CN1204189C - Syndiotactic/polyester/clay nano composite material - Google Patents

Syndiotactic/polyester/clay nano composite material Download PDF

Info

Publication number
CN1204189C
CN1204189C CN 02111305 CN02111305A CN1204189C CN 1204189 C CN1204189 C CN 1204189C CN 02111305 CN02111305 CN 02111305 CN 02111305 A CN02111305 A CN 02111305A CN 1204189 C CN1204189 C CN 1204189C
Authority
CN
China
Prior art keywords
polyester
syndiotactic
matrix material
clay
clay nano
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 02111305
Other languages
Chinese (zh)
Other versions
CN1450108A (en
Inventor
林尚安
王进
祝方明
周文乐
黎华明
沈志刚
卢文奎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China Petroleum and Chemical Corp
Sinopec Shanghai Research Institute of Petrochemical Technology
National Sun Yat Sen University
Original Assignee
China Petroleum and Chemical Corp
Sinopec Shanghai Research Institute of Petrochemical Technology
National Sun Yat Sen University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by China Petroleum and Chemical Corp, Sinopec Shanghai Research Institute of Petrochemical Technology, National Sun Yat Sen University filed Critical China Petroleum and Chemical Corp
Priority to CN 02111305 priority Critical patent/CN1204189C/en
Publication of CN1450108A publication Critical patent/CN1450108A/en
Application granted granted Critical
Publication of CN1204189C publication Critical patent/CN1204189C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Compositions Of Macromolecular Compounds (AREA)

Abstract

The present invention relates to a syndiotactic polystyrene/polyester/clay nanometer composite material which mainly solves the problems of high brittleness of syndiotactic polystyrene, low impact strength of syndiotactic polystyrene and poor combination performance of a composite material of syndiotactic polystyrene, and the problems exist in the previous art. The present invention nicely solves the problems by adopting the technical scheme that a nanometer compound of sulfonated syndiotactic polystyrene and polyester/clay is added into a syndiotactic polystyrene/polyester material. The obtained nanometer composite material has the characteristics of high impact strength, high strength and high heat resistance. The nanometer composite material can be used in the industrial production of the syndiotactic polystyrene/polyester nanometer composite material.

Description

The syndiotactic/polyester/clay nano matrix material
Technical field
The present invention relates to the syndiotactic/polyester/clay nano matrix material.
Background technology
Syndiotactic polystyrene is a kind of novel engineering plastics, and it is different with general purpose polystyrene, has the following advantages: (1) fusing point height is 270 ℃; (2) degree of crystallinity height, Tc can be controlled at the scope of a broad, is fit to conventional plastics forming method; (3) heat-resisting, chemical resistance is good.Thereby having fabulous development prospect, potential market is boundless.The defective of syndiotactic polystyrene is that fragility is big, thereby has limited its range of application.Must carry out modification to it, with the application of commensurate structure material.The characteristic performance of the syndiotactic polystyrene after the improvement is that density is low, good toughness, good electrical property, can with other engineering plastics competition.The occasion that engineering plastics such as nearly all PET, PBT, PA, PPS are used can be used syndiotactic polystyrene.Aspect electrical equipment, electronics, can be used for high-frequency device, satellite antenna, phone, unicircuit, printed-wiring board (PWB), microwave stove etc.Aspect trolley part, can do safety lever, fuel tank, high temperature resistant motor part etc.Aspect wrapping material, can make heat-resisting, oil resistant, anti-vapor vessel, food packaging film etc.In addition, can also make high gloss insulating film, magnetic recording body, camera housing, fibre product and industrial membrane etc.
The study on the modification of syndiotactic polystyrene mainly concentrates on and strengthens and blending and modifying two aspects.The former normally with glass fibre strengthen (EP508303, EP591823, US5200454, JP10017740).But because syndiotactic polystyrene is a kind of non-polar polymer, so the interface of polarity glass fibre and syndiotactic polystyrene bonding is poor, its interface often becomes the weakest link of mechanical property.Therefore pure adopt glass fibre filled method to the syndiotactic polystyrene over-all properties particularly the raising of impact property be not clearly, and processing difficulties.The latter mainly be with syndiotactic polystyrene respectively with elastomerics (as SEBS, SIS, SBS etc.) (US5391603, JP08319386, JP09052959), polyphenylene oxide (PPO) (EP587098, EP546497, JP08157668), general engineering plastic (as polymeric amide, polyester etc.) (Chinese invention patent, application number: 01105846.3,01105845.5,01105844.7) and blend is with the impact property of further raising syndiotactic polystyrene.Wherein syndiotactic polystyrene and polyphenylene oxide (PPO) blend, because consistency is better between the two, thereby the good combination property of blend.But the blend application is restricted owing to polyphenylene oxide yields poorly, price is high.The employing sulfonated syndiotactic polyphenylethylene is an expanding material, syndiotactic polystyrene and general engineering plastic such as polymeric amide are carried out melt blending, the matrix material that obtains has the shock strength height, and the equal characteristics preferably of flexural strength and tensile strength, is one of effective ways of syndiotactic polystyrene modification.But the intensity of material and thermotolerance still also have the necessity that further improves.Adopt elastomerics (SEBS, SIS, SBS etc.) and syndiotactic polystyrene blend can significantly improve the shock resistance of syndiotactic polystyrene really.But its drawback is also more outstanding, the one, adopt syndiotactic polystyrene and elastomeric graft copolymer as expanding material, wherein the preparation of syndiotactic polystyrene and elastomeric graft copolymer normally earlier with the syndiotactic polystyrene grafted maleic anhydride, obtains graft copolymer by other chemical reaction again.In order to make the syndiotactic polystyrene grafted maleic anhydride, must when syndiotactic polymerization of phenylethylene, add a spot of alpha-methyl styrene and carry out copolymerization.This will make polymerization technique become complicated, also can the taxis and the performance of polymerisate be had a negative impact simultaneously.Industrial application is undesirable.The 2nd, the over-all properties of blend such as thermotolerance, intensity and modulus descend more.For this reason, document (JP06116454, JP06345923 JP07048488) waits and to have reported that adding mineral filler (as glass etc.) in syndiotactic polystyrene/elastomer blended system strengthens, and introduces intensity and the resistance toheat that makes material unaccounted-for (MUF) with compensation because of elastomerics.But because bonding is poor between mineral filler and the polymer-based carbon body interface, filler does not reach the nano-dispersed level in polymeric matrix simultaneously, thereby the enhancing amplitude is limited.If can realize that the dispersion of mineral filler in containing the multicomponent polymeric matrix of syndiotactic polystyrene reaches nanoscale, just rigidity, dimensional stability and the thermostability of inorganics and toughness, processibility and the dielectric properties perfect adaptation of multicomponent polymeric might be got up the syndiotactic polystyrene based nano composite material of obtained performance excellence.Adopt intercalation compound-method that blend combines is expected to reach this target.
At present, intercalation complex method (comprising intercalation polymeric method and polyalcohol intercalation method) has become the important method in organic-inorganic nanocomposite (the being also referred to as the organic-inorganic nano hybrid materials) preparation, its preparation process is that the polymer macromolecule chain is inserted between the interlayer of the silicate clay with laminate structure, forms the sequential 2 D nano composite material; In addition, polymer macromolecule chain intercalation can promote peeling off of clay silicate lamella in some cases, forms the composite organic-inorganic material of nanometer scale in polymeric matrix.Compare with the polymkeric substance-inorganic filler composite material of routine, organic-inorganic nanocomposite is owing to interfacial area between polymkeric substance and the inorganics is very big, and exist between the two interface than strong interaction power, therefore can give full play to the excellent mechanical property and the high heat resistance of inorganic materials.Just have very strong reinforced effects at the clay consumption seldom the time, the nano composite material that contains 5% left and right sides clay usually is suitable with conventional rigidity, intensity, the thermotolerance that contains have an appointment 30% glass or mineral reinforced composite.Thereby nano composite material has light weight, high strength, high-modulus, high heat resistance and good dimensional stability and good gas barrier; Some nano composite material also has very high self-extinguishing, very low heat release rate and higher smoke-suppressing, is the ideal fire retardant material.The composite organic-inorganic material that adopts the intercalation complex method to prepare mainly contains nano composite material of epoxy resin/clay [US4889885] at present, nylon 6/ clay nanocomposites [CN1163288A, CN1138593A], random polystyrene/clay nanocomposites [[Chinese invention patent, 98103038], polyethylene terephthalate/Nano composite material of montmorillonite [Chinese invention patent, 97104055,97104294] etc.
Summary of the invention
Technical problem to be solved by this invention is to exist syndiotactic polystyrene blended compound material fragility big in the conventional art in order to overcome, low and polymeric matrix of shock strength and mineral filler interface interaction are weak and the unfavorable problem of composite material combination property that causes provides a kind of new syndiotactic/polyester/clay nano matrix material.This matrix material has the shock strength height, the high and high characteristics of thermotolerance of intensity.
For solving the problems of the technologies described above, the technical solution used in the present invention is as follows: a kind of syndiotactic/polyester/clay nano matrix material comprises following component in parts by weight:
A) syndiotactic polystyrene is 50~85 parts;
B) sulfonated syndiotactic polyphenylethylene is 1~50 part, and its sulfonation degree counts 1~20% with molar percentage;
C) vibrin is 1~50 part;
D) the polyester/clay nano-complex is 1~50 part, and its medium clay soil is an organo montmorillonite, and the organo montmorillonite amount is 1~20% of a matrix material weight by weight percentage;
E) be selected from 1~50 part of the auxiliary agent of oxidation inhibitor, fire retardant, nucleator or impact modifying agent and composition thereof;
Wherein matrix material medium clay soil disperse phase particle diameter is 5~90 nanometers.
In the technique scheme, the weight-average molecular weight of syndiotactic polystyrene is 20~700,000, and a normality is greater than 96%.Preferable range in the amount of parts by weight sulfonated syndiotactic polyphenylethylene is 1~20 part.Polyester is selected from least a in terephthalic acid, polyethylene terephthalate, poly-phthalic acid-diphenylol propane ester or the liquid crystal polyester, its preferred version is a polyethylene terephthalate, is 5~40 parts in parts by weight vibrin amount preferable range.The polyester/clay nano-complex is selected from intercal type or the exfoliated polyethylene terephthalate/clay nano mixture that adopts the intercalation complex method to prepare, in parts by weight, polyethylene terephthalate/clay nano mixture consumption preferable range is 3~40 parts.Organo montmorillonite is the product of polynite gained after organic agent is handled, and wherein the cation exchange capacity of polynite is 40~140 mmoles/100 grams.Organic agent is selected from the compound with following structural formula: CH 3(CH 2) nNR 3X and/or HOOC (CH 2) N-1NH 2, wherein R is H or CH 3X is Cl, Br or I; N=4~60, preferred version are ten monoamino-acids or ten diamino acid.Auxiliary agent comprises oxidation inhibitor, fire retardant, nucleator or impact modifying agent, and wherein oxidation inhibitor is selected from antioxidant 1010, PEP36, Mark Ao-30 or BHT; Nucleator is selected from Sodium Benzoate or p t butylbenzoic acid aluminium; Impact modifying agent is selected from segmented copolymer, ABS or the urethane of segmented copolymer, vinylbenzene and different propylene of segmented copolymer, hydrogenated styrene and the divinyl of styrene-butadiene rubber(SBR), vinylbenzene and divinyl.Matrix material medium clay soil disperse phase particle diameter preferable range is 5~50 nanometers.
In said components, syndiotactic polystyrene is meant to have syndiotactic polystyrene, and its phenyl ring is advised ordered arrangement between the molecular backbone chain both sides.Between normal mensuration generally adopt 13The method of C magnetic nuclear resonance method or solvent extraction is measured.Normality is more than 96% between syndiotactic polystyrene used in the present invention, and the weight-average molecular weight of syndiotactic polystyrene is 20~700,000, if the molecular weight of syndiotactic polystyrene is lower than 100,000, the thermal characteristics of then prepared mixture and mechanical property will be very poor.The consumption of syndiotactic polystyrene is 1~99% (weight, as follows), and optimum amount is 50~85%.
Sulfonated syndiotactic polyphenylethylene (B) is meant the polymkeric substance that has polarity sulfonic acid group or sulfonate groups on the phenyl ring in the syndiotactic polystyrene molecule.Sulfonic acid group or sulfonate groups generally are distributed in the contraposition of phenyl ring, but position and adjacent reaction between being not precluded within.The sulfonation degree of sulfonated syndiotactic polyphenylethylene generally is controlled at 1~20 mole of %, because the introducing of sulfonic acid group makes sulfonated syndiotactic polyphenylethylene have certain wetting ability, needs drying treatment before therefore using.The sulfonated syndiotactic polyphenylethylene that the present invention uses can be neutralization or unneutralized, in and the contained metal ion of sulfonated syndiotactic polyphenylethylene can be potassium, sodium, lithium, barium, magnesium, manganese, zinc, copper, calcium, cobalt, iron, nickel plasma.General sulfonated syndiotactic polyphenylethylene or the ionomeric consumption of sulfonated syndiotactic polyphenylethylene are 1~50% of syndiotactic polystyrene consumption by weight percentage, and optimum amount is 2~20% of a syndiotactic polystyrene consumption.
Used polyester (C) can be suitability for industrialized production or the not kind of suitability for industrialized production among the present invention.Comprise mutual-phenenyl two acid bromide two alcohol ester (PBT), polyethylene terephthalate (PET), poly-(phthalic acid-diphenylol propane) ester (U-resin), bisphenol A polycarbonate, dihydroxyphenyl propane-4-bromo dihydroxyphenyl propane copolycondensation polycarbonate, 4-bromo bisphenol A polycarbonate, 4-chlorobisphenol A type polycarbonate, dihydroxyphenyl propane-4-chlorobisphenol A copolycondensation polycarbonate, tetramethyl-bisphenol A polycarbonate and various liquid crystal polyesters etc.The polyester consumption is 1~50% of a polymkeric substance total amount among the present invention, and optimum amount is 5~40%.
Used polyester/clay nano-complex is selected from intercal type or the exfoliated polyester/clay nano-complex that adopts the intercalation complex method to prepare among the present invention.Wherein polyester comprises kind described in (C).Used clay can be synthetic or the natural silicate that the stratiform knot has laminate structure that has, comprise polynite, talcum, zeolite, vermiculite, sepiolite, synthetic mica, lithium montmorillonite, carclazyte, and have phosphoric acid salt, graphite, metal oxide, disulphide of laminate structure etc.Handle through organic agent before clay uses, used organic agent can be the compound with following structural formula: CH among the present invention 3(CH 2) nNR 3X and/or HOOC (CH 2) N-1NH 2, wherein R is-H ,-CH 3X is-Cl-Br ,-I; N=4~60.Polyester/clay nano-complex used among the present invention is counted 1~50 part with parts by weight, and optimum amount is 3~40 parts.
Syndiotactic/polyester/clay nano matrix material involved in the present invention can add other auxiliary agents according to the needs of actual situation.Auxiliary agent comprises oxidation inhibitor, fire retardant, nucleator and impact modifying agent etc.Wherein oxidation inhibitor is important, and the adding of oxidation inhibitor mainly is in order to prevent polymkeric substance oxygenolysis when the high-temperature fusion blend.Oxidation inhibitor commonly used comprises antioxidant 1010 (four [β-(3, the 5-di-tert-butyl-hydroxy phenyl) propionic acid] pentaerythritol resin), PEP36 (2,6-di-t-butyl-4-aminomethyl phenyl tetramethylolmethane diphosphite fat), Mark AO-30 (1,1,3-three (2-methyl-4-hydroxyl-5-tert-butyl-phenyl) butane) and BHT (2, the 6-tertiary butyl-4-cresols) etc.The consumption of oxidation inhibitor is generally 0.1~1% (weight) of polymer loading.The adding of nucleator mainly is in order to improve the crystallinity of syndiotactic polystyrene, and nucleator commonly used has Sodium Benzoate and p-tert-butyl benzoic acid aluminium etc.The consumption of nucleator is generally 0.3~5% of polymer weight.The adding of impact modifying agent is in order further to improve the impact property of blended complex, impact modifying agent commonly used is rubber or elastomerics etc., for example segmented copolymer (SIS) and the ABS and the Polyurethane etc. of segmented copolymer (SEBS), vinylbenzene and the different propylene of the segmented copolymer of styrene-butadiene rubber(SBR), vinylbenzene and divinyl (SBS), hydrogenated styrene and divinyl.The consumption of impact modifying agent depends on the needs.Usually 5~20%.
The preparation method of sulfonated syndiotactic polyphenylethylene is as follows:
In 500 milliliters of round-bottomed flasks, put into 3.0 gram sPS (syndiotactic polystyrene) and 340 milliliters 1,2,4-trichloroethane (TCE), reflux (about 150 ℃) is all dissolved to sPS.Solution is chilled to 50~70 ℃ then, feeds nitrogen, and keep reaction soln at 60 ℃, slowly drip the sulfonated reagent of metering according to required sulfonation degree, stir fast simultaneously, 60 ℃ of reactions of constant temperature added 10 ml methanol termination reactions after 1~3 hour.After sulfonation reaction is finished,, should while hot sedimentation in reaction solution impouring 1200 ml methanol be gone out polymkeric substance immediately, after the filtration product be spent the night 70 ℃ of vacuum-dryings in order to prevent gel.
In order further to remove the sulfonated reagent of carrying secretly in the product, it is dissolved among the TCE methyl alcohol sedimentation, suction filtration earlier.Polymkeric substance is put into the Soxhlet extractor again and used methyl alcohol extracting 24 hours, product is spent the night 70 ℃ of vacuum-dryings promptly gets purified SsPS (sulfonated syndiotactic polyphenylethylene) at last.
The measuring method of SsPS sulfonation degree is that SsPS sample 0.3~0.5 gram is dissolved in volume ratio is in 95: 5 the trichloromethane methanol mixed solvent, the SsPS sample that dissolving is good is indicator with phenolphthalein, with the methanol solution titration of NaoH to terminal, the amount according to the NaoH that is consumed calculates sulfonation degree.
The preparation method of syndiotactic/polyester/clay nano matrix material of the present invention is as follows:
With each component by the prescription weighing good after, earlier dried mixed in blender, and then mediate in mixing roll or two Luo bar forcing machine, general condition is controlled at: temperature is 285 ℃, and rotating speed is 75 rev/mins, and mixing time depends on the circumstances, and is generally 5~15 minutes.The material that mixes is in forcing machine behind the extruding pelletization, through injector injection molding.Have good impact-resistance, water tolerance and mechanical property preferably by the blended complex that contains syndiotactic polystyrene of above-mentioned each component preparation.Syndiotactic/polyester/clay nano matrix material by above-mentioned each component preparation has high strength, high heat resistance and high shock strength.Be expected as electronic apparatus material, industrial structure material, automobile component, civil electric appliance parts and other machine part etc.The polyethylene terephthalate price is low, and the source is wide, and electrical insulating property is good.The defective of polyethylene terephthalate is that crystallization velocity is slow, can not adapt to general plastic molding processing technology.Syndiotactic polystyrene and polyethylene terephthalate/clay nano mixture blend, not only can improve the impact property of syndiotactic polystyrene, the good thermotolerance that keeps syndiotactic polystyrene can also be improved the crystallization velocity and the moulding processability of polyethylene terephthalate.Blend has than excellent comprehensive performances, has further widened the Application Areas of syndiotactic polystyrene and polyester.But consistency is relatively poor between syndiotactic polystyrene and the polyester, needs appropriate compatilizer.In syndiotactic polystyrene and polyester/clay nano-complex compound, add sulfonated syndiotactic polyphenylethylene, by the sulfonic acid group of sulfonated syndiotactic polyphenylethylene and the interaction between the group of the carbonyl in the polyester, increase the consistency of whole matrix material greatly, further improved the over-all properties of matrix material.Owing to also have special interaction between the sulfonic acid group of sulfonated syndiotactic polyphenylethylene and the surface of clay polar group,, also promoted the bonding interface performance of polymeric matrix and surface of clay simultaneously as hydrogen bond action.In addition, adopting the syndiotactic/polyester/clay nano matrix material of the inventive method preparation is exfoliated nano-composite, and clay silicate lamella is stripped from into nanoscale and is dispersed in the polymeric matrix.Significantly improved the over-all properties of nano composite material, the flexural strength, tensile strength that makes the syndiotactic/polyester/clay nano matrix material is respectively by the 48.6MPa of pure syndiotactic polystyrene material; 33.6MPa bring up to 76.1MPa; 68.4MPa.The shock strength of nano composite material is also from 5.3 kilojoule/rice simultaneously 2Bring up to 16.7 kilojoule/rice 2, obtained better technical effect.
The present invention is further elaborated below by embodiment.
Embodiment
[embodiment 1]
The preparation of syndiotactic/polyester/clay nano matrix material
85 parts of (weight, as follows) (weight-average molecular weight is 350,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add that 17 parts of polyethylene terephthalates (PET)/(molecular weight of PET is 21000 to polynite (MT) nano-complex, the quality proportioning of nano-complex is PET/MT=15/2), 4 parts of sulfonated syndiotactic polyphenylethylene (SsPS, sulfonation degree is 5.45 moles of %) and 0.1 part of antioxidant 1010, above-mentioned material is dried mixed in blender earlier, and then mixing kneading in two Luo bar forcing machines, mixing condition is: temperature is 285 ℃, rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
[embodiment 2]
The preparation of syndiotactic/polyester/clay nano matrix material
85 parts of (weight, as follows) (weight-average molecular weight is 350,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add that 19 parts of polyethylene terephthalates (PET)/(molecular weight of PET is 21000 to polynite (MT) nano-complex, the quality proportioning of nano-complex is PET/MT=15/4), 4 parts of sulfonated syndiotactic polyphenylethylene (SsPS, sulfonation degree is 5.45 moles of %) and 0.1 part of antioxidant 1010, above-mentioned material is dried mixed in blender earlier, and then mixing kneading in two Luo bar forcing machines, mixing condition is: temperature is 285 ℃, rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
[embodiment 3]
The preparation of syndiotactic/polyester/clay nano matrix material
85 parts of (weight, as follows) (weight-average molecular weight is 350,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add that 21 parts of polyethylene terephthalates (PET)/(molecular weight of PET is 21000 to polynite (MT) nano-complex, the quality proportioning of nano-complex is PET/MT=15/6), 4 parts of sulfonated syndiotactic polyphenylethylene (SsPS, sulfonation degree is 5.45 moles of %) and 0.1 part of antioxidant 1010, above-mentioned material is dried mixed in blender earlier, and then mixing kneading in two Luo bar forcing machines, mixing condition is: temperature is 285 ℃, rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
[embodiment 4]
The preparation of syndiotactic/polyester/clay nano matrix material
85 parts of (weight, as follows) (weight-average molecular weight is 250,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add that 21 parts of polyethylene terephthalates (PET)/(molecular weight of PET is 21000 to polynite (MT) nano-complex, the quality proportioning of nano-complex is PET/MT=15/6), 4 parts of sulfonated syndiotactic polyphenylethylene (SsPS, sulfonation degree is 5.45 moles of %) and 0.1 part of antioxidant 1010, above-mentioned material is dried mixed in blender earlier, and then mixing kneading in two Luo bar forcing machines, mixing condition is: temperature is 285 ℃, rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
[embodiment 5]
The preparation of syndiotactic/polyester/clay nano matrix material
85 parts of (weight, as follows) (weight-average molecular weight is 600,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add that 21 parts of polyethylene terephthalates (PET)/(molecular weight of PET is 21000 to polynite (MT) nano-complex, the quality proportioning of nano-complex is PET/MT=15/6), 4 parts of sulfonated syndiotactic polyphenylethylene (SsPS, sulfonation degree is 5.45 moles of %) and 0.1 part of antioxidant 1010, above-mentioned material is dried mixed in blender earlier, and then mixing kneading in two Luo bar forcing machines, mixing condition is: temperature is 285 ℃, rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
[embodiment 6]
The preparation of syndiotactic/polyester/clay nano matrix material
85 parts of (weight, as follows) (weight-average molecular weight is 350,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add that 23 parts of polyethylene terephthalates (PET)/(molecular weight of PET is 21000 to polynite (MT) nano-complex, the quality proportioning of nano-complex is PET/MT=15/8), 4 parts of sulfonated syndiotactic polyphenylethylenes (sulfonation degree is 5.45 moles of %) and 0.1 part of antioxidant 1010, in blender, do above-mentioned material mixed earlier, and then mixing kneading in two Luo bar forcing machines, mixing condition is: temperature is 285 ℃, and rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
[embodiment 7]
The preparation of syndiotactic/polyester/clay matrix material
20 parts of (weight, as follows) (weight-average molecular weight is 350,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add 20 parts of polyethylene terephthalates (molecular weight is 21000), 4 parts of sulfonated syndiotactic polyphenylethylene (SsPS, sulfonation degree is 9.6 moles of %) and 0.1 part of antioxidant 1010, in blender, do above-mentioned material mixed earlier, and then mixing kneading in two Luo bar forcing machines, mixing condition is: temperature is 290 ℃, and rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
[embodiment 8]
The preparation of syndiotactic polystyrene performance comparison thing
100 parts of (weight, as follows) (weight-average molecular weight is 350,000 to syndiotactic polystyrene, between normality 97%, fusing point is 272 ℃) in, add 0.1 part of antioxidant 1010, in blender, do above-mentioned material mixed earlier, and then mixing kneading in mixing roll, mixing condition is: temperature is 285 ℃, and rotating speed is 75 rev/mins, and mixing time is 8 minutes.The material that mixes extruding pelletization in forcing machine.Pellet carries out performance test after molded or injection molding.
The performance of embodiment 1~8 nano composite material sees Table 1.
Table 1 syndiotactic/polyester/clay nano performance of composites table *
Embodiment SPS/ (PET-MT)/SsPS (weight) Clay dispersion phase size (nanometer) Shock strength (kilojoule/rice 2) Flexural strength (MPa) Tensile strength (MPa) HDT/TMA (℃)
1 85/15-2/4 11.2 15.6 66.0 65.4 210
2 85/15-4/4 21.8 14.7 67.2 76.6 211
3 85/15-6/4 5.3 15.2 64.9 78.4 212
4 85/15-6/4 9.8 14.8 65.4 74.1 209
5 85/15-6/4 14.9 15.7 68.3 76.8 213
6 85/15-8/4 47.3 14.7 77.9 66.7
7 85/15-0/4 10~50 microns 12.5 31.8 26.4 173
8 100/0-0/0 >10 microns 5.3 48.6 33.6 ---
Annotate: in the above-mentioned data, shock strength and flexural strength adopt cantilever method to measure at normal temperatures.
HDT (TMA): temperature when deformation begins to increase in temperature-inflection curves, adopt TMA to measure.
Adopt transmissioning electric mirror determining disperse phase nano-scale.

Claims (11)

1, a kind of syndiotactic/polyester/clay nano matrix material comprises following component in parts by weight:
A) syndiotactic polystyrene is 50~85 parts;
B) sulfonated syndiotactic polyphenylethylene is 1~50 part, and its sulfonation degree counts 1~20% with molar percentage;
C) vibrin is 1~50 part;
D) the polyester/clay nano-complex is 1~50 part, and its medium clay soil is an organo montmorillonite, and the organo montmorillonite amount is 1~20% of a matrix material weight by weight percentage;
E) be selected from 1~50 part of the auxiliary agent of oxidation inhibitor, fire retardant, nucleator or impact modifying agent and composition thereof;
Wherein matrix material medium clay soil disperse phase particle diameter is 5~90 nanometers.
2, according to the described syndiotactic/polyester/clay nano matrix material of claim 1, the weight-average molecular weight that it is characterized in that syndiotactic polystyrene is 20~700,000, and a normality is greater than 96%.
3, according to the described syndiotactic/polyester/clay nano matrix material of claim 1, it is characterized in that in parts by weight the sulfonated syndiotactic polyphenylethylene amount is 1~20 part.
4,, it is characterized in that polyester is selected from least a in terephthalic acid, polyethylene terephthalate, poly-phthalic acid-diphenylol propane ester or the liquid crystal polyester according to the described syndiotactic/polyester/clay nano matrix material of claim 1.
5,, it is characterized in that polyester is a polyethylene terephthalate according to the described syndiotactic/polyester/clay nano matrix material of claim 4.
6,, it is characterized in that in parts by weight vibrin amount be 5~40 parts according to the described syndiotactic/polyester/clay nano matrix material of claim 1.
7, according to the described syndiotactic/polyester/clay nano matrix material of claim 1, it is characterized in that the polyester/clay nano-complex is selected from intercal type or the exfoliated polyethylene terephthalate/clay nano mixture that adopts the intercalation complex method to prepare, is 3~40 parts in the parts by weight consumption.
8, according to the described syndiotactic/polyester/clay nano matrix material of claim 1, it is characterized in that organo montmorillonite is the product of polynite gained after organic agent is handled, wherein organic agent is selected from the compound with following structural formula: CH 3(CH 2) nNR 3X and/or HOOC (CH 2) N-1NH 2, R is H or CH 3X is Cl, Br or I; N=4~60, the cation exchange capacity of polynite are 40~140 mmoles/100 grams.
9, described according to Claim 8 syndiotactic/polyester/clay nano matrix material is characterized in that organic agent is ten monoamino-acids or ten diamino acid.
10,, it is characterized in that oxidation inhibitor is selected from antioxidant 1010, PEP36, MarkAo-30 or BHT according to the described syndiotactic/polyester/clay nano matrix material of claim 1; Nucleator is selected from Sodium Benzoate or p t butylbenzoic acid aluminium; Impact modifying agent is selected from segmented copolymer, ABS or the urethane of segmented copolymer, vinylbenzene and different propylene of segmented copolymer, hydrogenated styrene and the divinyl of styrene-butadiene rubber(SBR), vinylbenzene and divinyl.
11,, it is characterized in that matrix material medium clay soil disperse phase particle diameter is 5~50 nanometers according to the described syndiotactic/polyester/clay nano matrix material of claim 1.
CN 02111305 2002-04-10 2002-04-10 Syndiotactic/polyester/clay nano composite material Expired - Fee Related CN1204189C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 02111305 CN1204189C (en) 2002-04-10 2002-04-10 Syndiotactic/polyester/clay nano composite material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 02111305 CN1204189C (en) 2002-04-10 2002-04-10 Syndiotactic/polyester/clay nano composite material

Publications (2)

Publication Number Publication Date
CN1450108A CN1450108A (en) 2003-10-22
CN1204189C true CN1204189C (en) 2005-06-01

Family

ID=28680538

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 02111305 Expired - Fee Related CN1204189C (en) 2002-04-10 2002-04-10 Syndiotactic/polyester/clay nano composite material

Country Status (1)

Country Link
CN (1) CN1204189C (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111607172A (en) * 2020-05-20 2020-09-01 深圳市信维通信股份有限公司 Blended material for 5G antenna and preparation method thereof

Also Published As

Publication number Publication date
CN1450108A (en) 2003-10-22

Similar Documents

Publication Publication Date Title
KR101427558B1 (en) Thermoplastic resin composition and molded article thereof
CN101134841B (en) Shockproof conductive polyphenyl ether polyamide compound and method for making same
EP1508595B1 (en) Polyphenylene sulfide resin composition
CN101802091A (en) Resin composition and molded body obtained by molding the same
KR20140009300A (en) Thermoplastic resin, resin composition, and molding of high thermal conductivity
CN1243056C (en) Cross blend material based on polycarbonate and its prepn. method
CN101671460A (en) High-flexibility high-strength polypropylene composition, preparation method and use thereof
CN1208387C (en) Syndiotactic polystyrene/polyamide/clay nano composite material
CN1203124C (en) Syndiotactic polystyrene/polyamide/clay nano blended material
CN1204189C (en) Syndiotactic/polyester/clay nano composite material
CN1160404C (en) Syndiotactic polyphenlethylene/polycarbonate composite material
CN1164670C (en) Syndiotactic polyphenylethylene/polyamide composite material
CN1204190C (en) Syndiotactic polystyrene/polyester/clay nano blended material
CN1164669C (en) Syndiotactic polyphenylethylene/polyester composite material
CN1200036C (en) Syndiotactic polystyrene/clay nano composite material
Hao et al. Synthesis of poly (ethylene terephthalate)/clay nanocomposites using aminododecanoic acid‐modified clay and a bifunctional compatibilizer
CN1450107A (en) Syndiotactic polystyrene/clay nano blended material
KR20220161985A (en) Thermoplastic resin composition and article manufactured using the same
JP2002121334A (en) Resin structure, vessel for carrying and/or storing of chemical or gas, and its attachment parts
TW201936785A (en) Thermoplastic resin composition and molded article formed by molding the same
KR100519560B1 (en) PET/clay Nanocomposite and Process Preparing the Same
EP4255956A1 (en) Liquid crystalline polyesters (lcp) and thermoplastic compositions having low dielectric constant (dk) and dissipation factor (df)
JP2014062179A (en) Antistatic thermoplastic resin composition and molded product comprising the same
JP3930346B2 (en) Antistatic resin composition
CN114981355A (en) Resin composition and resin molded article comprising the same

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20050601

Termination date: 20120410