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A kind of high-efficiency enhanced flame-retardant functional master batch for PBT direct injection molding and preparation method thereof

A technology of injection molding and functional masterbatch, applied in the field of high-efficiency reinforced flame-retardant functional masterbatch and its preparation, can solve the problems of mismatch of processing temperature and decrease of fiber length-diameter ratio, so as to improve reinforcement efficiency and improve interface bonding. properties, improve the effect of modification efficiency

Active Publication Date: 2021-03-23
江苏万纳普新材料科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Using the method of processing the two masterbatches separately can obtain the following technical advantages: ① Avoid direct blending of glass fibers and brominated flame retardants to generate internal friction and heat generation, resulting in the decomposition of halogenated flame retardants; ② Avoid inorganic flame retardants The fiber length-diameter ratio between the flame synergist (such as antimony trioxide or zinc borate) and the glass fiber is greatly reduced due to mutual shear wear; The problem of the mismatching processing temperature of the modified system for melt blending; ④Using melt pultrusion technology to prepare a reinforced masterbatch with a larger fiber aspect ratio than the traditional chopped glass fiber reinforced masterbatch; ⑤Acrylic acid diglycidyl ether Grafted elastic ionomer is used as the carrier component of A masterbatch, and its reactive end group can have the greatest chance of contact with the end group of PBT resin in the environment without interference from flame retardant powder, so as to maximize its toughening effect

Method used

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  • A kind of high-efficiency enhanced flame-retardant functional master batch for PBT direct injection molding and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] A PBT resin is directly injected with high-efficiency enhanced flame retardant function masterbatch, which is combined from two parent particles of A and B. The material mass of the material of A mother particles is as follows:

[0037] glass fiber 70.0kg High flow PBT resin 20.0kg Acrylic dipholic glycerol ether grafted sodium ion crosslinking ethylene-octene-acrylic copolymerus 9.7kg Antioxidant 300.0g

[0038] Antioxidant is 1,3,5-trimethyl-2,4,6- (3,5-di-tert-butyl-4-hydroxybenzyl) benzene (trade name is an antioxidant 1330) and double ( 2,4-dimletched phenyl) pentaerythritol diphosphate (trade name is an antioxidant S9228) composed of a mass ratio of 1: 1.

[0039] The material quality of its b masterbatch is like:

[0040] Brominated polystyrene 35.0kg Epoxy resin 35.0kg Trioxide 15.0kg Acrylic dipholic glycerol ether grafted sodium ion crosslinking ethylene-octene-acrylic copolymerus 8.0kg Poly (sucstylene gly...

Embodiment 2

[0044] A PBT resin is directly injected with high-efficiency enhanced flame retardant function masterbatch, which is combined from two parent particles of A and B. The material mass of the material of A mother particles is as follows:

[0045] glass fiber 50.0kg High flow PBT resin 40.0kg Acrylic diacolgyl ether grafting zinc ion crosslinking ethylene-octene-acrylic copolymerus 9.7kg Antioxidant 300.0g

[0046] Antioxidant is 1,3,5-trimethyl-2,4,6- (3,5-di-tert-butyl-4-hydroxybenzyl) benzene (trade name is an antioxidant 1330) and double ( 2,4-dimletched phenyl) pentaerythritol diphosphate (trade name is an antioxidant S9228) composed of a mass ratio of 1: 1.

[0047] The material quality of its b masterbatch is like:

[0048] Brominated polystyrene 35.0kg Epoxy resin 20.0kg Trioxide 20.0kg Zinc borate 10.0kg Acrylic diacolgyl ether grafting zinc ion crosslinking ethylene-octene-acrylic copolymerus 10.0kg Poly (skelyet...

Embodiment 3

[0052] A PBT resin is directly injected with high-efficiency enhanced flame retardant function masterbatch, which is combined from two parent particles of A and B. The material mass of the material of A mother particles is as follows:

[0053] glass fiber 60.0kg High flow PBT resin 30.7kg Acrylic dipholic glycene grafting barium ion crosslinking ethylene-octene-acrylic copolymerus 9.0kg Antioxidant 300.0g

[0054] Antioxidant is 1,3,5-trimethyl-2,4,6- (3,5-di-tert-butyl-4-hydroxybenzyl) benzene (trade name is an antioxidant 1330) and double ( 2,4-dimletched phenyl) pentaerythritol diphosphate (trade name is an antioxidant S9228) composed of a mass ratio of 1: 1.

[0055] The material quality of its b masterbatch is like:

[0056] Ethyl - dual (tetraphenylimide) 65.0kg Trioxide 20.0kg Acrylic dipholic glycene grafting barium ion crosslinking ethylene-octene-acrylic copolymerus 9.5kg Poly (succinate - phenylbutaisyl butnesate) 3....

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Abstract

The invention belongs to the technical fields of plastic modification and processing and particularly relates to an efficient enhanced flame-retardant multifunctional master batch which can be directly applied to the direct injection molding of PBT products and a preparation method of the master batch. The multifunctional master batch is formed by the combination of a master batch A and a master batch B, wherein the master batch A contains the following components in percentage by weight: 50.0wt%-70.0wt% of glass fibers, 15.0wt%-30.0wt% of high-flow PBT resin, 5.0wt%-10.0wt% of diglycidyl ether acrylate grafted elastic ionomer and 0.1wt%-0.3wt% of an antioxidant. Compared with a traditional plastic functional master batch, the prepared functional master batch has the advantages that the mutual loss of the modification effects caused due to the mutual shear loss between the glass fibers and the flame retardant in the processing process of an enhanced bromine-series PBT resin modification system is avoided, the problem that the processing temperatures of two modification systems are not matched is solved, and the modification effects of the two systems are remarkably improved; and the multifunctional master batch has the characteristics of easiness in dispersion and processing and can be subjected to injection molding after being simply mixed with PBT resin in proportion, and anexcellent modification effect is achieved.

Description

Technical field [0001] The present invention belongs to the field of plastic modification and processing technology, and more particularly to a high-efficiency enhanced flame retardant function masterbatch which can be applied directly to the injection molding of PBT products and its preparation method thereof. Background technique [0002] Using a twin-screw extruder is a conventional method for performing plastic modification, and the thermoplastic and various types of modified additives can be continuously mixed with various types of modified additives using the same mixing effect of the same-to-directional double screw extruder. The granulation is produced, and the prepared modified special material will be used again for injection or extrusion processing into various articles. This technology route not only enables physical mechanical properties of the strength, toughness, stiffness, creep, creep, anti-flex, etc. of the plastic product, but also impart flame retardant, condu...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08L67/02C08L51/06C08L25/06C08L63/00C08L69/00C08L25/18C08K7/14C08K3/22C08K3/38C08K5/03C08J3/22
CPCC08J3/226C08J2425/06C08J2451/06C08J2463/00C08J2467/02C08J2469/00C08K3/2279C08K5/03C08K7/14C08K2003/387
Inventor 李翰卿汪晓东邱小龙曹津津
Owner 江苏万纳普新材料科技有限公司
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