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    • 1. 发明专利
    • Rtm molding device, rtm molding method, and semi-molded body
    • RTM成型装置,RTM模制方法和半模体
    • JP2012179760A
    • 2012-09-20
    • JP2011043185
    • 2011-02-28
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • HAYASHI NORIYAKANEMASU MASAYUKI
    • B29C39/10B29K105/08
    • B29C45/02B29C70/48B29C70/546B29C70/547B29C70/548B32B3/266Y10T428/24322
    • PROBLEM TO BE SOLVED: To provide an RTM molding device and an RTM molding method by which even a large member and a thick plate member can be impregnated with a resin without causing non-impregnation, fiber meandering, etc., and a high-toughness and high-precise molded body can be obtained.SOLUTION: In the RTM molding device 100, a fiber-reinforced base material 11 includes at least at one side surface thereof: a surface molding layer 4 which is arranged between the fiber-reinforced base material 11 and a molding die 1, includes a plurality of through holes 7 formed therein, and has stiffness so that when the inside of the cavity is depressurized, the thickness is not substantially changed at pressure in a cavity; and a resin diffusion portion 5 which is located at the side of the surface molding layer 4 opposite to the side of the fiber-reinforced base material 11, and includes a resin flow path formed to communicate with the plurality of through holes 7 of the surface molding layer 4.
    • 要解决的问题:为了提供一种RTM成型装置和RTM成型方法,通过该RTM成型装置和RTM成型方法,即使大的部件和厚板部件也可以用树脂浸渍而不引起非浸渍,纤维弯曲等,以及 可以获得高韧性和高精度的成型体。 解决方案:在RTM成型装置100中,纤维增强基材11至少在其一个侧表面上:布置在纤维增强基材11和成型模具1之间的表面成型层4, 包括形成在其中的多个通孔7,并且具有刚度,使得当空腔内部减压时,在空腔中的压力下基本上不会改变厚度; 以及树脂扩散部5,其位于与纤维增强基材11的侧面相反的表面成型层4的侧面,并且具有形成为与表面的多个通孔7连通的树脂流路 成型层4.版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Rtm molding method and rtm molding device
    • RTM成型方法和RTM成型装置
    • JP2012240231A
    • 2012-12-10
    • JP2011109670
    • 2011-05-16
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • AKIYAMA HIRONOBUKANEMASU MASAYUKI
    • B29C39/38B29C39/02B29K101/00B29K105/06
    • B29C45/0025B29C35/02B29C35/0266B29C37/005B29C37/0064B29C70/48B29C2791/001
    • PROBLEM TO BE SOLVED: To provide a method for molding a molded article whose surface and interior are free of voids, porosity, and resin shrinkage while plate thickness accuracy is maintained even with a thick plate member having a thickness of 10 mm or more.SOLUTION: An RTM method comprises: a first heating step for impregnating, with a thermoplastic resin, a reinforcing fiber substrate disposed within a molding die constituted of two or more separate die members, and thereafter heating any of the die members constituting the molding die to form a temperature gradient having a temperature difference of a predetermined value or greater from one side of the reinforcing fiber substrate to the other side; and a second heating step for heating another die member that is different from the die member heated in the first heating step.
    • 待解决的问题:提供一种模制品的成型方法,其表面和内部没有空隙,孔隙率和树脂收缩,同时即使使用厚度为10mm的厚板件也能保持板厚精度,或者 更多。 解决方案:一种RTM方法包括:第一加热步骤,用热塑性树脂浸渍设置在由两个或更多个分开的模具构件构成的模制模具内的增强纤维基材,然后加热构成 成型模具形成从增强纤维基材的一侧到另一侧具有预定值以上的温度差的温度梯度; 以及第二加热步骤,用于加热与在第一加热步骤中加热的模具构件不同的另一个模具构件。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Shock absorbing member
    • 减震器
    • JP2009092133A
    • 2009-04-30
    • JP2007263400
    • 2007-10-09
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KANEMASU MASAYUKINISHIYAMA SHIGERUTANAKA TOYOMI
    • F16F7/12
    • F16F7/124
    • PROBLEM TO BE SOLVED: To provide a shock absorbing member capable of securing a desired energy absorbing quantity by controlling a peak value of an initial load of self destruction caused during transition to a stable successive destruction mode.
      SOLUTION: This shock absorbing member 3 is composed of reinforced fiber and resin with a plurality of fiber reinforced resin layers for absorbing a shock by the self destruction when receiving the shock. The reinforced fiber of at least one fiber reinforced resin layer 5 at a tip 3a extends in a direction in a range of 90°±45° with respect to the energy absorbing axis direction. The reinforced fiber 7 of a shock absorbing member body 3b except for the tip 3a in the same fiber reinforced resin layer extends in a direction in a range of 0°±45° with respect to the energy absorbing axis direction.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够通过控制在转变到稳定的连续破坏模式期间引起的自我破坏的初始载荷的峰值来确保期望的能量吸收量的减震构件。 解决方案:该减震构件3由增强纤维和树脂组成,多个纤维增强树脂层在接收到冲击时通过自毁来吸收冲击。 在尖端3a处的至少一个纤维增强树脂层5的增强纤维相对于能量吸收轴方向在90°±45°的范围内延伸。 除了同一纤维增强树脂层中的尖端3a之外,减震构件体3b的强化纤维7相对于能量吸收轴方向在0°±45°的范围内延伸。 版权所有(C)2009,JPO&INPIT