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    • 6. 发明申请
    • METHOD FOR MACHINING MATERIAL USING LASER RADIATION AND APPARATUS FOR CARRYING OUT THE METHOD
    • 使用激光辐射加工材料的方法和实现该方法的装置
    • US20100176102A1
    • 2010-07-15
    • US12601927
    • 2008-05-23
    • Dirk PetringFrank SchneiderWolfgang SchulzMarkus Niessen
    • Dirk PetringFrank SchneiderWolfgang SchulzMarkus Niessen
    • B23K26/00
    • B23K26/0617B23K26/0604B23K26/382B23K26/384B23K26/389
    • A method and device for machining material uses laser radiation, in which the unfocused laser radiation is focused through a focusing optics to a smaller beam cross section. The optical axis of the focused laser radiation, referred to as beam axis, is directed at the material surface. The beam waist, which results from the focusing operation, of the focused laser radiation is held in the region of the interface, which forms of laser radiation and material. The laser radiation is partially absorbed on the interface such that due to induced material removal or induced material displacement the interface and thus also the laser radiation penetrate into the material. The spacing of the beam waist from the upper or lower side of the interface in the axial direction corresponds at most to triple the value of the penetration depth of the interface into the material. The focusing operation is effected such that components of the laser radiation are made divergent not just in the propagation direction downstream of the beam waist but also in the beam waist and/or also in the propagation direction upstream of the beam waist and are thus directed away from the beam axis. These components and angles of divergence are larger than those of the effects of imaging errors, which are inadvertently produced using standard optics and are tolerated.
    • 用于加工材料的方法和装置使用激光辐射,其中未聚焦的激光辐射通过聚焦光学器件聚焦到较小的束横截面。 被称为束轴的聚焦激光辐射的光轴指向材料表面。 由聚焦操作产生的聚焦激光辐射的束腰被保持在形成激光辐射和材料的界面的区域中。 激光辐射被部分地吸收在界面上,使得由于感应材料去除或引起的材料位移界面,因此激光辐射也渗透到材料中。 光束腰部与界面的上侧或下侧在轴向方向上的间隔对应于至多为接口材料穿透深度的三倍。 进行聚焦操作,使得激光辐射的部件不仅在波束腰的下游的传播方向上发散,而且在束腰和/或在波束腰的上游的传播方向上发散,并且因此被引导 从光束轴。 这些分量和发散角大于成像误差的影响,这些误差是使用标准光学器件无意中产生的并且是容忍的。
    • 7. 发明申请
    • METHOD FOR MATERIAL REMOVAL AND DEVICE FOR CARRYING OUT SAID METHOD
    • 材料去除方法和实施方法的装置
    • US20100176103A1
    • 2010-07-15
    • US12602012
    • 2008-05-23
    • Wolfgang SchulzDirk PetringFrank SchneiderMarkus Niessen
    • Wolfgang SchulzDirk PetringFrank SchneiderMarkus Niessen
    • B23K26/38
    • B23K26/0604B23K26/0617B23K26/38
    • A method and device for the material removal to a predetermined removal depth from a workpiece employs a laser beam consisting of one or more sub-beams, each of the latter having a defined beam axis. The axis of the laser beam or the individual axes of the sub-beams are guided along a removal line at a predetermined travelling speed and the laser beam has a predetermined spatial energy flow density that defines a Poynting vector S with a value I0f(x) and a direction s, the spatial energy flow density creating a removal face with an apex formed by the leading part of the removal face in the removal direction and the face, creating a removal edge. With this method the respective incident angles α of the removal face, formed by the normal vectors n at the removal face, and the directions of the Poynting vectors are set in such a way that they do not exceed a maximum value αmax in a predefined region around the apex of the removal face. If the maximum value is exceeded, this is detected in the change from a small gouge amplitude in an upper part of the removal edge to a large gouge amplitude in a lower part of the removal edge.
    • 用于将材料从工件移除到预定去除深度的方法和装置使用由一个或多个子光束组成的激光束,每个子光束每个具有限定的光束轴。 激光束的轴线或子光束的各个轴以预定行进速度沿着去除线被引导,并且激光束具有预定的空间能量流密度,其定义值为I0f(x)的坡印廷矢量S, 和方向s,空间能量流密度产生具有由去除面的引导部分沿移除方向和面部形成的顶点的移除面,产生移除边缘。 利用该方法,通过在去除面处的法线向量n形成的去除面的各个入射角α和坡印亭矢量的方向被设定为使得它们在预定区域内不超过最大值αmax 围绕去除面的顶点。 如果超过最大值,则在从去除边缘的上部的小的凿子振幅到移除边缘的下部的大的凿岩振幅的变化中检测到这个值。
    • 8. 发明授权
    • Process and an arrangement for treating workpiece by means of laser
radiation
    • 通过激光辐射处理工件的工艺和布置
    • US5373135A
    • 1994-12-13
    • US679090
    • 1989-12-21
    • Eckhard BeyerDirk PetringPeter AbelsGerd Harzinger
    • Eckhard BeyerDirk PetringPeter AbelsGerd Harzinger
    • B23K26/00B23K26/03B23K26/04B23K26/36B23K26/38B23K26/14
    • B23K26/032B23K26/034B23K26/364
    • A process for treating workpieces by means of laser radiation, particularlyor the cutting, hole burning and material removal with respect to metallic workpieces, in which the treated site of the workpiece is monitored by a radiation detector which contributes to reducing the intensity of the laser radiation when an upper limit value is reached and to increasing it when a lower limit value is reached. In order to achieve a controlled process without exceeding a critical temperature, such as the evaporation temperature, in a simple manner, the process is carried out such that, by the radiation detector, the heat radiation is measured which emanates from its treatment site, by which an upper temperature is monitored as the upper limit value of a predetermined temperature range and a lower temperature is monitored as the lower limit value of this temperature range, and in that the laser radiation, when the upper limit value is reached, is switched off and is switched on again when the lower limit value is reached.
    • PCT No.PCT / DE89 / 00781 Sec。 371日期:1992年4月20日 102(e)日期1992年4月20日PCT 1989年12月21日PCT公布。 出版物WO90 / 07398 日期1990年7月12日。一种用于通过激光辐射处理工件的方法,特别是用于相对于金属工件的切割,孔燃烧和材料去除,其中工件的处理部位由辐射检测器监测,该辐射检测器有助于 当达到上限值时降低激光辐射的强度,并且当达到下限值时增加激光辐射的强度。 为了实现不超过临界温度(例如蒸发温度)的控制过程,以简单的方式进行处理,使得通过辐射检测器测量从其处理位置发出的热辐射,通过 将上限温度作为预定温度范围的上限值和较低温度进行监测,作为该温度范围的下限值,并且当达到上限值时激光辐射被切断 并且当达到下限值时再次接通。