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    • 61. 发明专利
    • Parameter real length development device, method, and program therefor
    • 参数实际长度开发设备,方法和程序
    • JP2005135348A
    • 2005-05-26
    • JP2003373691
    • 2003-10-31
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • MIURA MASAMIKONO TAKAYUKINAKAHAMA TAKESHINAKAHARA YOSHISATO
    • G06F17/50G06T7/60G06T17/30
    • PROBLEM TO BE SOLVED: To provide a parameter real length development device, a method, and a program therefor which permit highly accurate development work by limiting a development error that occurs for developing a target shape into member shapes.
      SOLUTION: The target shape in a real space generated by predetermined graphic representation is mapped into a parameter space defined by tangent vectors forming a tangential plane of the target shape, the parameter space coordinate value of the mapped target shape is set as a parameter space coordinate value of the member shape for which the target shape is developed to calculate a real space coordinate value corresponding to the parameter space coordinate value of the member shape, and on the basis of the calculated real shape coordinate value of the member shape, distances between corresponding points between the target shape and the member shape are calculated.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种参数实际长度显影装置,方法和程序,其通过将用于将目标形状发展成为形状的发展错误限制,从而允许高度准确的显影工作。 解决方案:通过预定图形表示生成的实际空间中的目标形状被映射到由形成目标形状的切向平面的切向矢量定义的参数空间中,映射的目标形状的参数空间坐标值被设置为 对象形状的成像形状的参数空间坐标值计算与该构件形状的参数空间坐标值对应的实际空间坐标值,并根据所计算的构件形状的实际形状坐标值, 计算目标形状和构件形状之间的对应点之间的距离。 版权所有(C)2005,JPO&NCIPI
    • 67. 发明专利
    • SODIUM BATTERY
    • JP2001223021A
    • 2001-08-17
    • JP2000031005
    • 2000-02-08
    • MITSUBISHI HEAVY IND LTD
    • NISHI TOSHIROKONO TAKAYUKI
    • H01M10/39
    • PROBLEM TO BE SOLVED: To provide a sodium battery in which the reliability and safety are enhanced, and in which the breakage of a solid electrolyte tube is suppressed and the adverse effect can be restricted at the minimum even if the solid electrolyte tube is broken by any chance. SOLUTION: An outer tube 1, the solid electrolyte tube 3 and a guard tube 5 are integrally coupled and fixed via an insulation ring 7 at each top side, and in the outside of solid electrolyte tube 3, a positive electrode active substance 2 is filled up, and inside of the solid electrolyte tube 3, a negative electrode active substance 4 is applied, and the negative electrode active substance 4 contains at least sodium, and the positive electrode active substance 2 contains at least sulfur, and the solid electrolyte tube 3 is constituted so as to make sodium ion permeate. In the above sodium battery, the guard tube 51 is made to have a bellows part 8 which makes the bottom side flexible against the fixed top side.