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    • 91. 发明授权
    • Controller for machine tool and machining-related data processing system provided therewith
    • 用于机床和与其相关的加工相关数据处理系统的控制器
    • US08862251B2
    • 2014-10-14
    • US13218671
    • 2011-08-26
    • Kazuhiko OiwaTakayuki NakamuraMasanori MurozumiMakoto Ideue
    • Kazuhiko OiwaTakayuki NakamuraMasanori MurozumiMakoto Ideue
    • G05B19/409
    • G05B19/409G05B2219/35414G05B2219/36169
    • A machining-related data processing system has a configuration in which a controller for machine tool comprising an NC device and an assisting device is connected to a data processing device via a telecommunication line. The assisting device has a cooperative-processing instructing section transmitting a cooperative processing signal to the data processing device and thereby remotely operating the data processing device to cause it to perform data processing, and receiving the result of the data processing performed in the data processing device, and the data processing device has an automatic program generation section, a machining simulation section and a cooperative-processing executing section receiving the cooperative processing signal from the controller and causing the automatic program generation section and the machining simulation section to perform data processing related to workpiece machining and corresponding to a data processing request accepted in the controller, and transmitting the data processing result to the controller.
    • 机加工数据处理系统具有这样的结构,其中包括NC设备和辅助设备的机床控制器经由电信线连接到数据处理设备。 辅助装置具有协作处理指示部,向协处理装置发送协同处理信号,从而远程操作数据处理装置,使其进行数据处理,并接收数据处理装置中执行的数据处理结果 数据处理装置具有自动程序生成部,加工模拟部和协作处理执行部,从控制部接收协作处理信号,使自动程序生成部和加工模拟部进行与 工件加工对应于控制器中接受的数据处理请求,并将数据处理结果发送给控制器。
    • 92. 发明授权
    • Relocation detection method and relocation detection unit
    • 搬迁检测方法和搬迁检测单位
    • US08825437B2
    • 2014-09-02
    • US13184609
    • 2011-07-18
    • Katsuhiko Ono
    • Katsuhiko Ono
    • G01P15/00
    • G01P13/00G01P1/127G01P7/00
    • A relocation detection unit includes: an acceleration sensor adapted to detect acceleration generated in the apparatus, an arithmetic section adapted to obtain a first calculation value by performing Nth-order integration on detected value of the acceleration sensor at a predetermined timing, wherein N is a predetermined positive integer, a correction section adapted to obtain a second calculated value by adding/subtracting a specific value to/from the first calculation value at the predetermined timing, and a detection section adapted to detect that the apparatus has been relocated if the second calculated value exceeds a preset reference value.
    • 重定位检测单元包括:加速度传感器,其适于检测在所述装置中产生的加速度;运算部,其适于通过在预定定时对所述加速度传感器的检测值进行N次积分来获得第一计算值,其中N是 预定正整数;校正部,其适于通过在所述预定定时对所述第一计算值加上/减去特定值来获得第二计算值;以及检测部,其适于检测所述装置是否已经被重新定位,如果所述第二计算 值超过预设的参考值。
    • 93. 发明授权
    • Displacement detecting device
    • 位移检测装置
    • US08810807B2
    • 2014-08-19
    • US13157656
    • 2011-06-10
    • Daisuke Oguri
    • Daisuke Oguri
    • G01B11/14G01B21/04
    • G01B21/045G01B11/0608G02B7/34
    • In a displacement detecting device, an objective lens condenses the outgoing light coming from a light source toward a surface-to-be-measured. The optical path of the reflected light coming from the surface-to-be-measured is separated from the optical path of the outgoing light coming from the light source by a separation optical system. The reflected light passing through the separation optical system is condensed by a collimator lens and has astigmatism generated therein by an astigmatism generator, and the reflected light in such a state is incident on a light receiving section. A position information generator generates the position information of the surface-to-be-measured using a focus error signal obtained based on the amount of light detected by the light receiving section. Further, the position of the condenser, the astigmatism generator or the light receiving section in the optical axis is set so that the value of the focus error signal is equal to “0” when the focus of the outgoing light condensed by the objective lens is located on the front side or back side of the surface-to-be-measured.
    • 在位移检测装置中,物镜将来自光源的出射光朝向要测量的面进行会聚。 来自待测表面的反射光的光路通过分离光学系统与来自光源的出射光的光路分离。 通过分离光学系统的反射光被准直透镜会聚,并由像散发生器产生像散,并且在这种状态下的反射光入射到受光部。 位置信息发生器使用基于由光接收部检测到的光量获得的聚焦误差信号来生成待测表面的位置信息。 此外,将聚光器,像散发生器或受光部在光轴上的位置设定为使得当由物镜聚光的出射光的焦点为...时,聚焦误差信号的值为“0” 位于要测量的表面的正面或背面。
    • 94. 发明授权
    • Industrial instrument and machine tool control
    • 工业仪器和机床控制
    • US08742904B2
    • 2014-06-03
    • US12950249
    • 2010-11-19
    • Koji TsuchimochiTakashi Noguchi
    • Koji TsuchimochiTakashi Noguchi
    • G08C19/16G05B11/01G05D1/00G06F19/00B64C13/20
    • G08C19/16
    • A control device of a machine tool includes a first determination unit determining an amount of rotation, rotational speed, and direction of rotation of a rotary handle based on a pulse signal generated by rotation of the rotary handle at a manual pulse generator, and a second determination unit determining which of position control and rotational speed control is selected by selection of an axis through an axis selector switch, based on a signal generated by an axis selection signal generator at an operation device including the manual pulse generator. When a determination is made that position control is selected, the control device controls the amount and direction of travel of a spindle based on the amount of rotation and direction of rotation of the rotary handle. When a determination is made that rotational speed control is selected, the control device controls the rotational speed and direction of rotation of a table based on the rotational speed and direction of rotation of the rotary handle. Accordingly, the user can readily set the direction of rotation and rotational speed of the table using the manual pulse generator, and cause the table to move at the set direction of rotation and rotational speed.
    • 机器的控制装置包括:第一确定单元,其基于由手动脉冲发生器处的旋转手柄的旋转产生的脉冲信号,确定旋转手柄的旋转量,旋转速度和旋转方向;第二确定单元, 确定单元,基于在包括手动脉冲发生器的操作装置处由轴选择信号发生器产生的信号,通过轴选择器开关选择轴来确定位置控制和转速控制中的哪一个。 当确定选择位置控制时,控制装置基于旋转手柄的旋转量和旋转方向来控制主轴的行进量和方向。 当确定选择转速控制时,控制装置基于旋转手柄的旋转速度和旋转方向来控制工作台的旋转速度和旋转方向。 因此,用户可以使用手动脉冲发生器容易地设定工作台的旋转方向和转速,并使工作台沿设定的旋转方向和转速移动。
    • 95. 发明授权
    • Chip discharge device for machine tool
    • 机床用排屑装置
    • US08628279B2
    • 2014-01-14
    • US12756480
    • 2010-04-08
    • Kazuyuki HiramotoAkihiro MochizukiYuya Hasegawa
    • Kazuyuki HiramotoAkihiro MochizukiYuya Hasegawa
    • B23Q11/00
    • B23Q11/0046B23B31/265Y10T408/453Y10T409/304088Y10T409/307672Y10T409/308288Y10T409/309464
    • A chip discharge device for a machine tool is provided that has a simple structure, enables automatic replacement of tools, and is suitable for a machine tool in which a spindle head is turned about an axis of turning that is not parallel to the center axis of the spindle. A suction pipe 73 on the first support member side is disposed in parallel to a first axis of turning 191 to be centered on the axis of the through hole 192 of a first support member. A right end of the suction pipe 73 on the first support member side is fixed by bolts to a left end surface of the spindle head 18. An outer circumferential surface of the left end of the suction pipe 73 on the first support member side is connected to be able to relatively rotate to an inner circumferential surface at the lower end of a second communicating pipe 74. A seal mechanism 8 is provided in the connection portion, preventing the external air from being sucked into the second communicating pipe 74.
    • 本发明提供一种机床用的切屑排出装置,其结构简单,可自动更换工具,适用于主轴头围绕不平行于中心轴线的转动轴转动的机床 主轴。 第一支撑构件侧的吸入管73平行于第一旋转轴线191设置成以第一支撑构件的通孔192的轴线为中心。 第一支撑构件侧的吸入管73的右端通过螺栓固定在主轴头18的左端面。第一支撑构件侧的吸入管73的左端的外周面被连接 能够相对旋转到第二连通配管74的下端的内周面。在连接部中设置有密封机构8,防止外部空气被吸入第二连通配管74。
    • 96. 发明授权
    • Apparatus for and method of measuring workpiece on machine tool
    • 机床上工件测量装置及其测量方法
    • US08532811B2
    • 2013-09-10
    • US13079232
    • 2011-04-04
    • Shizuo NishikawaKenichiro UenoHisayoshi MoritaKatsuhiko Ono
    • Shizuo NishikawaKenichiro UenoHisayoshi MoritaKatsuhiko Ono
    • G06F19/00
    • B23Q17/20B23Q17/22Y02P90/265
    • A workpiece measuring apparatus has an external module provided outside an NC device to acquire position data of one or more movable axes of a movable unit having a measuring head attached thereto. The position data of the measuring head is acquired at the same time interval as that for the distance measurement by the measuring head. The position of the workpiece is acquired by calculation from the acquired distance measurement data and the position data of the measuring head. The continuous shape of the workpiece can be measured by performing continuous measurement while moving the measuring head. Therefore, no modification or change is required such as adding a new function to the NC device. In addition, the present invention is applicable to any machine tool equipped with an NC device of any configuration, without being restricted by constraints of the NC device.
    • 工件测量装置具有设置在NC装置外部的外部模块,以获取具有连接到其上的测量头的可移动单元的一个或多个可移动轴的位置数据。 以与测量头的距离测量相同的时间间隔获取测量头的位置数据。 通过从获取的距离测量数据和测量头的位置数据的计算获得工件的位置。 通过在移动测量头时进行连续测量可以测量工件的连续形状。 因此,不需要修改或更改,例如向NC设备添加新功能。 此外,本发明可应用于配备有任何配置的NC设备的任何机床,而不受NC设备的约束的限制。
    • 99. 发明授权
    • Position detection device
    • 位置检测装置
    • US08446594B2
    • 2013-05-21
    • US13118106
    • 2011-05-27
    • Akihiro Kuroda
    • Akihiro Kuroda
    • G01B11/02
    • G01D5/38G01D5/34746
    • A position detection device in which 2nd-order or higher order diffracted light as well as stray light is suppressed from being generated to improve the S/N ratio of a position detection signal as well as to improve detection accuracy. With a pitch d of a diffraction grating 11, whose grating surface 11a is covered with a protective layer 12 of a refractive index n, and with a wavelength λ0 in vacuum of coherent light illuminated, d
    • 抑制二阶或更高阶衍射光和杂散光的位置检测装置的产生,以提高位置检测信号的S / N比,并且提高检测精度。 利用衍射光栅11的间距d,其光栅表面11a被折射率为n的保护层12覆盖,并且相干光的真空中的波长λ0被设置为d <2λ/ n。 将衍射光栅11上的相干光的入射角θ0设定为满足以下关系:|sinθ0|(2π/ dn)-1。 1级衍射光用于位置检测。
    • 100. 发明授权
    • Machining method and machining system
    • 加工方法和加工系统
    • US08397609B2
    • 2013-03-19
    • US12776447
    • 2010-05-10
    • Satoshi MiyamotoRyuichi FujiwaraShizuo NishikawaHisayoshi Morita
    • Satoshi MiyamotoRyuichi FujiwaraShizuo NishikawaHisayoshi Morita
    • B23B1/00B23B7/00
    • B23Q1/76B23Q17/22Y10T82/10Y10T82/2502Y10T82/2571
    • A machining system 1 comprises a lathe 10 having end portion supporting mechanisms 13, 15 for supporting an elongated workpiece W horizontally, center rests 21 for supporting the middle portion of the workpiece W, an adjustment mechanism for adjusting the supported position of the workpiece W by adjusting the height positions of the center rests 21, a tool rest 20, and a control device 25, and a non-contact measuring device 30 for measuring the deflection amount of the workpiece W at portions thereof supported by the center rests 21 when the workpiece W is rotated. The control device 25 is configured to adjust the height positions of the center rests 21 by controlling the adjustment mechanism on the basis of the measured deflection amount, so that the height positions of both end portions of the workpiece W being rotated and the middle portion thereof become the same.
    • 加工系统1包括车床10,车床10具有用于水平地支撑细长工件W的端部支撑机构13,15,用于支撑工件W的中间部分的中心支架21,用于通过以下方式调节工件W的支撑位置的调节机构 调整中心支架21的高度位置,工具架20和控制装置25以及非接触式测量装置30,用于在工件W的部分由中心支架21支撑时测量工件W的偏转量 W旋转。 控制装置25通过基于测定的偏转量控制调整机构来调整中心支架21的高度位置,使得工件W的两端部的高度位置与其中间部分 变得相同