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    • 12. 发明申请
    • Rtm molding method and device
    • Rtm成型方法及装置
    • US20070182071A1
    • 2007-08-09
    • US10589589
    • 2005-02-16
    • Toshihide SekidoShigeo IwasawaTatsuya Senba
    • Toshihide SekidoShigeo IwasawaTatsuya Senba
    • B29C70/48
    • B29C70/548B29C33/0066B29C33/10B29C70/081B29C70/48
    • An RTM molding method comprising disposing a reinforcing fiber substrate in a cavity of a mold consisting of a plurality of dies, clamping the mold, and thereafter injecting resin to complete molding, characterized in that divided areas with respect to the surface direction of the reinforcing fiber substrate are assumed, each divided area is one in which injected resin expands over the entire surface in the area and can be substantially uniformly impregnated in the thickness direction of the substrate, and resin introducing paths are formed for respective assumed divided areas for introducing the injected resin into the respective divided areas; and an RTM molding device. When a relatively large molded product is to be molded, a molding step from resin injection to impregnating/curing can be implemented at high speed without generating a non-resin-flowing area, thereby enabling a high-quality molded product to be produced free from voids, etc., with a molding time shortened and production speed and volume increased.
    • 一种RTM成型方法,包括将增强纤维基材设置在由多个模具构成的模具的空腔中,夹持所述模具,然后注入树脂以完成成型,其特征在于,相对于所述增强纤维的表面方向分割的区域 基板,每个分割区域是其中注入的树脂在该区域的整个表面上膨胀并且可以基本上均匀地浸渍在基板的厚度方向上的区域,并且为各个假定分割区域形成树脂引入路径,以引入注入 树脂分成各个分区; 和RTM成型装置。 当要成型相对较大的模制产品时,可以高速实现从树脂注入到浸渍/固化的成型步骤,而不产生非树脂流动区域,从而能够生产高质量的模制产品 空隙等,成型时间缩短,生产速度和体积增加。
    • 13. 发明申请
    • Method of rtm molding
    • rtm成型方法
    • US20060125155A1
    • 2006-06-15
    • US10530263
    • 2003-10-09
    • Toshihide SekidoKazuaki KitaokaHiroshi OdaniShigeru NishiyamaMasahiko Shimizu
    • Toshihide SekidoKazuaki KitaokaHiroshi OdaniShigeru NishiyamaMasahiko Shimizu
    • B29C43/10
    • B29C45/0005B29C70/443B29C70/547B29C70/548B29C70/68
    • A method of RTM molding wherein a reinforcing fiber substrate is placed in a mold, each of a first and a second resin distribution media exhibiting a resin flow resistance lower than the resistance of the reinforcing fiber substrate is placed on each surface of the reinforcing fiber substrate, and the inside of the mold is evacuated and a resin is injected into the mold to thereby impregnate the reinforcing fiber substrate with the resin injected, characterized in that the first resin distribution medium exhibits a resin flow resistance lower than that of the second resin distribution medium, and the evacuation is carried out through the second resin distribution medium while the resin is injected through the first resin distribution medium. The method can be advantageously employed for producing, in particular, FRP structure which is thick and excellent in designability, lightweight property and/or strength.
    • 一种RTM成型方法,其中将增强纤维基材放置在模具中,将第一和第二树脂流动阻力低于强化纤维基材的电阻的第一和第二树脂分布介质放置在增强纤维基材的每个表面上 ,将模具内部抽真空,将树脂注入到模具中,由此注入树脂浸渍增强纤维基材,其特征在于,第一树脂分散介质的树脂流动阻力低于第二树脂分布 介质,并且通过第二树脂分配介质进行抽真空,同时通过第一树脂分配介质注入树脂。 该方法可以有利地用于特别地制造厚且优异的可设计性,轻质性和/或强度的FRP结构。
    • 14. 发明授权
    • Coating machine having a timer for continuously forming a coating of
uniform thickness on a substrate
    • 涂布机具有用于在基板上连续形成均匀厚度的涂层的定时器
    • US6139639A
    • 2000-10-31
    • US700421
    • 1996-08-28
    • Yoshiyuki KitamuraHideo IdoTetsuo SuzukiKazuhiko AbeHiromitsu KanamoriTetsuya GotoTakayoshi AkamatsuMasaharu TooyamaToshihide Sekido
    • Yoshiyuki KitamuraHideo IdoTetsuo SuzukiKazuhiko AbeHiromitsu KanamoriTetsuya GotoTakayoshi AkamatsuMasaharu TooyamaToshihide Sekido
    • B05C5/02B05C9/02B05C3/00
    • B05C5/0254B05C5/0208B05C9/02Y10S118/02
    • A coating apparatus which comprises a feeding means to feed a coating liquid, a coating liquid applicator having a slot extending in one direction to discharge the coating liquid fed by the feeding means, and a conveying means to move at least either the coating liquid applicator or a substrate to be coated with the coating liquid relatively one to the other, comprising: (a) a first control means which comprises (a-1) a position detecting means to detect positions of the coating liquid applicator or the substrate which is moved by the conveying means, and (a-2) a controller capable of stopping the coating liquid applicator or the substrate which is moved by the conveying means at a position detected by the position detecting means such that a start-of-coating line of the substrate is in register with the slot of the coating liquid applicator and capable of starting the movement of the coating liquid applicator or the substrate which is stopped at the position; and (b) a second control means which comprises a timer controller capable of transmitting a signal to the controller of the first control means for the movement of the coating liquid applicator or the substrate which is stopped at the position after a desired period which begins with commencement of feeding the coating liquid and is needed for forming a coating liquid bead which is in contact with both the exit aperture of the slot of the coating liquid applicator and the substrate at the start-of-coating line.
    • PCT No.PCT / JP95 / 02741 Sec。 371日期:1996年8月28日 102(e)日期1996年8月28日PCT 1995年12月27日PCT PCT。 第WO96 / 20045号公报 日期1996年7月4日一种涂布装置,其特征在于,包括供给装置,用于供给涂布液,涂布液涂布器,其具有沿一个方向延伸的槽,以排出由所述进给装置供给的涂布液;以及输送装置, 所述涂布液施加器或相对于所述涂布液涂布的基板包括:(a)第一控制装置,其包括:(a-1)位置检测装置,用于检测涂布液施加器的位置或 通过输送装置移动的基板和(a-2)能够停止由位置检测装置检测的位置处被输送装置移动的涂布液施加器或基板的控制器, 基材的涂布线与涂布液施加器的槽对准,并且能够开始涂布液施加器或停止在该位置的基板的移动; 和(b)第二控制装置,其包括定时器控制器,该定时器控制器能够向第一控制装置的控制器发送信号,用于使涂料液施加器或基板停止在所述期间之后的位置移动 开始进料涂布液体,并且需要形成与涂布液施加器的槽的出口孔和涂层开始线处的基板两者接触的涂布液珠。
    • 16. 发明授权
    • Process for producing fiber reinforced resin
    • 纤维增强树脂生产工艺
    • US08741198B2
    • 2014-06-03
    • US12281785
    • 2007-03-01
    • Toshihide SekidoHidehiro TakemotoSeiji TsujiShintaro Tanaka
    • Toshihide SekidoHidehiro TakemotoSeiji TsujiShintaro Tanaka
    • B29C45/14B32B37/00
    • B29C70/48B29C70/345B29C70/547B29K2995/0073Y10T428/2915Y10T428/2971
    • A process for producing a fiber reinforced resin which comprises placing at least a reinforcing fiber substrate in a cavity of a mold, injecting a resin into the cavity, and curing the resin, characterized in that a substrate for forming a skin layer, and a resin distribution medium, which is located between the substrate for forming the skin layer and the reinforcing fiber substrate and in which the ratio of the coefficient of impregnation thereof to that of the substrate for forming the skin layer is 1.5-10, are disposed on at least one surface of the reinforcing fiber substrate via an interlayer having a cover factor of 90%-100% and comprising at least one woven fabric. The process diminishes pinhole generation in the skin layer in RTM, and can reduce the necessity of a repair step in, e.g., a painting step as a later step, thereby improving productivity.
    • 1.一种纤维增强树脂的制造方法,其特征在于,将至少增强纤维基材放置在模具的空腔内,将树脂注入到所述空腔内,使所述树脂固化,其特征在于,形成表层的基材和树脂 位于用于形成表皮层的基材和增强纤维基材之间并且其浸渍系数与用于形成表皮层的基材的浸渍系数的比率为1.5-10的分布介质至少设置在 增强纤维基材的一个表面经由覆盖因子为90%-100%的中间层,并包含至少一种机织织物。 该方法在RTM中减少皮肤层中的针孔产生,并且可以减少例如在后续步骤中的涂漆步骤中的修复步骤的必要性,从而提高生产率。
    • 18. 发明授权
    • Method of RTM molding
    • RTM成型方法
    • US08420002B2
    • 2013-04-16
    • US10530263
    • 2003-10-09
    • Toshihide SekidoKazuaki KitaokaHiroshi OdaniShigeru NishiyamaMasahiko Shimizu
    • Toshihide SekidoKazuaki KitaokaHiroshi OdaniShigeru NishiyamaMasahiko Shimizu
    • B32B37/10
    • B29C45/0005B29C70/443B29C70/547B29C70/548B29C70/68
    • A method of RTM molding wherein a reinforcing fiber substrate is placed in a mold, each of a first and a second resin distribution media exhibiting a resin flow resistance lower than the resistance of the reinforcing fiber substrate is placed on each surface of the reinforcing fiber substrate, and the inside of the mold is evacuated and a resin is injected into the mold to thereby impregnate the reinforcing fiber substrate with the resin injected, characterized in that the first resin distribution medium exhibits a resin flow resistance lower than that of the second resin distribution medium, and the evacuation is carried out through the second resin distribution medium while the resin is injected through the first resin distribution medium. The method can be advantageously employed for producing, in particular, FRP structure which is thick and excellent in designability, lightweight property and/or strength.
    • 一种RTM成型方法,其中将增强纤维基材放置在模具中,在强化纤维基材的每个表面上放置第一和第二树脂流动阻力低于增强纤维基材的电阻的树脂流动阻力 ,将模具内部抽真空,将树脂注入到模具中,由此注入树脂浸渍增强纤维基材,其特征在于,第一树脂分散介质的树脂流动阻力低于第二树脂分布 介质,并且通过第二树脂分配介质进行抽真空,同时通过第一树脂分配介质注入树脂。 该方法可以有利地用于特别地制造厚且优异的可设计性,轻质性和/或强度的FRP结构。
    • 19. 发明申请
    • PROCESS FOR PRODUCING FIBER REINFORCED RESIN
    • 生产纤维增强树脂的工艺
    • US20090202826A1
    • 2009-08-13
    • US12281785
    • 2007-03-01
    • Toshihide SekidoHidehiro TakemotoSeiji TsujiShintaro Tanaka
    • Toshihide SekidoHidehiro TakemotoSeiji TsujiShintaro Tanaka
    • D02G3/40B29C70/10
    • B29C70/48B29C70/345B29C70/547B29K2995/0073Y10T428/2915Y10T428/2971
    • A process for producing a fiber reinforced resin which comprises placing at least a reinforcing fiber substrate in a cavity of a mold, injecting a resin into the cavity, and curing the resin, characterized in that a substrate for forming a skin layer, and a resin distribution medium, which is located between the substrate for forming the skin layer and the reinforcing fiber substrate and in which the ratio of the coefficient of impregnation thereof to that of the substrate for forming the skin layer is 1.5-10, are disposed on at least one surface of the reinforcing fiber substrate via an interlayer having a cover factor of 90%-100% and comprising at least one woven fabric. The process diminishes pinhole generation in the skin layer in RTM, and can reduce the necessity of a repair step in, e.g., a painting step as a later step, thereby improving productivity.
    • 1.一种纤维增强树脂的制造方法,其特征在于,将至少增强纤维基材放置在模具的空腔内,将树脂注入到所述空腔中,使所述树脂固化,其特征在于,形成表层的基材和树脂 位于用于形成表皮层的基材和增强纤维基材之间并且其浸渍系数与用于形成表皮层的基材的浸渍系数的比率为1.5-10的分布介质至少设置在 增强纤维基材的一个表面经由覆盖因子为90%-100%的中间层,并包含至少一种机织织物。 该方法在RTM中减少皮肤层中的针孔产生,并且可以减少例如在后续步骤中的涂漆步骤中的修复步骤的必要性,从而提高生产率。