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    • 6. 发明授权
    • Rubbing treatment apparatus having roller with specific implanting directions of the pile yarns and method of rubbing
    • 具有具有绒头纱线的特定植入方向的辊的摩擦处理装置和摩擦方法
    • US06313897B1
    • 2001-11-06
    • US08955139
    • 1997-10-21
    • Shinichi MurayamaKeizo FujiiMasashi Higuchi
    • Shinichi MurayamaKeizo FujiiMasashi Higuchi
    • G02F11337
    • G02F1/133784
    • A rubbing treatment apparatus and method of rubbing are described. A rubbing roller has a rotation axis and a rubbing cloth wound around its surface. The rubbing cloth is made with pile yarns which are implanted at cyclic intervals in two directions perpendicular to each other. The rubbing roller is used to contact a surface of a film-to-be-processed which is formed so as to cover a plurality of strip-shaped electrodes formed parallel to each other on a substrate, to be moved together with the substrate in relation to each other to perform a rubbing treatment on the surface of the film-to-be-treated. The rotation axis of the rubbing roller is parallel to the surface during the rubbing treatment. An angle &thgr;3 in a plane parallel to the surface is formed by one of the implanting directions of the pile yarns of the rubbing roller and the longitudinal direction of the strip-shaped electrodes of the substrate and is in a range of from +5 degrees to −5 degrees. An angle &thgr;5 formed by the direction of a rotation axis of the rubbing roller and one of the implanting directions of the pile yarns is selected to be in a range between 10 and 60 degrees.
    • 描述了摩擦处理装置和摩擦方法。 摩擦辊具有绕其表面旋转的旋转轴线和摩擦布。 该摩擦布是用垂直于两个方向的循环间隔注入的绒头纱线制成的。 摩擦辊用于接触待处理膜的表面,该表面形成为覆盖在基板上彼此平行形成的多个条形电极,以与基板一起移动 彼此进行对被处理膜的表面的摩擦处理。 在摩擦处理期间,摩擦辊的旋转轴线平行于表面。 平行于表面的平面中的角度θ3由摩擦辊的绒头纱线的注入方向和基底的带状电极的纵向方向之一形成,并且在+5度到 -5度。 通过摩擦辊的旋转轴线的方向和绒头纱线的植入方向之一形成的角度θ5选择在10度和60度之间的范围内。
    • 8. 发明申请
    • Catalyst for Olefin Polymerization and Polymerization Method Using the Same
    • 烯烃聚合催化剂及其聚合方法
    • US20080293898A1
    • 2008-11-27
    • US11658474
    • 2005-06-24
    • Masashi HiguchiShuji MatsumuraYoshio SasakiKiyomi MoritaSatoshi Hashizume
    • Masashi HiguchiShuji MatsumuraYoshio SasakiKiyomi MoritaSatoshi Hashizume
    • C08F4/18C08F4/16
    • C08F10/00C08F110/06C08F210/16C08F4/6492C08F4/6545C08F4/651C08F4/6495C08F2500/12C08F2500/15C08F2500/24C08F210/06
    • Disclosed is a catalyst for olefin polymerization, comprising: Component [A]: a prepolymer obtained by olefin prepolymerization on solid titanium catalyst component having an average particle size of 25 to 70 μm produced by contacting of a solid component (i) having an average particle size of 26 to 75 μm, containing magnesium, titanium, halogen, and an electron donor (c3), and being free from detachment of titanium by washing with hexane at 25° C., a polar compound (ii) having a dipole moment of 0.50 to 4.00 Debye, and at least one compound (iii) selected from liquid titanium (d) and an electron donor (e), in which the content of titanium in the solid component (i) is reduced by ≧25% by weight, and the weight ratio of the sum of the electron donor (c3) and the electron donor (e) to titanium [electron donor (c3+e)/titanium atoms] is ≧7; Component [B]: an organometallic compound; and Component [C]: an organosilicon compound represented by the following formula (I): Si(OR1)3(NR2R3)   (I) (wherein R1 is a hydrocarbon group having 1 to 8 carbon atoms, R2 is a hydrocarbon group having 1 to 12 carbon atoms or hydrogen atom, R3 is a hydrocarbon group having 1 to 12 carbon atoms). According to the catalyst, an olefin polymer having high stereoregularity and low molecular weight (high fluidity) can be efficiently provided.
    • 公开了用于烯烃聚合的催化剂,其包含:[A]成分:通过烯烃预聚合获得的预聚合物,其通过使具有平均粒子的固体成分(i)与平均粒径为25〜70μm的固体钛催化剂成分 含有镁,钛,卤素和电子给体(c3)的26至75μm的大小,并且在25℃用己烷洗涤不会脱离钛,将具有偶极矩的极性化合物(ⅱ) 0.50至4.00德拜,和至少一种选自液体钛(d)和电子给体(e)的化合物(iii),其中固体组分(i)中钛的含量降低≥25重量% ,电子给体(c3)和电子给予体(e)之和与钛[电子给体(c3 + e)/钛原子)的重量比>> 7。 成分[B]:有机金属化合物; 和组分[C]:由下式(I)表示的有机硅化合物:<?in-line-formula description =“In-line formula”end =“lead”→Si(OR1)3(NR2R3) )<?in-line-formula description =“In-line Formulas”end =“tail”?>(其中R1是具有1-8个碳原子的烃基,R2是具有1至12个碳原子的烃基或氢 原子,R3为碳原子数1〜12的烃基)。 根据催化剂,可以有效地提供具有高立构规整性和低分子量(高流动性)的烯烃聚合物。