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Blend based

There is extensive Hterature on PC blends with ABS, and blends of PC with related materials such as SAN, methacrylate-butadiene—styrene (MBS) emulsion-made core-shell mbber modifiers (297—299), and other impact modifiers. One report reviews some of these approaches and compares PC blends based on emulsion vs bulk ABS (229). In PC—ABS blends, no additional compatihili er is used, because of the near-miscihility of the SAN matrix of ABS and PC. [Pg.421]

Proprietary blend formulations based on polysulfone, polyethersulfone, and polyphenylsulfone are sold commercially by Amoco Corporation to meet various end use requirements. The blends based on polysulfone are sold under the MINDEL trademark. A glass fiber-reinforced blend based on PES is offered under the trade name RADEL AG-360. This offers most of the performance characteristics of 30% glass fiber-reinforced polyethersulfone but at a lower cost. Two blend product lines are offered based on PPSF. These are designated as the RADEL R-4000 and R-7000 series of products. The former is a lower cost alternative to RADEL R PPSF homopolymer offering most of the performance attributes unique to PPSF. The R-7000 series of resins have been formulated for use in aircraft interiors for civil air transport. They exhibit a very high degree of resistance to flammabihty and smoke release. [Pg.469]

Alloys and blends are of great commercial significance. The archetype of "alloys" is the poly(phenylene oxide)—polystyrene resin discussed eadier. Important examples of blends based on immiscible resins are afforded by the polycarbonate—poly(butylene terephthalate) resins and polycarbonate—ABS blends. [Pg.277]

Currently, over 110,000 t/yr of engineering resin blends are consumed worldwide, primarily in the transportation, business-machine, hardware, electrical, and appHance industries. Annual growth is projected to be ca 17%/yr. New blends based on PC, terephthalate, and nylon resins are experiencing the greatest expansion (122). These projections could be surpassed if large-volume metal appHcations such as automotive panels are replaced by engineering resin blends which are currently being field-tested. [Pg.277]

Table 7.9 Effect of use of isopropenyl 2-oxazoline on the properties of ABS/PET blends (Based on data in Modern Plastics International, February 1994)... Table 7.9 Effect of use of isopropenyl 2-oxazoline on the properties of ABS/PET blends (Based on data in Modern Plastics International, February 1994)...
Blends Based in Polyphenylene Oxides (Modified PPOs)... [Pg.589]

Several blends based on polysulphone materials have been marketed. Probably the most well known is Mindel, originally produced by Uniroyal, acquired by Union Carbide, but now marketed by Amoco. Whilst not exhibiting the heat resistance of the unblended homopolymer, Mindel materials, which are blends of polysulphone and ABS, are lower in cost, easier to process and have higher notched impact strengths. The Mindel A materials are unreinforced, the Mindel B grades contain glass fibre, and the Mindel M grades contain other mineral fillers. A related polysulphone/SAN blend has been marked as Ucardel. [Pg.602]

Several commercial products of PVC/TPU blends are available. The BF Goodrich Chemical Group has a PVC/ TPU blend based on their Estane series TPUs. For example, their Estane 54620, a polyester-based TPU with a °ShA 85 hardness, shows excellent compatibility with flexible PVC. The blends are produced by mixing PVC, TPU, plasticizer, stabilizer, and lubricant in a twin-screw extruder. These polymeric blends show intermediate mechanical properties between PVC and TPU. [Pg.143]

Blends based on polyolefins have been compatibilized by reactive extrusion where functionalized polyolefins are used to form copolymers that bridge the phases. Maleic anhydride modified polyolefins and acrylic acid modified polyolefins are the commonly used modified polymers used as the compatibilizer in polyolefin-polyamide systems. The chemical reaction involved in the formation of block copolymers by the reaction of the amine end group on nylon and anhydride groups or carboxylic groups on modified polyolefins is shown in Scheme 1. [Pg.668]

Thermoplastic polyolefin rubbers are usually blends based on polypropylene and ethylene-propylene rubbers. They are not resistant to hydrocarbons. [Pg.937]

Studies on mechanisms are described by Balzer [192]. In the case of anionics the residual oil in the injection zone is removed via displacement into the adjacent reservoirs ether carboxylates show their good adaptation to differences in temperature and salinity. Further it was found from interfacial tension measurements, adsorption and retention studies, and flooding tests that use of surfactant blends based on ether carboxylates and alkylbenzensulfonates resulted... [Pg.343]

Antony, P., Puskas, J.E., and Kontopoulou, M. The Rheological and Mechanical Properties of Blends Based on Polystyrene-Polyisobutylene-Polystyrene Triblock Copolymer and Polystyrene. Proceedings of MODEST, International Symposium on Polymer Modification, Degradation and Stabilization, Budapest, Hungary, 2002. [Pg.216]

Research concerning nylon-elastomer blends has mostly focused on the improvement of mechanical and thermal properties. Their dynamic mechanical properties are quite important both for processing and engineering applications. Wang and Zheng have smdied the influence of grafting on the dynamic mechanical properties of a blend based on nylon 1212 and a graft... [Pg.337]

FIGURE 20.14 (a) Height image of a cluster of carbon black (CB) particles. The sample was prepared by pressing the particles into a pellet, (b) Optical micrograph of a cryo-ultramicrotome cut of a mbbery composite loaded with silica, (c, d) Phase images of a nanocomposite of polyurethane (PU) loaded with silica and a mbber blend based on natural mbber (NR) and styrene-butadiene copolymer (SBR) loaded with siUca, respectively. The samples were prepared with a cryo-ultramicrotome. [Pg.573]

Chodak [257] has reviewed the properties (include mechanical, processing, orientation) of radiation (UV, y, EB) of polyolefin-based materials include PE, PP, and their blends based on... [Pg.875]

S. Bandyopadhyay, S. Dasgupta, S.L. Agrawal, S.K. Mandot, N. Mandal, R. Mukhopadhyay, A.S. Deuri, and S.C. Ameta, Use of recycled tire material in NR/BR blend based tire tread compound Part II (with ground cmmh mhher). Progress in Rubber, Plastics and Recycling Technology, 22(4), 269, 2006. [Pg.1041]

Luo, T. and Isayev, A.I., Rubber/plastic blends based on devulcanized ground tire rubber, J. Blast. Plast., 30, 133, 1998. [Pg.1064]

Cabal J., Kassa J., Severa J. A comparison of the decontamination efficacy of foammaking blends based on cationic and nonionic tensides against organophosphorus compounds determined in vitro and in vivo. Human Experimental Toxicology 22, 507-514(2003). [Pg.164]

S. Patachia, Blends based on poly(vinyl alcohol) and the products based on this polymer , in Handbook of Polymer blends and composites , C. Vasile and A.K. Kulshreshtha (eds.), Chap. 8, RAPRA Technology LTD., England, Chap.8. 2003. p. 288-365. [Pg.174]

Swier, S., Ramani, V., Fenton, J. M., Kunz, H. R., Shaw, M. T. and Weiss, R. A. 2005. Polymer blends based on sulfonated poly(ether ketone ketone) and poly(ether sulfone) as proton exchange membranes for fuel cells. Journal of Membrane Science 256 122-133. [Pg.185]

New York City, 2nd-6th May, 1999, p.1457-67.012 COMPARISON OF DRYING BLENDING-BASED AND MELT COMPOUNDING-BASED ROTOMOLDING TECHNIQUES FOR LLDPE FOAMS... [Pg.68]

Tan 6 curves from dmta thermograms of blends based on combinations of HPL/PVA(> 0) are shown in Figure 5 (10). The tan 6 transition, which is another measure of Ts, is broadened by the presence of HPL component, and it increases above that of the parent polymers consistent with dsc data. This can again be explained with the presence of strong interactions between the amorphous components which coexist in a closely associated state. [Pg.463]

Figure 7.15. Optimal composition of PVDF/PMMA blend based on specified properties. Figure 7.15. Optimal composition of PVDF/PMMA blend based on specified properties.
The production of laser-inscribed moldings from PMMA has been considered to be impossible in satisfactory quality without the addition of additives to increase the absorption coefficients of the laser radiation employed. However, blends based on PMMA and related acrylics have been described (30). [Pg.309]


See other pages where Blend based is mentioned: [Pg.421]    [Pg.602]    [Pg.896]    [Pg.31]    [Pg.175]    [Pg.176]    [Pg.304]    [Pg.316]    [Pg.569]    [Pg.573]    [Pg.1038]    [Pg.97]    [Pg.539]    [Pg.118]    [Pg.189]    [Pg.527]    [Pg.9]    [Pg.319]    [Pg.82]    [Pg.235]    [Pg.421]   
See also in sourсe #XX -- [ Pg.483 ]




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Acid-base inorganic-polymer blends

Acid-base polymer blend membrane

Aromatic Polycarbonate Based Blends

Aromatic Polysulfone Based Blends

Biodegradable polyesters-based polymer blends

Blend conducting polymer based

Blending with Non-biodegradable Petroleum-based Polymers

Blends Based on Collagen

Blends Based on PMMA and (Meth)Acrylate Copolymers

Blends Based on PVC

Blends Based on Polystyrene and Styrene Copolymers

Blends acid-base concept

Blends base excess

Blends based in polyphenylene oxides

Blends based on polysulphones

Blends lignin-based thermoplastics

Citrate-based polymer blends

DBDI based PUs blends

EPDM-based blends

Highly Toughened Polylactide-Based Materials through Melt-Blending Techniques

Kraft lignin-based thermoplastics blends

LEDs Based on Polymer Blends

Long based blends

Mechanical Properties in Blends of Polypropylene and Polyolefin-Based Copolymers

Miscible Blends Based on Biodegradable Polymers

Naphthalate-based blends

Natural rubber-based blends

PS-based blends

PVPh-based blends

Penetrant molecules transport natural rubber based blends

Plasticized starch-based blends

Poly(Aryl Ether Ketone) Based Blends

Poly(Phenylene Oxide) Based Blends

Poly(Phenylene Sulfide) Based Blends

Polyamide Based Blends

Polyarylate Based Blends

Polybenzimidazole blends acid-base

Polybenzimidazoles acid-based blends

Polyethylene as a Base of Blend Materials

Polyethylene-Based Conducting Polymer Blends and Composites

Polyimide Based Polymer Blends

Polymer blends poly based

Polymeric Blends Based on Syndiotactic Polystyrene

Polyolefin-Based Nanocomposite Blends

Propylene Based Glycol Ether Blends

Recent Advances in Poly(meth)acrylate Based Blends and Composites

Recent Developments in Polylactide-based Blends and Their Applications

Revision of Polymer Blends Based on Biodegradable Polyesters

Rubber-based blends

Rubber-based blends structural applications

Rubber-based blends tire industry

Silicone-based polymer blends

Spectroscopy Natural Rubber Based Blends and IPNs

Thermoplastic-based blend

Thermoplastic-based blend applications

Thermoplastic-based blend immiscible blended polymer

Thermoplastic-based blend packaging applications

Thermoplastic-based blend structural applications

Thermoplastic-based blend thermosetting plastics

Viscoelastic Properties of Natural Rubber Based Blends and IPNs

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