Sag resistant polypropylene and preparation method thereof

A polypropylene and linear polypropylene technology, which is applied in the field of polymer material synthesis, can solve the problems of the physical and mechanical properties of fragile materials, the influence of the physical and mechanical properties of polypropylene, and the complex process, and achieves low preparation cost and high anti-sag. The effect of sex, simple craftsmanship

Inactive Publication Date: 2010-08-18
BEIJING TECHNOLOGY AND BUSINESS UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Among the above-mentioned modification methods, the long-chain branching technology requires irradiation equipment, and the process is complicated, resulting in high modification costs, and the price of the obtained long-chain branched polypropylene is almost twice that of linear polypropylene. , and it is difficult to control the appearance of reaction by-products such as gels and oligomers during the irradiation process. In fact, what is obtained is a mixture of various products, which can easily damage the physical and mechanical properties of the material while improving the anti-sag performance; In the blending modification method, the improvement of anti-sagging performance benefits from the addition of other polymer materials, and the addition of a high amount can make the anti-sagging performance of polypropylene reach a satisfactory level, while high content of The addition of heterogeneous polymer materials can also negatively affect the physical and mechanical properties of polypropylene

Method used

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  • Sag resistant polypropylene and preparation method thereof
  • Sag resistant polypropylene and preparation method thereof
  • Sag resistant polypropylene and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1-20 and comparative example 1-4

[0035] main ingreadient:

[0036] Polypropylene 1 (PP1), F401, Panjin Ethylene Co., Ltd.;

[0037] Polypropylene 2 (PP2), T36F, Qilu Petrochemical Co., Ltd.;

[0038] Organic nanoclay, I.44P, American nanocor company;

[0039] Compatibilizer 1, maleic anhydride grafted polypropylene, Polybond 3200, melt flow rate 110g / 10min (190°C), maleic anhydride grafting rate 1%, U.S. Compton Company;

[0040] Compatibilizer 2, maleic anhydride grafted polypropylene, Fusabond 353D, melt flow rate 450g / 10min (190°C), maleic anhydride grafting rate 1.4%, U.S. DuPont;

[0041] Compatibilizer 3, maleic anhydride grafted polypropylene, Fusabond 511D, maleic anhydride grafting rate 0.5%, U.S. DuPont (the grafting rate of three kinds of compatibilizers is all provided by product supplier);

[0042] Antioxidant, IRGANOX1010, Ciba Specialty Chemicals;

[0043] White oil, chemically pure, Tianjin Huiying Chemical Reagent Co., Ltd.;

[0044] The composition of the anti-sag polypropylene provided...

Embodiment 9

[0057] In Examples 9-16 and Comparative Examples 3-4, different contents of compatibilizer Fusabond 353D were added to polypropylene F401 and T36F, and the anti-sag properties of the prepared anti-sag polypropylene were as follows: image 3 and Figure 4 As shown, among them, image 3 Curve 1 in the graph represents polypropylene F401, curves 2-5 represent the sag-resistant polypropylene prepared in Examples 9-12, and curve 6 represents the sag-resistant polypropylene prepared in Comparative Example 3; Figure 4 Curve 1 in the graph represents polypropylene T36F, curves 2-5 represent the sag-resistant polypropylene prepared in Examples 13-16, respectively, and curve 6 represents the sag-resistant polypropylene prepared in Comparative Example 4. From image 3 and Figure 4 It can be seen that the anti-sag performance of the anti-sag polypropylene prepared by adding compatibilizer Fusabond 353D is greatly improved compared with that of the polypropylene matrix F401 and T36F. ...

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Abstract

The invention relates to sag resistant polypropylene and a preparation method thereof, wherein the raw materials thereof are as follows in parts by weight: 100 parts of linear polypropylene, 0.5-5 parts of compatilizer, 1-5 parts of nano-clay and 0.5-1 part of antioxidant; and the product is obtained by extruding the raw materials in an extruder at the temperature of 175-205 DEG C. The preparation method comprises the following steps: mixing the linear polypropylene and compatilizer; adding the nano-clay and antioxidant, mixing to obtain a mixed material; adding the mixed material in a dual-screw extruder; extruding and pelletizing at the temperature of 175-205 DEG C; and drying. The invention intercalates the polymer large-molecular chain between sheets of a stack structure of the nano-clay so as to generate a polypropylene / nano-clay composite material with an intercalated structure, and the intercalated stack structure assembly services as a physical linking point in the polypropylene melt, thus improving elasticity of the polypropylene melt, and enhancing the slag-resistance performance of the polypropylene melt.

Description

technical field [0001] The invention relates to a polypropylene polymer material and a preparation method thereof, in particular to a polypropylene with high sag resistance and a preparation method thereof, belonging to the field of polymer material synthesis. Background technique [0002] Sag resistance is the ability of a polymer melt to bear its own weight. It is a rheological property of a material and is usually measured in a molten state. General-purpose polypropylene is a linear polymer, its viscosity drops sharply after the melting point, and it does not exhibit "strain hardening" characteristics. The melt has poor sag resistance, resulting in uneven product wall thickness during thermoforming; extrusion coating , Edge curling and shrinkage during calendering; cell rupture and collapse during extrusion foaming, these problems limit the application of polypropylene in the fields of thermoforming, extrusion coating, extrusion foaming and blow molding application. [...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L23/10C08L51/06C08K9/04C08K3/34B29C47/00
Inventor 王向东张玉霞陈士宏许国志刘本刚陈斌艺
Owner BEIJING TECHNOLOGY AND BUSINESS UNIVERSITY
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