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    • 2. 发明申请
    • COMPOSITE MATERIAL MANUFACTURING DEVICE AND COMPOSITE MATERIAL MANUFACTURING METHOD
    • 复合材料制造装置及复合材料制造方法
    • US20130059022A1
    • 2013-03-07
    • US13664942
    • 2012-10-31
    • MITSUBISHI HEAVY INDUSTRIES, LTD.
    • Masayuki KanemasuShigeru NishiyamaHideki Horizono
    • B29C73/02
    • B29C43/3642B29C43/12B29C73/025B29C73/10B29C2043/3644B29K2105/0002B29K2105/0872
    • In manufacturing composite material by curing fluid, strength deterioration of the composite material due to repair before the fluid is cured is reduced. A suction hole is formed in a bag film (3) for sealing a space for fibers being impregnated with resin, after start of impregnation. The suction hole is covered by a plate (56) with holes (57). The resin is sucked from the space through the plate (56). According to such composite material manufacturing method, a defect, which occurs during fibers are impregnated with resin, can be repaired before the resin is cured without causing disorder and damage in the fibers. In a composite material formed from one repaired in the above way, the repaired portion is strong, namely, there is no strength deterioration due to repair after curing, and thus, the material is preferred as compared with a composite material which is repaired after resin is cured.
    • 在通过固化流体制造复合材料时,由于在流体固化之前修复而导致的复合材料的强度劣化降低。 在开始浸渍之后,在袋膜(3)中形成有用于密封浸渍有树脂的纤维空间的吸孔。 抽吸孔由具有孔(57)的板(56)覆盖。 树脂通过板(56)从空间吸入。 根据这样的复合材料制造方法,在树脂浸渍之前,在树脂浸渍的纤维中发生的缺陷可以在树脂固化之前被修复,而不会引起纤维的紊乱和损坏。 在以上述方式修复的复合材料中,修复部分强,即固化后的修复没有强度劣化,因此与树脂后修复的复合材料相比,材料优选 被治愈