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    • 1. 发明授权
    • Method of creating NC part program for laser machining
    • 创建激光加工NC零件程序的方法
    • US4870560A
    • 1989-09-26
    • US196220
    • 1988-04-25
    • Masaki SekiTakashi Takegahara
    • Masaki SekiTakashi Takegahara
    • G05B19/4093
    • G05B19/4093G05B19/40937G05B2219/34098G05B2219/35244G05B2219/36215G05B2219/43129G05B2219/43147G05B2219/45165G05B2219/50109Y02P90/265
    • Based on an offset direction which indicates whether a laser beam (RB) is offset in a direction to the right side or left side of a travelling direction contained in a motion definition statement, and the direction of a curve at a corner portion (CN) of a laser beam path (b.sub.i,b.sub.i+1), it is determined whether an inner side or outer side of the beam path at the corner is a part (PT). If the inner side of the corner is a part, an NC part program for laser machining is created upon inserting a preset escape path (EP) in the corner portion of the beam path. If the outer side of the corner is a part, an NC part program for laser machining is created in such a manner that similarly set machining conditions prevail in preset machining condition modification intervals.
    • PCT No.PCT / JP87 / 00626 Sec。 371日期:1988年4月25日 102(e)日期1988年4月25日PCT提交1987年8月26日PCT公布。 出版物WO88 / 01765 日期:1988年3月10日。基于偏移方向,其指示激光束(RB)是否在包含在运动定义语句中的行进方向的右侧或左侧的方向上偏移,并且曲线方向 在激光束路径(bi,bi + 1)的角部(CN)处,确定拐角处的光束路径的内侧或外侧是否为部分(PT)。 如果角落的内侧是一部分,则在将预设的逸出路径(EP)插入到光束路径的角部中时,产生用于激光加工的NC零件程序。 如果角部的外侧是零件,则以这样的方式创建用于激光加工的NC零件程序,使得在预设的加工条件修改间隔中以类似的设定加工条件为准。
    • 2. 发明授权
    • Apparatus using a beam of positive ions for controlled erosion of surfaces
    • 装置用于控制表面腐蚀的阳离子束
    • US3699334A
    • 1972-10-17
    • US3699334D
    • 1969-06-16
    • KOLLSMAN INSTR CORP
    • COHEN MURRAY FTARASEVICH MICHAEL
    • H01J37/02H01J37/30H01J37/304H01J37/28
    • H01J37/3005G05B2219/42251G05B2219/43147H01J37/026H01J37/304
    • A process and apparatus for controllably eroding the surface of hard materials such as fused quartz, glass, metals and ceramics by the bombardment of the positive ions. Focused argon ions accelerated by potentials of up to 120,000 volts and with a constant beam current are controlled in direction to cause surface erosion of a workpiece to accuracies of up to one-one hundredth of a wavelength of green light. The workpiece is moved at a controlled rate in combination with the control of the beam direction to obtain a controlled erosion pattern over the surface of the workpiece. In another embodiment, an intensity modulated beam current is used. An electron beam is directed at the workpiece in a pattern which surrounds the ion beam to prevent the building up of a positive charge on the work surface. The progress of the erosion is observed and measured by an interferometer system. The movement of the ion beam and workpiece can follow a programmed automatic sequence.
    • 用于通过轰击正离子可控地侵蚀诸如熔融石英,玻璃,金属和陶瓷的硬质材料的表面的方法和装置。 通过高达120,000伏特的电压加速并且具有恒定的束电流的聚焦的氩离子被控制在使得工件的表面侵蚀的精确度达到绿光波长的百分之一点的方向上。 工件以受控的速度与光束方向的控制相结合地移动,以在工件的表面上获得受控的侵蚀图案。 在另一实施例中,使用强度调制束电流。 电子束以围绕离子束的图案指向工件,以防止在工作表面上积累正电荷。 通过干涉仪系统观察和测量侵蚀的进展。 离子束和工件的移动可以遵循编程的自动序列。
    • 4. 发明授权
    • Laser beam machining method
    • 激光束加工方法
    • US5252805A
    • 1993-10-12
    • US852184
    • 1992-05-29
    • Yoshinori NakataEtsuo YamazakiNorio KarubeTsuyoshi Nagamine
    • Yoshinori NakataEtsuo YamazakiNorio KarubeTsuyoshi Nagamine
    • B23K26/00B23K26/08B23K26/36B23K26/38G05B19/416
    • G05B19/4163B23K26/0838B23K26/382G05B2219/35249G05B2219/43129G05B2219/43147G05B2219/45165
    • A laser beam machining method for cutting a workpiece in accordance with a machining program composed of a succession of move commands and laser output commands. An angle of a machining path is calculated on the basis of a move command under execution and a subsequent read out move command (S2, S3). The angle of the machining path is compared with a preset angle (S4), and when the angle of the machining path is more acute than the preset angle, the movement for machining based on the move command under execution is decelerated and stopped (S5). In this case, the laser output command is changed from a cutting condition to a piercing condition, to carry out a piercing operation, and when the piercing operation is completed, the movement for machining is restarted in accordance with the subsequent move command. When the movement for machining is restarted, the laser output command is changed from the piercing condition to the cutting condition in accordance with the movement for machining. Accordingly, a clean-cut acute-angle portion can be obtained by this machining.
    • PCT No.PCT / JP91 / 01371 Sec。 371日期:1992年5月29日 102(e)日期1992年5月29日PCT 1991年10月5日PCT PCT。 出版物WO92 / 06815 日期:1992年04月30日。一种用于根据由一系列移动命令和激光输出命令组成的加工程序切割工件的激光束加工方法。 基于正在执行的移动命令和随后的读出移动命令(S2,S3)来计算加工路径的角度。 将加工路径的角度与预设角度(S4)进行比较,并且当加工路径的角度比预设角度更尖锐时,基于执行中的移动命令的加工移动减速停止(S5) 。 在这种情况下,激光输出指令从切断状态变为穿刺状态,进行穿刺动作,当穿刺动作完成时,根据随后的移动指令重新起动加工动作。 当重新开始加工运动时,激光输出命令根据加工运动从穿孔状态切换到切割状态。 因此,通过该加工可以获得清洁的锐角部分。
    • 10. 发明授权
    • Lamp driver scheme
    • 灯驱动方案
    • US4849777A
    • 1989-07-18
    • US158338
    • 1988-02-22
    • Henry F. Berdat
    • Henry F. Berdat
    • G03B27/32B23Q15/12G01D15/14G01P3/36G03B27/72G03F7/20G06K15/22
    • G03F7/70375B23Q15/12G01D15/14G01P3/36G06K15/225G05B2219/43147
    • A system for projecting a spot of radiant energy includes a lamp for projecting a light spot onto a surface and includes means for providing a selection of differently sized spots. Drive means moves the light spot relative to the surface and is capable of moving the light spot at a maximum given velocity which is the same for all of the differently sized spots. Velocity output means produces a velocity signal representing the velocity of the spot and a normalized velocity signal is produced by dividing the volocity signal by the maximum given velocity. Each differently sized spot is assigned a different lamp command voltage signal and a selected one of the lamp command voltage signals is multiplied by the normalized velocity signal to produce a resultant lamp command voltage signal which energizes the lamp.
    • 用于投射辐射能的点的系统包括用于将光点投射到表面上的灯,并且包括用于提供不同尺寸的斑点的选择的装置。 驱动装置使光点相对于表面移动,并且能够以对于所有不同尺寸的斑点相同的最大给定速度移动光点。 速度输出装置产生代表点速度的速度信号,通过将速度信号除以最大给定速度产生归一化速度信号。 每个不同大小的点被分配不同的灯指令电压信号,并且所选择的灯指令电压信号中的一个与归一化速度信号相乘以产生对灯通电的合成灯指令电压信号。