Invention Grant
US08399098B2 Laminates comprising ionomer interlayers with low haze and high moisture resistance
有权
包含低雾度和高耐湿性的离聚物夹层的层压板
- Patent Title: Laminates comprising ionomer interlayers with low haze and high moisture resistance
- Patent Title (中): 包含低雾度和高耐湿性的离聚物夹层的层压板
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Application No.: US12610701Application Date: 2009-11-02
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Publication No.: US08399098B2Publication Date: 2013-03-19
- Inventor: Stephen J. Bennison , Richard Allen Hayes , Steven C. Pesek , W Alexander Shaffer , Charles Anthony Smith
- Applicant: Stephen J. Bennison , Richard Allen Hayes , Steven C. Pesek , W Alexander Shaffer , Charles Anthony Smith
- Applicant Address: US DE Wilmington
- Assignee: E I du Pont de Nemours and Company
- Current Assignee: E I du Pont de Nemours and Company
- Current Assignee Address: US DE Wilmington
- Agency: Kelly Law Registry
- Agent Maria M. Kourtakis; Tong T. Li
- Main IPC: B32B27/32
- IPC: B32B27/32 ; B32B27/36 ; B32B27/08 ; B32B27/00 ; B32B27/40 ; B32B17/10 ; C08F20/06 ; C08F8/00 ; C08L31/00

Abstract:
A laminate comprises an ionomeric interlayer sheet which, in turn, comprises or is prepared from a sodium/zinc mixed ionomer that comprises carboxylate groups and a combination of counterions that consists essentially of sodium cations and zinc cations. The sodium/zinc mixed ionomer is the neutralization product of a precursor acid copolymer. The precursor acid copolymer comprises copolymerized units of an α-olefin and an α,β-ethylenically unsaturated carboxylic acid, and it has a melt flow rate of about 70 to about 1000 g/10 min. In addition, the precursor acid copolymer, when neutralized to a level of about 40% to about 90%, and when comprising counterions that consist essentially of sodium ions, produces a sodium ionomer that has a freeze enthalpy that is not detectable or that is less than about 3.0 j/g, when determined by differential scanning calorimetry.
Public/Granted literature
- US20100167061A1 LAMINATES COMPRISING IONOMER INTERLAYERS WITH LOW HAZE AND HIGH MOISTURE RESISTANCE Public/Granted day:2010-07-01
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