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    • 2. 发明申请
    • LAMINATE PRODUCTION METHOD
    • 层压生产方法
    • WO2016051269A3
    • 2016-06-09
    • PCT/IB2015002078
    • 2015-09-29
    • ZEON CORP
    • FUJIMURA MAKOTOTATEISHI YOUHEI
    • H05K3/42B32B15/08H05K1/18H05K3/40
    • H05K3/429H05K3/0014H05K3/005H05K3/0055H05K3/007H05K3/42H05K3/422H05K3/423H05K3/4644H05K2203/072H05K2203/0723
    • [Problem] To provide a method for producing a laminate that enables the formation of a small-diameter via hole having excellent conduction reliability, and that has outstanding heat resistance (solder heat resistance, for example). [Solution] Provided is a laminate production method, characterized by comprising: a step for forming, upon a support, a curable resin composition layer comprising a curable resin composition so as to obtain a support-equipped curable resin composition layer; a step for laminating, to a substrate, the support-equipped curable resin composition on the curable resin composition layer formation side thereof so as to obtain a support-equipped pre-curing complex comprising the substrate and the support-equipped curable resin composition layer; a step for performing first heating on the complex and heat-curing the curable resin composition layer so as to achieve a cured resin layer and thus obtain a support-equipped cured complex comprising the substrate and the support-equipped cured resin layer; a step for opening a hole from the support side of the support-equipped cured complex, thereby forming a via hole in the cured resin layer; a step for separating the support from the support-equipped cured complex so as to obtain a cured complex comprising the substrate and the cured resin layer; a step for removing the resin residue from inside the via hole of the cured complex; a step for performing second heating on the cured complex; and a step for forming a conductor layer on the inner peripheral wall of the via hold of the cured complex and on the cured resin layer.
    • 提供一种能够形成具有优异的导电可靠性并且具有优异的耐热性(例如,耐焊料耐热性)的小直径通孔的层压体的制造方法。 [解决方案]提供一种层压制造方法,其特征在于包括:在载体上形成包含固化性树脂组合物的固化性树脂组合物层以获得载持固化性树脂组合物层的工序; 在其固化性树脂组合物层形成侧上向支撑体固化性树脂组合物层叠基板的步骤,以获得包含基材和载体固化性树脂组合物层的载体预固化络合物; 对复合体进行第一次加热并使固化性树脂组合物层进行热固化以达到固化树脂层的步骤,从而获得包含基材和载体固化树脂层的载体固化络合物的步骤; 从所述支撑体固化络合物的支撑侧开孔的步骤,从而在固化树脂层中形成通孔; 从载体固化复合物中分离载体以获得包含基材和固化树脂层的固化络合物的步骤; 用于从固化络合物的通孔内部除去树脂残渣的步骤; 对固化的复合物进行第二次加热的步骤; 以及在固化络合物的通孔保持件的内周壁和固化树脂层上形成导体层的步骤。
    • 3. 发明申请
    • DEFLECTING PLATE AND LIQUID CRYSTAL DISPLAY DEVICE
    • 偏转板和液晶显示装置
    • WO2006051783B1
    • 2006-09-28
    • PCT/JP2005020453
    • 2005-11-08
    • ZEON CORPTOYOSHIMA TETSUYAARAKAWA KOUHEI
    • TOYOSHIMA TETSUYAARAKAWA KOUHEI
    • G02B5/30G02F1/1335
    • G02B5/3083B32B2457/20G02B1/105G02B1/14G02B5/305G02F1/133502G02F1/133528
    • A deflecting plate is characterized in that the deflecting plate includes at least a layer (a) and a layer (b), which at least have a protection layer (A), a deflector and a protection layer (B) in this order and have a thermoplastic resin as a main ingredient of the protecting layer (A), and a flexural modulus of the layer (a) is larger than that of the layer (b). A liquid crystal display device is characterized in that a light source, a light incoming side deflecting plate, a liquid crystal cell and a light outgoing side deflecting plate are provided in this order, and the light incoming side deflecting plate and/or the light outgoing side deflecting plate is the deflecting plate of this invention. The strong deflecting plate having high surface hardness and the liquid crystal display device provided with such deflecting plate are provided.
    • 偏转板的特征在于,偏转板至少包括层(a)和层(b),其至少具有保护层(A),偏转器和保护层(B),并且具有 作为保护层(A)的主要成分的热塑性树脂,层(a)的挠曲模量大于层(b)的弯曲弹性模量。 液晶显示装置的特征在于,依次设置光源,光入射侧偏转板,液晶单元和光出射侧偏转板,并且光入射侧偏转板和/或光出射 侧偏转板是本发明的偏转板。 提供具有高表面硬度的强偏转板和设置有偏转板的液晶显示装置。
    • 6. 发明申请
    • METHOD FOR MANUFACTURING CURED RESIN FILM
    • 制造固化树脂膜的方法
    • WO2016046647A2
    • 2016-03-31
    • PCT/IB2015002112
    • 2015-09-30
    • ZEON CORP
    • KONAGAWA JYOUKAWASAKI MASAHURNI
    • B29C35/04
    • B29C35/04
    • [Problem] To provide a manufacturing method with which a cured resin film can be manufactured at high yield, and which effectively prevents the occurrence of defects such as wrinkles in the cured resin film. [Solution] Provided is a cured resin film manufacturing method comprising: a first step in which an undried resin film is formed on a support, the undried resin film comprising a heat curable resin composition containing a curable resin and a solvent; a second step in which a curable resin film having a loss of 0.5-7wt% on heating is formed by drying the undried resin film which has been formed on the support by using a float method to convey the undried resin, which is in the state of having been formed on the support, in a drying device; a third step in which a cured resin film is formed by heat curing the curable resin film; and a fourth step in which the support is detached from the cured resin film.
    • 本发明提供一种制造方法,该制造方法能够以高收率制造固化树脂膜,并且能够有效地防止在固化树脂膜中产生褶皱等缺陷。 提供一种固化树脂膜制造方法,其包括:第一步骤,其中在支撑体上形成未干燥树脂膜,所述未干燥树脂膜包含含有可固化树脂和溶剂的热固性树脂组合物; 第二步骤,其中通过使用浮法在载体上形成的未干燥的树脂膜进行干燥,形成加热时损失0.5-7wt%的可固化树脂膜,以将处于状态的未干燥树脂 在干燥装置中形成在载体上; 第三步骤,其中通过加热固化所述可固化树脂膜来形成固化树脂膜; 以及第四步骤,其中将支撑体从固化的树脂膜上分离。
    • 7. 发明申请
    • PROCESS FOR PRODUCING SUBSTRATE WITH METAL WIRING
    • 用金属接线生产基板的方法
    • WO2007037553A9
    • 2007-05-31
    • PCT/JP2006320041
    • 2006-09-29
    • ZEON CORPUSHIJIMA TOMOHIKOFUJINO TAKEO
    • USHIJIMA TOMOHIKOFUJINO TAKEO
    • G03F7/26G03F7/022G03F7/16H01L21/027H05K3/02
    • H05K3/048G03F7/0007G03F7/405H05K2203/0594
    • A process for producing a substrate bearing a metal wiring, which comprises (a) a step in which a positive photosensitive resin composition comprising (A) an alkali-soluble resin, (B) a compound having a quinonediazide group, and (C) a solvent is applied to a substrate to form a coating film, (b) a step in which the coating film is dried under vacuum to form a photosensitive layer, (c) a step in which the photosensitive layer is pattern-wise exposed to light and then developed to form a resist pattern in a reversed taper form, (d) a step in which a metal is vapor-deposited on the substrate having the resist pattern in a reversed taper form obtained in the step (c), and (e) a step in which both of the resist pattern in a reversed taper form and the vapor-deposited metal film formed thereon are removed by a lifting-off operation from the substrate which has undergone metal vapor deposition in the step (d). The target substrate can be inexpensively produced with satisfactory productivity from a substrate having a reversed-taper-form resist pattern obtained from a common positive photoresist.
    • 一种具有金属配线的基板的制造方法,其特征在于,包括:(a)含有(A)碱溶性树脂,(B)具有醌二叠氮基的化合物的正性感光性树脂组合物和(C) 将溶剂施加到基板上以形成涂膜,(b)其中涂膜在真空下干燥以形成感光层的步骤,(c)其中感光层图案地暴露于光的步骤和 然后显影以形成反向锥形形式的抗蚀剂图案,(d)在步骤(c)中获得的具有逆锥形形式的具有抗蚀剂图案的基底上气相沉积金属的步骤,(e) 通过在步骤(d)中已经经历金属气相沉积的基板的脱离操作来除去反向锥形形式的抗蚀剂图案和形成在其上的气相沉积金属膜的两个步骤。 可以从具有从普通正性光致抗蚀剂获得的反锥形抗蚀剂图案的基板上以令人满意的生产率廉价地制造目标基板。
    • 10. 发明申请
    • RUBBER COMPOSITION, CROSSLINKED RUBBER PRODUCT AND TIRE
    • 橡胶组合物,交联橡胶制品和轮胎
    • WO2015194638A2
    • 2015-12-23
    • PCT/JP2015067627
    • 2015-06-18
    • ZEON CORP
    • TSUNOGAE YASUO
    • C08L65/00B60C1/00C08K3/36C08K5/5415
    • B60C1/00C08K3/36C08K5/5415C08L65/00
    • Provided is a rubber composition obtained by blending silica (B) and an alkoxysilane compound (C) with a rubber component containing a cyclic olefin-based rubber (A). The rubber composition is characterized in that: the cyclic olefin-based rubber (A) has a functional group at a polymer chain end, has a weight average molecular weight of 100,000 to 800,000, and has a toluene-insoluble quantity of less than 5 wt%; the blending quantity of the silica (B) is 30 to 150 parts by weight with respect to 100 parts by weight of the rubber component; the alkoxysilane compound (C) has a group able to react with the functional group of the polymer chain end of the cyclic olefin-based rubber (A), and the blending quantity of the alkoxysilane compound (C) is 0.01 to 20 parts by weight with respect to 100 parts by weight of the rubber component.
    • 本发明提供将二氧化硅(B)和烷氧基硅烷化合物(C)与含有环状烯烃系橡胶(A)的橡胶成分混合而成的橡胶组合物。 橡胶组合物的特征在于:环状烯烃系橡胶(A)在聚合物链端具有官能团,重均分子量为100,000〜800,000,甲苯不溶量小于5重量% %; 相对于100重量份的橡胶成分,二氧化硅(B)的配合量为30〜150重量份。 烷氧基硅烷化合物(C)具有与环状烯烃系橡胶(A)的聚合物链端的官能团反应的基团,烷氧基硅烷化合物(C)的配合量为0.01〜20重量份 相对于100重量份的橡胶成分。