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    • 2. 发明申请
    • WIND TURBINE BLADE WITH TRANSITION REGION
    • 风力涡轮叶片与过渡区域
    • US20140154092A1
    • 2014-06-05
    • US14233558
    • 2012-07-16
    • Martin DahlBjarne Krab MortensenMorten Olesen
    • Martin DahlBjarne Krab MortensenMorten Olesen
    • F01D5/14
    • F01D5/147F01D5/12F03D1/0675F05B2280/5001F05B2280/6003F05B2280/702Y02E10/721
    • A wind turbine blade (1) is formed of a fibre-reinforced composite material comprising a polymer matrix. The blade (1) further comprises a first region (11), a second region (12) and a transition region (13) between the first and the second region (11, 12). The first region (11) is reinforced predominantly with a first reinforcement fibre material (21). The second region (12) is reinforced predominantly with a second reinforcement fibre material (22). The first and the second reinforcement fibre material differ from each other and has differing E-modulus. The transition region (13) additionally comprises a third type of reinforcement fibre material (23) differing from both the first and the second reinforcement fibre material (21; 22) and having an E-modulus between that of the first reinforcement fibre material (21) and that of the second reinforcement fibre material (22).
    • 风力涡轮机叶片(1)由包含聚合物基质的纤维增强复合材料形成。 叶片(1)还包括在第一和第二区域(11,12)之间的第一区域(11),第二区域(12)和过渡区域(13)。 第一区域(11)主要由第一增强纤维材料(21)加强。 第二区域(12)主要用第二增强纤维材料(22)加强。 第一和第二增强纤维材料彼此不同并且具有不同的E模量。 过渡区域(13)还包括与第一和第二增强纤维材料(21; 22)不同的第三类型的增强纤维材料(23),并且在第一增强纤维材料(21)和第二增强纤维材料 )和第二增强纤维材料(22)的厚度。
    • 6. 发明授权
    • Fibre-reinforced joint
    • 纤维增强接头
    • US08168027B2
    • 2012-05-01
    • US11793952
    • 2005-12-29
    • Torben Krogsdal JacobsenMorten Olesen
    • Torben Krogsdal JacobsenMorten Olesen
    • B32B5/12B32B39/10B29C65/00B29C65/56
    • B29C70/54B29C37/0082B29C70/24B29C70/443B29L2031/085Y02P70/523Y10T156/10Y10T428/23914Y10T428/24124Y10T428/24994
    • The present invention relates to a method of manufacturing a fiber-reinforced laminate (101), which laminate comprises at least one area on the surface of the laminate configured with projecting fibers for being joined to one or more other elements. This is accomplished by arrangement of a hybrid mat (505) most distally in the laminate which comprises at least two layers with fibers (105) transversally across the joining face (402) of the layers. The outermost layer (301) of the hybrid mat is removed prior to joining, whereas the innermost layer (506) of the hybrid mat remains a constituent of the laminate (101). The invention relates to different methods of causing fibers to project from the surface of the laminate, said fibers thus having a reinforcing effect on the joints. The invention also relates to a laminate manufactured by the disclosed methods and a blade for a wind power plant comprising such laminate.
    • 本发明涉及一种制造纤维增强层压板(101)的方法,该层压板包括层压体表面上的至少一个区域,其被构造成用于连接到一个或多个其它元件的突起纤维。 这是通过在层压板中最远端地布置混合垫(505)来实现的,该层包括至少两层,横向跨越层的接合面(402)的纤维(105)。 混合垫的最外层(301)在接合之前被去除,而混合垫的最内层(506)仍然是层压板(101)的组成部分。 本发明涉及使纤维从层压体的表面突出的不同方法,因此所述纤维对接头具有增强作用。 本发明还涉及通过公开的方法制造的层压板和用于包括这种层压板的风力发电设备的叶片。
    • 7. 发明申请
    • Fibre-Reinforced Joint
    • 纤维增强接头
    • US20080160248A1
    • 2008-07-03
    • US11793952
    • 2005-12-29
    • Torben Krogsdal JacobsenMorten Olesen
    • Torben Krogsdal JacobsenMorten Olesen
    • B32B5/12
    • B29C70/54B29C37/0082B29C70/24B29C70/443B29L2031/085Y02P70/523Y10T156/10Y10T428/23914Y10T428/24124Y10T428/24994
    • The present invention relates to a method of manufacturing a fibre-reinforced laminate (101), which laminate comprises at least one area on the surface of the laminate configured with projecting fibres for being joined to one or more other elements. This is accomplished by arrangement of a hybrid mat (505) most distally in the laminate which comprises at least two layers with fibres (105) transversally across the joining face (402) of the layers. The outermost layer (301) of the hybrid mat is removed prior to joining, whereas the innermost layer (506) of the hybrid mat remains a constituent of the laminate (101). The invention relates to different methods of causing fibres to project from the surface of the laminate, said fibres thus having a reinforcing effect on the joints. The invention also relates to a laminate manufactured by the disclosed methods and a blade for a wind power plant comprising such laminate.
    • 本发明涉及一种制造纤维增强层压板(101)的方法,该层压板包括层压体表面上的至少一个区域,其被构造成用于连接到一个或多个其它元件的突起纤维。 这是通过在层压板中最远端地布置混合垫(505)来实现的,该层包括至少两层,横向跨越层的接合面(402)的纤维(105)。 混合垫的最外层(301)在接合之前被去除,而混合垫的最内层(506)仍然是层压板(101)的组成部分。 本发明涉及使纤维从层压体的表面突出的不同方法,因此所述纤维对接头具有增强作用。 本发明还涉及通过公开的方法制造的层压板和用于包括这种层压板的风力发电设备的叶片。