OPTICAL DISK MANUFACTURING SHEET
    2.
    发明公开
    OPTICAL DISK MANUFACTURING SHEET 有权
    HERTELLUNGSBLATTFÜROPTISCHEDATENTRÄGER

    公开(公告)号:EP1548725A1

    公开(公告)日:2005-06-29

    申请号:EP03733310.1

    申请日:2003-06-06

    IPC分类号: G11B7/26

    摘要: The present invention provides an optical disk producing sheet 1, obtained by laminating a stamper-receiving layer 11 that is energy rays-curable and whose storage elastic modulus prior to curing is from 10 3 to 10 7 Pa, and an adhesive layer 12 whose adhesive strength to polycarbonate is at least 200 mN/25mm, and whose storage elastic modulus during the curing of the stamper-receiving layer 11 is from 10 3 to 10 7 Pa. With the optical disk producing sheet 1, separation that occurs during the production of an optical disk, or during the storage of the finished product, is prevented, and warpage in the resulting optical disk is reduced.

    摘要翻译: 本发明提供一种光盘制造片材1,其通过层压作为能量射线固化型的压模接受层11,其固化前的储能弹性模量为10 -3〜10 7 Pa, 对聚碳酸酯的粘合强度为200mN / 25mm以上,并且其在压模接收层11的固化期间的储能弹性模量为10 -3〜10Pa的层12,利用光盘制造片1 ,防止在制造光盘期间发生的分离,或者在成品的存储期间发生分离,从而减少所得光盘的翘曲。

    LIQUID-REPELLENT COMPOSITION, LIQUID-REPELLENT SHEET, AND METHODS FOR PRODUCING SAME

    公开(公告)号:EP3594310A1

    公开(公告)日:2020-01-15

    申请号:EP18764788.8

    申请日:2018-03-05

    摘要: The present invention relates to a liquid-repellent composition containing a tetrafunctional silane-based compound having a specified structure [component (A)] and a trifunctional silane-based compound having a specified structure [component (B)] as well as a metal catalyst [component (C)] and satisfying a formula (I): 12 ≤ x ≤ 64 [in the formula (I), x represents a ratio of a molar amount of the component (A) to a molar amount of the component (B) [(A)/(B)] (molar ratio), a liquid-repellent sheet including a liquid-repellent layer formed of the foregoing liquid-repellent composition, and production methods of the same.

    ANTIFOULING COMPOSITION, ANTIFOULING SHEET, AND PROCESS FOR PRODUCING ANTIFOULING SHEET

    公开(公告)号:EP3323865A1

    公开(公告)日:2018-05-23

    申请号:EP16824497.8

    申请日:2016-07-13

    摘要: Provided are an antifouling composition including a tetrafunctional silane-based compound having a specified structure as a component (A), trifunctional silane-based compounds having a specified structure different from each other as a component (B) and component (C), and a metal catalyst as a component (D), the antifouling composition satisfying:
    Condition (I): a ratio of a molar amount of the component (A) to a molar amount of the component (B) [(A)/(B)] (molar ratio) is 1.4 or more, and
    Condition (II): a ratio of a molar amount of the component (B) to a total molar amount of the component (B) and the component (C) [(B)/{(B) + (C)}] (molar ratio) is 0.020 or more,
    an antifouling sheet including an antifouling layer formed of the antifouling composition, and a method for producing the same.

    ANTI-FOULING COMPOSITION, AND ANTI-FOULING SHEET
    7.
    发明公开
    ANTI-FOULING COMPOSITION, AND ANTI-FOULING SHEET 审中-公开
    防污组合物和防污片

    公开(公告)号:EP3246371A1

    公开(公告)日:2017-11-22

    申请号:EP16737329.9

    申请日:2016-01-12

    IPC分类号: C09D183/04 B32B27/00 C09K3/18

    摘要: Provided is an antifouling composition including a tetrafunctional silane-based compound (A) having a specified structure, a trifunctional silane-based compound having a specified structure, and at least one metal catalyst (C) selected from the group consisting of a titanium-based catalyst, an aluminum-based catalyst, a tin-based catalyst, and a zinc-based catalyst, the antifouling composition satisfying the following relational expression (1). 1.5 ≤ y ≤ 2 x + 1
    In the expression, x indicates the carbon number of an alkyl group that is selected for R 2 in the formula (b) representing the silane-based compound (B) and indicates a number of 4 to 22; and y indicates a blending amount ratio (A)/(B) in a molar ratio of the silane-based compound (A) to the silane-based compound (B).

    摘要翻译: 本发明提供一种防污剂组合物,其含有具有特定结构的四官能硅烷系化合物(A),具有特定结构的三官能硅烷系化合物以及选自由钛为基础的至少一种金属催化剂(C) 催化剂,铝基催化剂,锡基催化剂和锌基催化剂,所述防污组合物满足以下关系式(1)。 1.5≤y≤2x+ 1在该表达式中,x表示在表示硅烷基化合物(B)的式(b)中为R2选择的烷基的碳数并且表示4至22的数; y表示硅烷系化合物(A)与硅烷系化合物(B)的摩尔比中的配合量比(A)/(B)。

    ANTIFOULING SHEET
    8.
    发明公开
    ANTIFOULING SHEET 有权
    FÄULNISVERHINDERNDEFOLIE

    公开(公告)号:EP3124228A1

    公开(公告)日:2017-02-01

    申请号:EP15768508.2

    申请日:2015-03-26

    摘要: Provided is an antifouling sheet having an interlayer (X) containing a (poly)silazane compound and having an antifouling layer (Y) layered on the surface of the interlayer (X), wherein the layer (Y) is formed of an antifouling layer-forming composition containing a specific tetrafunctional silane compound (A) and a specific trifunctional silane compound (B), the content of the component (B) in the antifouling layer-forming composition is 8 to 90 mol% relative to 100 mol% of the component (A). The antifouling sheet is provided with an antifouling layer having good surface state and curability, has a large slip acceleration for water droplets, thereby having excellent water repellency that makes water droplets slip off instantly, and has excellent interlayer adhesiveness.

    摘要翻译: 本发明提供一种具有含有(聚)硅氮烷化合物的中间层(X)和在中间层(X)的表面上层叠有防污层(Y))的防污层,其中,层(Y)由防污层形成, 含有特定的四官能性硅烷化合物(A)和特定的三官能硅烷化合物(B)的成膜组合物中,防污层形成用组合物中的成分(B)的含量相对于成分的100摩尔%为8〜90摩尔% (一个)。 防污片具有良好的表面状态和固化性的防污层,水滴的滑移加速度大,具有优异的防水性,使水滴立即脱落,并具有良好的层间粘合性。

    METHOD OF BONDING WITH ADHESIVE SHEETS FOR HIGH-FREQUENCY DIELECTRIC HEATING

    公开(公告)号:EP4130181A1

    公开(公告)日:2023-02-08

    申请号:EP21780109.1

    申请日:2021-03-26

    摘要: A bonding method using adhesive sheets (10, 20) respectively containing first and second thermoplastic resins. The volume content VA1 of the first thermoplastic resin in the adhesive sheet (10) and the volume content VA2 of the second thermoplastic resin in the adhesive sheet (20) are from 60 vol% to 100 vol%. Change rates Vx1 and Vx2 represented by formulae below are less than 80%. VB1 is the volume content of the first thermoplastic resin in a layer in direct contact with the first adhesive layer (10), and VB2 is the volume content of the second thermoplastic resin in a layer in direct contact with the second adhesive layer (20). The method includes applying a high-frequency wave to the adhesive sheets (10, 20) between adherends (110, 120) to bond them together, Vx 1 = VA 1 − VB 1 / VA 1 × 100 Vx 2 = VA 2 − VB 2 / VA 2 × 100