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公开(公告)号:US20170152376A1
公开(公告)日:2017-06-01
申请号:US15323915
申请日:2015-07-06
Applicant: BOREALIS AG
Inventor: Yi LIU , Alexandra Romina ALBUNIA , Tanja PIEL , Qizheng DOU , Hermann PROKSCHI
IPC: C08L23/06 , B29C47/88 , B29C47/00 , C08F110/02
CPC classification number: C08L23/06 , B29C47/0004 , B29C47/0023 , B29C47/882 , B29K2023/065 , B29K2023/0683 , B29L2023/22 , C08F110/02 , C08F2500/05 , C08F2500/07 , C08F2500/11 , C08F2500/17 , C08L23/0815 , C08L2203/18 , C08L2205/025 , C08L2207/068 , C08L2207/07 , C08L2308/00
Abstract: The present invention relates to a multimodal polyethylene composition which can be manufactured into pipes showing improved pressure resistance comprising a high density multimodal ethylene polymer component (A) having a density of at least 930 kg/m3, and a MFR21 of not more than 15 g/10 min, wherein said composition exhibits a LAOS-NLF defined as L A O S - N L F = G 1 ′ G 3 ′ where G1′—first order Fourier Coefficient G3′—third order Fourier Coefficient of at least 1.7. Such a polyethylene composition is useful for the manufacture of pressure pipes that exhibit improved pressure resistance and creep resistance and do not undergo sagging. Further disclosed is a process for the production of a pipe using such a multimodal polyethylene composition and a pipe comprising such a multimodal polyethylene composition.
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公开(公告)号:US20170341267A1
公开(公告)日:2017-11-30
申请号:US15534447
申请日:2015-12-07
Applicant: BOREALIS AG
Inventor: Martina SANDHOLZER , Klaus BERNREITNER , Hermann BRAUN , Hermann PROKSCHI , Ulrich SCHREIDER , Frank SCHRODER , Thomas HAGER , Katja KLIMKE , Markus GAHLEITNER
CPC classification number: B29B9/065 , B29B9/12 , B29B9/16 , B29B2009/165 , B29C48/04 , C08K5/0083 , C08L23/142 , C08L23/16 , C08L2205/24 , C08L2207/02
Abstract: The present invention provides a process for extruding and pelletising a propylene copolymer. The copolymer has a content of comonomer from 5 to 40% by mole, a melt flow rate MFR2 measured at 230° C. under a load of 2.16 kg of from 0.5 to 15 g/10 min and a content of cold xylene soluble material of from 20 to 60% by weight. The process comprises extruding the propylene copolymer through a die plate into an underwater pelletiser and cutting strands of the propylene copolymer into pellets in the underwater pelletiser, wherein the ratio of the mass flow rate of the propylene copolymer to the mass flow rate of the cooling water is from 0.020 to 0.060; and the propylene copolymer comprises a polymeric nucleating agent.
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