INTRUSION RESISTANT GLASS LAMINATES
    3.
    发明公开
    INTRUSION RESISTANT GLASS LAMINATES 有权
    防入侵玻璃层压板

    公开(公告)号:EP1265743A1

    公开(公告)日:2002-12-18

    申请号:EP00986361.4

    申请日:2000-12-14

    申请人: Solutia Inc.

    摘要: Composite laminate interlayers for a glass laminate comprising a sheet of polyethylene terephthalate (PET) layer (203) between layers of plasticized polyvinyl butyral (PVB) adhesive layers (202, 204), wherein at least one of the PVB adhesive layers is stiffened, e.g. by reduction in the amount of plasticizer, and has a glass transition temperature greater than 35 °C. The PET is preferably 0.075 to 0.25 mm (3-10 mils) thick and can have a functional coating (407) for reducing radiation, e.g. UV or IR or visible light, transmission through the glass laminate. The laminate can also comprise at least one elastomeric layer (406) adapted to reducing sound transmission through the glass laminate. The laminates exhibit enhanced maximum flexural modulus of greater than about 350 Newtons/centimeter.

    摘要翻译: 用于玻璃层压体的复合层压夹层,其包括在塑化聚乙烯醇缩丁醛(PVB)粘合剂层(202,204)的层之间的聚对苯二甲酸乙二醇酯(PET)层片(203),其中至少一个PVB粘合剂层被硬化, 通过减少增塑剂的量,并具有大于35℃的玻璃化转变温度。 PET的厚度优选为0.075至0.25毫米(3-10密耳),并且可以具有用于减少辐射的功能性涂层(407),例如, UV或IR或可见光,透过玻璃层压板。 该层压件还可以包括至少一个弹性体层(406),其适于减少通过玻璃层压板的声音传输。 层压材料表现出增强的最大弯曲模量大于约350牛顿/厘米。

    INTRUSION RESISTANT GLASS LAMINATES
    8.
    发明授权
    INTRUSION RESISTANT GLASS LAMINATES 有权
    EINDRINGUNGSBESTÄNDIGE玻璃层压

    公开(公告)号:EP1265743B1

    公开(公告)日:2008-06-04

    申请号:EP00986361.4

    申请日:2000-12-14

    申请人: Solutia Inc.

    摘要: Composite laminate interlayers for a glass laminate comprising a sheet of polyethylene terephthalate (PET) layer (203) between layers of plasticized polyvinyl butyral (PVB) adhesive layers (202, 204), wherein at least one of the PVB adhesive layers is stiffened, e.g. by reduction in the amount of plasticizer, and has a glass transition temperature greater than 35 °C. The PET is preferably 0.075 to 0.25 mm (3-10 mils) thick and can have a functional coating (407) for reducing radiation, e.g. UV or IR or visible light, transmission through the glass laminate. The laminate can also comprise at least one elastomeric layer (406) adapted to reducing sound transmission through the glass laminate. The laminates exhibit enhanced maximum flexural modulus of greater than about 350 Newtons/centimeter.