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    • 7. 发明授权
    • Porous material production method
    • 多孔材料生产方法
    • US08518490B2
    • 2013-08-27
    • US12749921
    • 2010-03-30
    • Koju ItoTsukasa IshiharaHidekazu Yamazaki
    • Koju ItoTsukasa IshiharaHidekazu Yamazaki
    • B05D5/00
    • C08J5/18C08J9/28
    • In a coating zone, a cylindrical tube is soaked in and taken out from a solution, such that a coating film is formed on a curved surface of the tube. In a wet gas zone, while a first gas feeding nozzle having a gas outlet moves in a state where the gas outlet faces an outer peripheral surface of the tube, wet gas is blown toward the coating film through the gas outlet. Water drops are generated on the coating film and grown up. In a dry gas zone, as in the case of the first gas feeding nozzle, while a second gas feeding nozzle having a gas outlet moves, dry gas is blown toward the coating film through the gas outlet. Solvent and water drops are evaporated from the coating film. Pores form from the water drops as a template for the porous material on the coating film.
    • 在涂布区域中,将圆筒形管浸泡并从溶液中取出,使得在管的弯曲表面上形成涂膜。 在湿气区域中,具有气体出口的第一气体供给喷嘴在气体出口朝向管的外周面的状态下移动,湿气通过气体出口吹向涂膜。 在涂膜上产生水滴并长大。 在干燥气体区域中,与第一气体供给喷嘴的情况相同,当具有气体出口的第二气体供给喷嘴移动时,干燥气体通过气体出口吹向涂膜。 溶剂和水滴从涂膜中蒸发掉。 从水滴形成孔,作为涂膜上的多孔材料的模板。
    • 8. 发明授权
    • Manufacturing method of polymer film
    • 聚合物膜的制造方法
    • US07686999B2
    • 2010-03-30
    • US11723288
    • 2007-03-19
    • Toshinao AraiHidekazu Yamazaki
    • Toshinao AraiHidekazu Yamazaki
    • B29D7/00B29C71/00B29C55/00
    • B29C41/26B29C55/08B29K2001/00B29K2995/0034
    • A casting film is made by casting dope including polymer and solvent on a casting drum whose surface is cooled. The casting film becomes to have a self-supporting property by cooling solidification, and then peeled as a wet film from the casting drum. The wet film is fed into a pin tenter in which both side edges of the wet film is held by plural pins. The wet film is dried while conveyed through the pin tenter, to become a film. Next, the film having predetermined X-ray diffraction intensity is fed into a clip tenter. While the film whose both side edges are held by clips is conveyed, it is stretched in the width direction thereof at a stretch rate in a range of 15% to 40%, to control molecular orientation in the film.
    • 流延膜通过将表面冷却的流延鼓上的包括聚合物和溶剂的涂料制成。 流延膜通过冷却凝固而具有自支撑性,然后从流延滚筒作为湿膜剥离。 湿膜被送入其中湿膜的两个侧边缘由多个销保持的销拉幅机。 湿纸被干燥,通过销拉幅机输送,成为薄膜。 接下来,将具有预定X射线衍射强度的膜进料到夹式拉幅机中。 输送两侧边缘被夹子夹持的薄膜,以15%〜40%的拉伸率在宽度方向上拉伸,以控制薄膜中的分子取向。
    • 9. 发明申请
    • POROUS FILM PRODUCTION METHOD
    • 多孔膜生产方法
    • US20100040789A1
    • 2010-02-18
    • US12562324
    • 2009-09-18
    • Koju ItoTsukasa IshiharaHidekazu Yamazaki
    • Koju ItoTsukasa IshiharaHidekazu Yamazaki
    • B05D3/04
    • B05D3/105B05D1/40B05D5/02Y10T137/6851
    • A coating liquid containing a polymer and a hydrophobic solvent is applied to a support to form a coating layer. In a humidifying process with high humidity, the coating layer is set under an atmosphere having a first dew point higher than a surface temperature of the coating layer. Then, in a humidifying process with low humidity, the coating layer is set under an atmosphere having a second dew point higher than the surface temperature of the coating layer and lower than the first dew point. Thereby, water vapor is condensed from ambient air on the coating layer to generate minuscule water drops. Thereafter, the coating layer is dried to form a porous film having plural pores made by the minuscule water drops as a template. Since the humidifying process with high humidity is performed for a short period of time and then the humidifying process with low humidity is performed, the minuscule water drops are prevented from growing up, to obtain a porous film having minute pores.
    • 将含有聚合物和疏水性溶剂的涂布液施加到载体上以形成涂层。 在高湿度的加湿过程中,将涂层置于第一露点高于涂层的表面温度的气氛中。 然后,在低湿度的加湿工序中,将涂层置于第二露点高于涂层的表面温度并低于第一露点的气氛中。 因此,水蒸汽从涂层上的环境空气冷凝,产生微小的水滴。 然后,将该涂层干燥,形成多孔膜,该多孔膜具有由微小的水滴形成的多孔,作为模板。 由于在较短时间内进行了高湿度的加湿处理,所以进行了低湿度的加湿处理,防止了微小的水滴的长大,从而得到具有细孔的多孔膜。
    • 10. 发明授权
    • Film stretching apparatus and solution film-forming method
    • 薄膜拉伸装置和溶液成膜方法
    • US07582236B2
    • 2009-09-01
    • US10950818
    • 2004-09-28
    • Hidekazu YamazakiSadanobu FujimotoToshinao Arai
    • Hidekazu YamazakiSadanobu FujimotoToshinao Arai
    • B29D7/01
    • B29C55/20B29C55/023B29C55/06B29C55/165B29D7/01B29K2001/00
    • A clip to hold the film has a clip body, a flapper, a press slider and a rail mount. A pair of the press sliders is located in both sides of the flapper. A coil spring presses the press slider upward. A pair of entrance side film release members, provided in the tenter entrance, presses the press slider downward to press the lateral edge portions of the film by the press sliders. At the film hold position, the flapper rotates from a release position to a hold position to hold the film, and the flapper is kept at the hold position by a torsion spring. The flapper holds the film 26 after the press slider holds the lateral edge portions of the film, so the flapper can hold the film even when the lateral edge portions of the film are curled.
    • 用于固定胶片的夹子具有夹子主体,挡板,压力滑块和导轨支架。 一对压力滑块位于挡板的两侧。 螺旋弹簧向上按压压板。 设置在拉幅机入口处的一对入口侧薄膜释放构件向下按压推动滑块,以通过压力滑块挤压薄膜的侧边缘部分。 在胶片保持位置,挡板从释放位置旋转到保持位置以保持胶片,并且挡板通过扭转弹簧保持在保持位置。 在压板滑动器保持薄膜的侧边缘部分之后,挡板保持薄膜26,因此即使当薄膜的侧边缘部分卷曲时,挡板也能保持薄膜。