. Background technique [0002] Nylon has good comprehensive mechanical properties, and is wear-resistant and oil-resistant. In recent years, it has been ranking first among the five major engineering plastics. There are high requirements for toughness in many fields. It is of great theoretical and practical significance to study the toughening efficiency of tougheners and take into account other properties. [0003] The toughening agent for nylon is generally POE-g-MAH or EPDM-g-MAH. The addition of conventional toughening agents to stably realize the super-toughening of nylon requires the addition of more than 15wt% of toughening agents, but the grafts made by conventional methods have a high degree of crosslinking, poor fluidity, and are not easy to disperse. The proces...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08F255/02C08F222/06C08F2/56C08K13/06C08K9/04C08K9/06C08K3/36C08K3/30C08K3/34C08L77/02C08L51/06
Inventor 齐阳城汤俊杰段浩李昌鸿
Owner FINE BLEND POLYMER SHANGHAI CO LTD
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