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    • 63. 发明授权
    • Laser processing machine
    • 激光加工机
    • US07745756B2
    • 2010-06-29
    • US11420260
    • 2006-05-25
    • Tsunehiko YamazakiNaoomi Miyakawa
    • Tsunehiko YamazakiNaoomi Miyakawa
    • B23K26/14B23K26/08B25F3/00
    • B23K26/0876B23K26/1482B23P23/04Y10T29/50Y10T29/5168Y10T483/17
    • A laser processing machine is provided in which a machining tool is automatically exchanged with a laser processing tool to be mounted to a processing head thereof to perform machining operations such as tapping to works. A machining tool 70 which is exchangeably clamped to a mounting section 510 of a processing head 50 of a laser processing machine has a body 720 and a piston member 730 in the body 720, and the piston member 730 supports an air motor 740, a reducer 750, a tool chuck 760, and a tap 762. Air is sent to the air motor 740 from an air source 551b by switching a valve, and an assist gas for a normal or reverse rotation is sent from an assist gas source 554b to the upper portion of the piston member 730, so that a tap is lowered to perform tapping to a work.
    • 提供了一种激光加工机,其中利用激光加工工具自动更换加工工具以将其安装到其加工头上,以进行诸如对工件进行加工的加工操作。 可交换地夹紧到激光加工机的加工头50的安装部510的加工工具70在主体720中具有主体720和活塞部件730,并且活塞部件730支撑空气马达740,减速器 750,工具卡盘760和抽头762.空气通过切换阀从空气源551b发送到空气马达740,并且用于正常或反向旋转的辅助气体从辅助气体源554b发送到 活塞构件730的上部,使得水龙头下降以对工件进行攻丝。
    • 65. 发明申请
    • MACHINING UNIT AND MACHINE TOOL
    • 加工单元和机床
    • US20090214313A1
    • 2009-08-27
    • US12372160
    • 2009-02-17
    • Heizaburo KatoMinoru KitayamaKazuya HoribeHidekazu KojimaMasaharu Nakatsu
    • Heizaburo KatoMinoru KitayamaKazuya HoribeHidekazu KojimaMasaharu Nakatsu
    • B23C3/00B23C1/12
    • B23B29/03482B23B2260/02Y10T82/16591Y10T82/16737Y10T279/14Y10T409/306664Y10T409/307896
    • A machining unit that is supported on a machine tool and machines a workpiece by a revolving tool with a main spindle section being driven and rotated includes an eccentric rotational section, a tool holder, a tool revolution-radius changing mechanism, and a cutting-edge-orientation correcting mechanism. The eccentric rotational section is disposed on the main spindle section, and is rotatable about an eccentric axis that is located eccentrically at any distance in a radial direction of the main spindle section from a rotation center of the main spindle section. The tool holder is disposed on the eccentric rotational section, and supports the tool. The tool revolution-radius changing mechanism moves the tool in the radial direction, and changes the radius of the revolution of the tool by rotating the eccentric rotational section about the eccentric axis. The cutting-edge-orientation correcting mechanism corrects the orientation of a cutting edge of the tool by making the tool holder spin about an axis of the tool holder, the axis being parallel to the rotation center of the main spindle section.
    • 一个加工单元,其被支撑在机床上并且通过被驱动和旋转的主轴部分的旋转工具对工件进行加工,包括偏心旋转部分,工具夹具,刀具转动半径改变机构和切削刃 方位校正机制。 所述偏心旋转部设置在所述主轴部上,并且能够围绕所述主轴部的旋转中心偏心地位于所述主轴部的径向任意距离的偏心轴线旋转。 工具架设置在偏心旋转部分上,并支撑工具。 刀具旋转半径改变机构沿径向移动刀具,并且通过围绕偏心轴旋转偏心旋转部分来改变刀具的旋转半径。 刀尖定向校正机构通过使工具架围绕刀架的轴线旋转,该轴线平行于主轴部的旋转中心来校正刀具的切削刃的取向。
    • 66. 发明授权
    • Optical path axis aligning device of laser beam machine
    • 激光束机的光路轴对准装置
    • US07501602B2
    • 2009-03-10
    • US11611257
    • 2006-12-15
    • Tsunehiko YamazakiNaoomi Miyakawa
    • Tsunehiko YamazakiNaoomi Miyakawa
    • B23K26/04
    • G02B7/1825B23K26/042B23K26/043G02B7/1822
    • A device for improving the efficiency of operation for aligning the optical axis of mirrors disposed in an optical path for laser transmission in a laser beam machine. The laser beam output from a laser oscillator of a laser beam machine is transmitted via multiple mirrors disposed in the optical path thereof to a torch. A mirror for receiving the laser beam from the mirror is removed and a laser beam detecting device is attached in replacement thereof. The laser beam is passed through a cross-shape target, a portion of which is branched and taken as image by a laser beam detecting picture element. The operator operates adjusting screws and to change the tilt angle of the mirror while watching image data, so as to align the optical axis of the laser beam.
    • 一种用于提高激光束机器中激光传输光路中配置的镜子的光轴对准操作效率的装置。 从激光束机的激光振荡器输出的激光束通过设置在其光路中的多个反射镜传送到割炬。 去除用于接收来自反射镜的激光束的反射镜,并且更换激光束检测装置。 激光束通过十字形靶,其一部分被分支,并通过激光束检测图像元素作为图像。 操作者操作调节螺钉并且在观看图像数据的同时改变反射镜的倾斜角度,以便对准激光束的光轴。
    • 68. 发明授权
    • Position control device and position control method for machine tools
    • 机床位置控制装置及位置控制方法
    • US07366576B2
    • 2008-04-29
    • US10910084
    • 2004-08-03
    • Makoto TanahashiYasuhiko Suzuki
    • Makoto TanahashiYasuhiko Suzuki
    • G06F19/00G05B19/18
    • G05B19/19
    • A machine tool moves a driven member by use of a servomotor. A position control device controls the position of the driven member in accordance with full closed loop control. The position control device computes an integrated feedback value g in correspondence with a function F (VM, PM, Vm, Pm) in which four state amounts, motor speed VM, motor position PM, driven member speed Vm, and driven member position Pm are independent variables. The thrust instruction τ*, which is inputted to the servomotor, is compensated with the integrated feedback value g. The servomotor is thus optimally driven and controlled in accordance with full closed loop control.
    • 机床通过使用伺服电机来移动从动构件。 位置控制装置根据全闭环控制来控制从动构件的位置。 位置控制装置根据函数F(V M M,P M M,M M,P SUB)计算积分反馈值g >其中四个状态量,电动机速度V M,电动机位置P M M,从动构件速度V m, 并且被驱动构件位置P 是独立变量。 输入到伺服电动机的推力指令τ*用积分反馈值g补偿。 因此伺服电动机根据全闭环控制被最佳地驱动和控制。
    • 70. 发明授权
    • Dustproof device of light path system in laser beam machine
    • 激光束机光路系统防尘装置
    • US07273999B2
    • 2007-09-25
    • US11538842
    • 2006-10-05
    • Tsunehiko YamazakiNaoomi Miyakawa
    • Tsunehiko YamazakiNaoomi Miyakawa
    • B23K26/02
    • G02B27/0006B23K26/0869B23K26/702
    • The invention provides a laser beam machine having a light path duct with improved dust proof property. A light path system 1 of a laser beam machine comprises a light path duct 10 having a U-shaped cross-section with the upper end opened, wherein the opening portion is covered by a steel belt 30. The laser beam extraction unit 50 traveling on the light path duct 10 in the direction of arrow A elevates the steel belt 30 and extracts the laser beam from the light path duct 10. The steel belt 30 has a guiding projection 32 disposed at the center thereof. The laser beam extraction unit 50 has a guide roller 64 disposed below the steel belt 30 and a guide roller 62 having a V-shaped groove 62a for engaging the projection on the steel belt 30, thereby preventing displacement of the steel belt.
    • 本发明提供一种具有防尘性能好的光路管的激光束机。 激光束机的光路系统1包括具有上端开口的U形横截面的光路导管10,其中开口部分被钢带30覆盖。 在光路导管10上沿箭头A方向行进的激光束提取单元50提升钢带30并从光路导管10提取激光束。 钢带30具有设置在其中心的引导突起32。 激光束提取单元50具有设置在钢带30下方的引导辊64和具有用于接合钢带30上的突起的V形槽62a的引导辊62,从而防止钢带的位移。