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    • 2. 发明申请
    • MOLDING WITH HARD-COATING LAYER AND PROCESS FOR PRODUCING THE SAME
    • 用硬涂层成型及其生产方法
    • WO1994014878A1
    • 1994-07-07
    • PCT/JP1993001870
    • 1993-12-24
    • NIPPON ZEON CO., LTD.KONISHI, YuichiroHOSAKA, TohruTADA, MitsushiNATSUUME, TadaoTAKAHASHI, NobukazuKOHARA, Teiji
    • NIPPON ZEON CO., LTD.
    • C08J07/04
    • C08J7/04C08J2365/00Y10T428/31667Y10T428/31924Y10T428/31935
    • A molding with a hard-coating layer having an adhesion of at least 50 squares per 100 squares in the cross cut adhesion test, an adhesion of at least 40 squares per 100 squares even after being held in water at 70 DEG C for 1 hour, a haze value of 1.0 % or less in Taber's abrasion resistance test and a pencil hardness of 2H or above. The production process comprises either modifying the surface of a base material comprising a thermoplastic norbornene resin by, for example, corona discharge to give a surface tension of at least 50 dyn/cm or forming on the surface a primary primer layer comprising a copolymer composed of a vinylaromatic compound and a conjugated diene and modified by introducing a polar group thereinto, then forming a primer layer for a silicone-base hard-coating agent on the modified surface or the formed primary primer layer, and finally forming thereon a silicone-base hard-coating layer.
    • 在十字切割粘合试验中,每100平方厘米具有至少50个正方形的粘合性的硬涂层的成型体,即使在70℃下保持1小时后,每100平方厘米至少40个正方形的粘合力, 泰伯耐磨性试验的浊度值为1.0%以下,铅笔硬度为2H以上。 生产方法包括通过例如电晕放电改变包含热塑性降冰片烯树脂的基材的表面,以产生至少50dyn / cm 2的表面张力,或在表面上形成包含 由乙烯基芳族化合物和共轭二烯构成的共聚物,并通过在其中引入极性基团进行改性,然后在改性表面或形成的初级底漆层上形成硅氧烷基硬涂​​层的底漆层,最后在其上形成硅氧烷 基硬涂层。
    • 4. 发明申请
    • RESIST COMPOSITION
    • 耐腐蚀组合物
    • WO1997027515A1
    • 1997-07-31
    • PCT/JP1997000175
    • 1997-01-27
    • NIPPON ZEON CO., LTD.ABE, NobunoriTAKAHASHI, Nobukazu
    • NIPPON ZEON CO., LTD.
    • G03F07/039
    • G03F7/039G03F7/0045
    • A resist composition having improved sensitivity, resolution, and heat resistance and comprising (a) a polymer comprising structural units having a group instable against acids and (b) a radiation-sensitive compound capable of generating acids upon irradiation with an actinic radiation, wherein the polymer (a) is one prepared by polymerizing 10 to 100 % by weight of a (meth)acrylic ester (i) containing an allyl group having at least two substituents as an alcohol residue with 0 to 90 % by weight of a monomer (ii) copolymerizable with the (meth)acrylic ester, and a method for pattern formation using the resist composition.
    • 一种具有改进的灵敏度,分辨率和耐热性的抗蚀剂组合物,其包含(a)包含具有不可酸性基团的结构单元的聚合物和(b)能够在用光化辐射照射时产生酸的辐射敏感性化合物,其中 聚合物(a)是通过使10〜100重量%的含有至少两个具有至少两个取代基的烯丙基作为醇残基的(甲基)丙烯酸酯(i)与0〜90重量%的单体(ii)聚合而制备的 )可与(甲基)丙烯酸酯共聚,以及使用该抗蚀剂组合物的图案形成方法。
    • 9. 发明专利
    • AUTOMATIC WATER-LEVEL ADJUSTING UNDER-FLOWING-DOWN GATE
    • JPH1025729A
    • 1998-01-27
    • JP21398596
    • 1996-07-11
    • TAKAHASHI NOBUKAZU
    • TAKAHASHI NOBUKAZU
    • E02B7/20E02B7/40
    • PROBLEM TO BE SOLVED: To provide an automatic water-level adjusting gate, by which a water level is kept constant, a water flow is smoothed and the sound of water is reduced, in a diversion and cutoff gate in an irrigation canal, etc. SOLUTION: In a diversion and cutoff gate, a door-body shaft 3 is stretched between the left bank and right bank of an irrigation canal, and borne by a bearing 4 and installed, a door body 2 is rotated in structure, in which the door body 2 is leaned to the door-body shaft 3, and a water-channel bottom section is opened and closed, and a water level is adjusted, and a means, in which water is flow down on a bottom section and a smooth water flow is obtained, is taken. A lever mounted on the door- body shaft 3 in the gate is formed in structure, in which the door body 2 is tuned through a primary spring by a hydraulic cylinder, etc., and water is stopped. The gate is formed in constitution, in which the primary spring properly works and a secondary spring works the lever to the reverse side from a point to its midway of the closing of the door body 2, and a technical means, in which the gate is opened and closed by force, in which the mutual spring constants of the springs are offset, from the point of the working of the secondary spring and response, in which the door body 2 is opened and closed within a range that the spring constants are offset, is improved, is taken.