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    • 3. 发明授权
    • Sectional wind turbine blade
    • 截面风力发电机叶片
    • US09388789B2
    • 2016-07-12
    • US13513002
    • 2010-12-02
    • Paul HibbardMark Hancock
    • Paul HibbardMark Hancock
    • F03D1/06
    • F03D1/0683F03D1/0675F05B2240/302Y02E10/721Y02P70/523Y10T29/49316
    • The invention relates to a sectional blade for a wind turbine, the blade comprising at least a first blade section and a second blade section extending in opposite directions from a blade joint, where each blade section comprises a spar section forming a structural member and extending in the longitudinal direction of the blade, and where the first and second blade sections are connected by fastening means restraining any movement of the first blade section relative to the second blade section length ways. The first and the second blade sections are structurally connected by a spar bridge protruding from one of the blade sections and terminating axially in an end portion, which is received in the spar section of the other blade section. The spar bridge and the spar section have interlocking shapes by which rotation of the spar bridge in the spar section is prevented thereby preventing rotation of one of the blade sections relative to the other. Further, the spar section of the other blade section comprises a receiving section extending from the blade joint and inwards into the spar section of that blade, which receiving section holds the spar bridge such that movement of the end portion of the spar bridge relative to the receiving section is enabled in the longitudinal direction. The invention further relates to a method of manufacturing a sectional blade as mentioned above.
    • 本发明涉及一种用于风力涡轮机的截面叶片,所述叶片包括至少第一叶片部分和从叶片接头沿相反方向延伸的第二叶片部分,其中每个叶片部分包括形成结构构件并在 叶片的纵向方向,并且第一和第二叶片部分通过紧固装置连接的位置限制第一叶片部分相对于第二叶片段长度方向的任何运动。 第一和第二叶片部分通过从其中一个叶片部分突出并且轴向终止于端部的翼梁来结构地连接,该端部被容纳在另一个叶片部分的翼梁部分中。 翼梁桥和翼梁部分具有联锁形状,通过该形状可防止翼梁部分中的翼梁桥的旋转,从而防止叶片部分之一相对于另一个旋转。 此外,另一个叶片部分的翼梁部分包括从叶片接合部延伸到该叶片的翼梁部分中的接收部分,该接收部分保持翼梁桥,使得翼梁桥的端部相对于 接收部分沿纵向启用。 本发明还涉及一种制造如上所述的截面叶片的方法。
    • 6. 发明申请
    • WIND TURBINE BLADE BEARING REMOVAL APPARATUS AND METHOD
    • 风力涡轮叶片轴承拆卸装置和方法
    • US20140010661A1
    • 2014-01-09
    • US13978463
    • 2011-12-19
    • Mark Hancock
    • Mark Hancock
    • F03D1/00
    • F03D80/50F03D1/0658F03D80/00F03D80/70F05B2240/50F05B2260/507F05B2270/604F05B2270/605Y02E10/721
    • The invention relates to a wind turbine blade bearing removal apparatus and method for facilitating the change-over of the blade root bearing assembly (58) of a wind turbine blade (54). A plurality of support shoulders or yokes (60) are located on the hub (50) of the wind turbine rotor and provide attachment points for respective actuators (62). Corresponding attachment points (66) are provided in the wind turbine blade (54) via a blade support (section 64), which is constructed in the blade between the blade root bearing assembly (58) and the tip. The actuators (62) are mounted between the hub (50) and the blade root bearing assembly (58) and therefore support the blade (54) in a suspended position when the bearing is to be retained. The actuators (62) allow the blade to be easily reattached to the hub (50) when the blade root bearing replacement is completed.
    • 本发明涉及一种用于促进风力涡轮机叶片(54)的叶片根部轴承组件(58)的转换的风力涡轮机叶片轴承移除装置和方法。 多个支撑肩部或轭架(60)位于风力涡轮机转子的轮毂(50)上,并为相应的致动器(62)提供附接点。 相应的附接点(66)经由叶片支撑件(部分64)设置在风力涡轮机叶片(54)中,叶片支撑件(部分64)构造在叶片根部轴承组件(58)和尖端之间的叶片中。 致动器(62)安装在轮毂(50)和叶片根部轴承组件(58)之间,因此当轴承保持时,将叶片(54)支撑在悬挂位置。 当叶片根部轴承更换完成时,致动器(62)允许叶片容易地重新连接到轮毂(50)。
    • 10. 发明授权
    • Strengthening structure for a wind turbine blade, a wind turbine blade, a method for assembling a wind turbine blade and use hereof
    • 风力涡轮机叶片,风力涡轮机叶片的加强结构,风力涡轮机叶片的组装方法及其用途
    • US07980826B2
    • 2011-07-19
    • US12549149
    • 2009-08-27
    • Mark Hancock
    • Mark Hancock
    • F03D1/06
    • B29D99/0028B29L2031/085F03D1/0675F05B2230/50F05B2230/604F05B2250/41F05B2280/6003F05C2253/04Y02E10/721Y02P70/523Y10T29/49337
    • A strengthening structure for a wind turbine blade includes at least one first reinforcement part adapted to be connected to a first blade part of the wind turbine blade, and at least one second reinforcement part adapted to be connected to a second blade part of the wind turbine blade. The strengthening structure is characterized in that the at least one first reinforcement part and/or the at least one second reinforcement part includes an adjusting mechanism enabling that the first reinforcement part and the second reinforcement part are displaceable in relation to each other, at least during the assembly of the wind turbine blade and wherein the adjusting mechanism includes a force mechanism capable of forcing the first reinforcement part and the second reinforcement part away from each other. A wind turbine blade, a method for assembling a wind turbine blade and a use thereof are also contemplated .
    • 用于风力涡轮机叶片的加强结构包括适于连接到风力涡轮机叶片的第一叶片部分的至少一个第一加强部件和适于连接到风力涡轮机的第二叶片部分的至少一个第二加强部件 刀。 加强结构的特征在于,至少一个第一加强部分和/或至少一个第二加强部分包括调节机构,使得第一加强部分和第二加强部分可相对于彼此位移,至少在 风力涡轮机叶片的组件,并且其中调节机构包括能够使第一加强部分和第二加强部分彼此远离的力机构。 风力涡轮机叶片,组装风力涡轮机叶片的方法及其用途也被考虑。