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    • 31. 发明授权
    • Moving member movement control apparatus, moving member movement control method and machine tool movement control apparatus
    • 移动构件运动控制装置,移动构件运动控制方法和机床运动控制装置
    • US07755316B2
    • 2010-07-13
    • US11824519
    • 2007-06-29
    • Satoru OzawaNoriyuki Yazaki
    • Satoru OzawaNoriyuki Yazaki
    • G05B19/33
    • B23Q39/024G05B19/4061G05B2219/49143G05B2219/50262G05B2219/50264
    • A movement control apparatus for a moving member, includes: a drive unit that moves a moving member by rapid traverse on a first axis and a second axis intersecting the first axis, and overlaps the rapid traverse movements in the two axis directions to thereby allow the moving member to move around the periphery of a given area; a reference arc setting unit that sets a reference arc inscribed in the first and second axes; a timing setting unit that sets an overlap movement start timing for the rapid traverse of the moving member based on the reference arc when switching the moving member from the first axis to the second axis; and a control unit that controls the operation of the drive unit to move the moving member at a timing set by the timing setting unit.
    • 一种移动构件的移动控制装置,包括:驱动单元,其通过在与第一轴线相交的第一轴线和第二轴线上的快速移动来移动移动构件,并且与两个轴向方向上的快速移动重叠,从而允许 移动构件围绕给定区域的周边移动; 参考弧设定单元,设定内切在第一轴和第二轴上的参考弧; 定时设定单元,当将所述移动构件从所述第一轴切换到所述第二轴时,基于所述参考弧设定所述移动构件的快速移动的重叠移动开始定时; 以及控制单元,其控制所述驱动单元的操作以由所述定时设置单元设置的定时移动所述移动构件。
    • 32. 发明申请
    • Expansion-type reflection mirror
    • 膨胀型反射镜
    • US20060181788A1
    • 2006-08-17
    • US10541524
    • 2004-09-09
    • Satoshi HaradaAkira MeguroHironori IshikawaSatoru Ozawa
    • Satoshi HaradaAkira MeguroHironori IshikawaSatoru Ozawa
    • G02B5/08
    • G02B7/183H01Q1/288H01Q15/162
    • A deployable reflector of the invention includes connection members that bridge plural extendable structures constituting a deployable truss structure and connect portions corresponding to nodes of a buckling mode occurring in the extendable structures when a surface cable system is given tension, with portions corresponding to antinodes thereof. The surface cable system includes an internal surface cable system and a circumferential surface cable system connected to the outer circumference thereof. A cable used for the internal surface cable system is high in stiffness and small in ratio of length variation to tension variation. A cable used for the circumferential surface cable system is lower in stiffness and smaller in ratio of the tension variation to the length variation than that used for the internal surface cable system. Given tension by the deployable truss structure via the circumferential surface cable system, the internal surface cable system forms predetermined surface shape.
    • 本发明的可部署的反射器包括连接构件,其连接构成可展开的桁架结构的多个可延伸结构,并且当表面电缆系统被施加张力时,连接对应于在可延伸结构中发生的屈曲模式的节点的部分,其中对应于其波腹的部分。 表面电缆系统包括内表面电缆系统和连接到其外圆周的圆周表面电缆系统。 用于内表面电缆系统的电缆的刚度高,长度变化与张力变化的比例小。 用于圆周表面电缆系统的电缆的刚度较低,并且张力变化与长度变化的比值比内表面电缆系统使用的电缆的频率更小。 通过可展开的桁架结构经由周面电缆系统给予张力,内表面电缆系统形成预定的表面形状。