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    • 1. 发明授权
    • Numerical controller with interference check function
    • 数字控制器具有干扰检查功能
    • US08140177B2
    • 2012-03-20
    • US12196363
    • 2008-08-22
    • Soichiro IdeYusaku YamadaOsamu Hanaoka
    • Soichiro IdeYusaku YamadaOsamu Hanaoka
    • G06F19/00G06F17/50G05B19/04
    • G05B19/4061G05B2219/49138G05B2219/49157G05B2219/50179
    • A numerical controller having an interference prevention function whereby calculation for preventing interference is reliably performed. The numerical controller has the function of defining interference regions corresponding to multiple machine structural objects, respectively, moving the interference regions in accordance with machine coordinate values of the machine structural objects updated by interpolation, and performing an interference check to determine whether or not the interference regions interfere with each other. Interference check computation period automatic adjusting means automatically adjusts an interference check computation period, based on the value obtained by dividing a computation time required for the interference check by time of occupancy of the interference check within one interpolation period. Interference region expanding means expands the interference regions, based on the highest of feed velocities of respective axes and the interference check computation period. Checking means determines whether or not the expanded interference regions interfere with each other.
    • 具有防干扰功能的数值控制器,可靠地进行防止干扰的计算。 数字控制器具有分别对应于多个机械结构物体的干涉区域定义的功能,根据通过插值更新的机器结构对象的机器坐标值移动干扰区域,并执行干扰检查以确定干扰是否 区域相互干扰。 干扰检查计算周期自动调整装置根据在一个内插期间内将干扰检查所占用的计算时间除以干扰检查占用时间而得到的值,自动调整干扰检查计算周期。 干扰区域扩展装置基于各个轴的进给速度和干扰检查计算周期的最高值来扩展干扰区域。 检查装置确定扩展的干扰区域是否彼此干扰。
    • 3. 发明授权
    • Numerical controller for controlling five-axis machining apparatus
    • 用于控制五轴加工设备的数控机床
    • US08260453B2
    • 2012-09-04
    • US12325419
    • 2008-12-01
    • Toshiaki OtsukiSoichiro IdeOsamu HanaokaDaijirou Koga
    • Toshiaki OtsukiSoichiro IdeOsamu HanaokaDaijirou Koga
    • G05B19/00G05B19/18G05B19/25G05B19/41G05B19/416B25J9/06B25J9/10
    • G05B19/4103G05B19/404G05B2219/35158G05B2219/49344G05B2219/50297G05B2219/50336
    • A numerical controller for controlling a five-axis machining apparatus, in which a tool orientation command is corrected to thereby attain a smooth machined surface and a shortened machining time. The numerical controller includes command reading device that successively reads a tool orientation command, tool orientation command correcting device that corrects the tool orientation command so that a ratio between each rotary axis motion amount and a linear axis motion amount is constant in each block, interpolation device that determines respective axis positions at every interpolation period based on the tool orientation command corrected by the tool orientation command correcting device, a motion path command, and a relative motion velocity command such that a tool end point moves along a commanded motion path at a commanded relative motion velocity, and device that drives respective axis motors such that respective axis positions determined by the interpolation device are reached.
    • 一种用于控制五轴加工装置的数值控制器,其中对刀具取向指令进行校正,从而获得平滑的加工表面和缩短的加工时间。 数值控制器包括:命令读取装置,其连续地读取刀具定向指令;刀具取向指令校正装置,其校正刀具取向指令,使得每个旋转轴运动量与直线轴运动量之间的比率在每个块中是恒定的;插值装置 基于由刀具定向指令校正装置校正的刀具取向指令,运动路径指令和相对运动速度指令,在每个插补周期确定各个轴位置,使得刀具终点沿着命令的命令运动路径移动 相对运动速度和驱动相应轴电动机的装置,使得到达由内插装置确定的各个轴位置。
    • 4. 发明授权
    • Numerical controller controlling five-axis machining tool
    • 数控五轴加工工具
    • US08283884B2
    • 2012-10-09
    • US13035635
    • 2011-02-25
    • Toshiaki OtsukiSoichiro IdeOsamu Hanaoka
    • Toshiaki OtsukiSoichiro IdeOsamu Hanaoka
    • G05B19/25
    • G05B19/404G05B2219/49344G05B2219/50297
    • A five-axis machining tool that machines a workpiece mounted on a table using three linear axes and two rotary axes is controlled by a numerical controller. The numerical controller calculates a translational compensation amount and a rotational compensation amount by obtaining axis-dependent translational compensation amounts and axis-dependent rotational compensation amounts on the basis of commanded axis positions. Then, the numerical controller moves the three linear axes and the two rotary axes of the five-axis machining tool to positions obtained by adding the translational compensation amount and the rotational compensation amount thus calculated to a command linear axis position and a command rotary axis position, respectively.
    • 使用三轴直线轴和两个旋转轴对安装在工作台上的工件进行加工的五轴加工工具由数字控制器控制。 数值控制器通过基于指令的轴位置获得与轴相关的平移补偿量和与轴相关的旋转补偿量来计算平移补偿量和旋转补偿量。 然后,数值控制器将五轴加工工具的三个直线轴和两个旋转轴移动到通过将如此计算的平移补偿量和旋转补偿量相加到指令直线轴位置和指令旋转轴位置而获得的位置 , 分别。
    • 6. 发明申请
    • NUMERICAL CONTROLLER FOR MULTI-AXIS MACHINE TOOL
    • 多轴机床数控机
    • US20110276173A1
    • 2011-11-10
    • US13038600
    • 2011-03-02
    • Toshiaki OtsukiSoichiro IdeOsamu HanaokaTakafumi Sasaki
    • Toshiaki OtsukiSoichiro IdeOsamu HanaokaTakafumi Sasaki
    • G05B19/19
    • G05B19/4103G05B2219/49286
    • A numerical controller for controlling a multi-axis machine tool having three linear axes and three rotating axes obtains an interpolated tool direction vector by interpolating a tool direction command and computes multiple solutions for three rotating axes from the vector. The three rotating axis positions are computed by synthesizing these multiple solutions. The three linear axis positions on a machine coordinate system are computed by adding to the interpolated tool center point position the product of the interpolated tool direction vector, or a verified tool direction vector based on the three rotating axis positions determined by the rotating axis position computing means, and a tool length compensation amount. The three rotating axes are moved to the positions computed above and the three linear axes are moved to the positions computed above.
    • 用于控制具有三个直线轴和三个旋转轴的多轴机床的数值控制器通过内插刀具方向指令获得内插的刀具方向矢量,并且从向量计算三个旋转轴的多个解。 通过合成这些多个解来计算三个旋转轴位置。 通过将内插刀具方向矢量的乘积或基于由旋转轴位置计算确定的三个旋转轴位置的经验证的刀具方向矢量相加,插入到刀具中心点位置来计算机床坐标系上的三个直线轴位置 装置和刀具长度补偿量。 三个旋转轴被移动到上面计算的位置,并且三个线性轴被移动到上面计算的位置。
    • 8. 发明授权
    • Numerical controller for multi-axis machine tool
    • 多轴机床数控系统
    • US08255078B2
    • 2012-08-28
    • US13038600
    • 2011-03-02
    • Toshiaki OtsukiSoichiro IdeOsamu HanaokaTakafumi Sasaki
    • Toshiaki OtsukiSoichiro IdeOsamu HanaokaTakafumi Sasaki
    • G05B19/19
    • G05B19/4103G05B2219/49286
    • A numerical controller for controlling a multi-axis machine tool having three linear axes and three rotating axes obtains an interpolated tool direction vector by interpolating a tool direction command and computes multiple solutions for three rotating axes from the vector. The three rotating axis positions are computed by synthesizing these multiple solutions. The three linear axis positions on a machine coordinate system are computed by adding to the interpolated tool center point position the product of the interpolated tool direction vector, or a verified tool direction vector based on the three rotating axis positions determined by the rotating axis position computing means, and a tool length compensation amount. The three rotating axes are moved to the positions computed above and the three linear axes are moved to the positions computed above.
    • 用于控制具有三个直线轴和三个旋转轴的多轴机床的数值控制器通过内插刀具方向指令获得内插的刀具方向矢量,并且从向量计算三个旋转轴的多个解。 通过合成这些多个解来计算三个旋转轴位置。 通过将内插刀具方向矢量的乘积或基于由旋转轴位置计算确定的三个旋转轴位置的经验证的刀具方向矢量相加,插入到刀具中心点位置来计算机床坐标系上的三个直线轴位置 装置和刀具长度补偿量。 三个旋转轴被移动到上面计算的位置,并且三个线性轴被移动到上面计算的位置。