COMPOSICION QUE COMPRENDE UNA MEZCLA LA CUAL CONTIENE UN INTERPOLIMERO A BASE DE ETILENO DE ALTO PESO MOLECULAR Y UN INTERPOLIMERO A BASE DE ETILENO DE BAJO PESO MOLECULAR; ARTICULO; CANERIA; RECUBRIMIENTO; Y METODO PARA PREPARAR DICHA COMPOSICION

A method of preparing a composition, comprising a blend, wherein said blend comprises a high molecular weight ethylene-based interpolymer and a low molecular weight ethylene-based interpolymer, said method comprising: a) polymerizing either the high molecular weight ethylene-based interpolymer, or t...

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Hauptverfasser: MICHIE, JR., WILLIAM, HAZLITT, LONNIE G., WHITED,STEPHANIE M., KINNAN, MICHAEL A., NEUBAUER, ANTHONY C., HO, THOI H
Format: Patent
Sprache:spa
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Zusammenfassung:A method of preparing a composition, comprising a blend, wherein said blend comprises a high molecular weight ethylene-based interpolymer and a low molecular weight ethylene-based interpolymer, said method comprising: a) polymerizing either the high molecular weight ethylene-based interpolymer, or the low molecular weight ethylene-based interpolymer, in a first reactor, in the presence of a Ziegler-Natta catalyst system, to form a first interpolymer product; b) transferring the first interpolymer product to another reactor; and c) polymerizing, in the other reactor, the ethylene-based interpolymer that was not produced in the first reactor, in the presence of the Ziegler-Natta catalyst system; and wherein the high molecular weight ethylene-based interpolymer is a heterogeneously branched linear ethylene-based interpolymer, and has a density from 0.922 g/cc to 0.929 g/cc, and a high load melt index (I21) from 0.2 g/10 min to 1.0 g/10 min, and wherein the low molecular weight ethylene-based interpolymer is heterogeneously branched linear ethylene-based interpolymer, and has a density from 0.940 g/cc to 0.955 g/cc, and a melt index (12) from 6 g/10 min to 50 g/10 min; and wherein the blend has a single peak in an ATREF profile eluting above 30°C, and has a coefficient of viscosity average molecular weight (CMv) less than -0.0032 in the log(calculated Mv) versus elution temperature, said CMv calculated in the range of elution temperatures from 70°C to 90°C, and wherein Mv is the viscosity average molecular weight.