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    • 7. 发明申请
    • WIND TURBINE BLADE ASSEMBLY
    • 风力涡轮叶片组件
    • US20160186721A1
    • 2016-06-30
    • US14978564
    • 2015-12-22
    • Kuo-Chang HUANG
    • Kuo-Chang HUANG
    • F03D3/06
    • F03D3/062F03D3/067F05B2240/211Y02E10/74
    • A wind turbine blade assembly includes a rotary shaft, and a plurality of blade units connected to the rotary shaft and angularly spaced apart from each other. Each blade unit includes a grid frame connected to the rotary shaft and formed with a plurality of grid spaces, a plurality of blade panels swingably connected to the grid frame and corresponding in position to the grid spaces, and a plurality of counterweight members respectively disposed on the swing ends of the blade panels. Each counterweight member includes a soft hollow main body and a counterweight fluid accommodated in the main body.
    • 风力涡轮机叶片组件包括旋转轴和连接到旋转轴并且彼此成角度地间隔开的多个叶片单元。 每个叶片单元包括连接到旋转轴并且形成有多个网格空间的网格框架,多个叶片面板,其可摆动地连接到网格框架并且对应于格栅空间的位置,以及多个配重构件,分别设置在 叶片面板的摆动端。 每个配重构件包括容纳在主体中的软中空主体和配重流体。
    • 8. 发明授权
    • Non-contact thrust bearing using permanent magnets
    • 使用永磁体的非接触推力轴承
    • US09371856B2
    • 2016-06-21
    • US13904646
    • 2013-05-29
    • Stephen Kundel
    • Stephen Kundel
    • F16C32/04H02K7/09F03D11/00
    • F16C32/0423F03D80/70F05B2240/211F05B2240/511F16C32/0408F16C32/0427F16C2360/31H02K7/09Y02E10/722Y02E10/725
    • A magnetic thrust bearing for use in a device for relatively free rotational movement of a first part relative to a second part includes axial and laterally spaced magnets. Each magnet has a magnetic field of force with opposing poles and a transition section which converges to a transition line. Axial magnets are spaced on an axis of the first part of the device and lateral magnets are arranged on the second part of the device. The lateral magnets operating in units, having paired lateral magnets positioned on opposite sides of the axis with each of the paired magnets having an equal length and equal gap or space from the axis. Axial magnets have an alternating polar orientation such that the nearest magnetic poles of adjacent axial magnets are repelling, and the distance between transition lines of the axial magnets is substantially equal to the length of the lateral magnets. Accordingly, the magnetic field of force of each lateral magnetic unit is perpendicular and attracting to the repelling fields of force between adjacent axial magnets for lateral displacement of the first part relative to the second part by a fixed gap, so that, with this arrangement, the permanent-magnet bearing enables non-contact, relative motion between the two parts of the device using both attractive and repelling forces generated by magnets.
    • 用于第一部件相对于第二部件相对自由旋转运动的装置中的磁性止推轴承包括轴向和横向间隔开的磁体。 每个磁体具有相对磁极的力场和会聚到过渡线的过渡部分。 轴向磁体在装置的第一部分的轴线上间隔开,并且横向磁体布置在装置的第二部分上。 横向磁体以单元操作,具有位于轴的相对侧上的成对的侧面磁体,其中每对成对的磁体具有与轴相同的长度和相等的间隙或空间。 轴向磁体具有交替极性取向,使得相邻轴向磁体的最近的磁极排斥,并且轴向磁体的过渡线之间的距离基本上等于横向磁体的长度。 因此,每个横向磁性单元的力场垂直并且吸引相邻轴向磁体之间的排斥力,以使第一部分相对于第二部分的横向位移具有固定的间隙,因此,通过这种布置, 永磁体轴承能够使用由磁体产生的有吸引力和排斥力的装置的两部分之间的非接触相对运动。