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    • 21. 发明授权
    • Compact laser oscillator
    • 紧凑型激光振荡器
    • US06269111B1
    • 2001-07-31
    • US08589331
    • 1996-01-22
    • Atsushi MoriYoshinori Nakata
    • Atsushi MoriYoshinori Nakata
    • H01S308
    • H01S3/076B23K26/06B23K26/064B23K26/0643B23K26/0648B23K26/0665
    • A laser oscillator which allows the length of a light guide path between itself and a laser beam machine to be reduced. This laser oscillator comprises a laser resonator and a reflector for reflecting and turning back a laser beam emitted from the laser resonator. The laser beam emitted from an output mirror of the laser resonator is outputted from the laser oscillator after being turned back by the reflector and traveling for a predetermined optical path length. In some cases, the direction of the laser beam outputted from the laser oscillator is opposite to the direction of the laser beam emitted from the output mirror. One of the additional reflectors may be a phase lag reflector, and the laser beam can be converted into a circular polarized beam in the laser oscillator.
    • 激光振荡器能够减小其与激光束机器之间的导光路径的长度。 该激光振荡器包括激光谐振器和用于反射和回转从激光谐振器发射的激光束的反射器。 从激光谐振器的输出反射镜发射的激光束在被反射器转回并行进预定光程长度之后从激光振荡器输出。 在某些情况下,从激光振荡器输出的激光束的方向与从输出反射镜发射的激光束的方向相反。 附加反射器中的一个可以是相位滞后反射器,并且激光束可以在激光振荡器中转换成圆偏振光束。
    • 23. 发明授权
    • Laser beam machine
    • 激光束机
    • US5856649A
    • 1999-01-05
    • US919171
    • 1997-08-28
    • Etsuo YamazakiYoshinori NakataKazuhiro SuzukiAtsushi Mori
    • Etsuo YamazakiYoshinori NakataKazuhiro SuzukiAtsushi Mori
    • B23K26/08
    • B23K26/0853
    • A laser beam machine capable of easily generating a machining path for cutting. A reading device reads a designation code for the shape of a hole to be cut, a size of the hole, a central position of the hole, and a start position and a final stop position of a front end point of a machining head. A smooth path-generating device generates a smooth path from the designation code for the shape of the hole, the size of the hole, the central position of the hole, and the start position and the final stop position, such that the overall path for the front end point of the machining head becomes a smooth one. A machining program-generating device generates a machining program based on the smooth path generated. According to the machining program, the machining head moves to cut the hole through a workpiece.
    • 激光束机能够容易地产生用于切割的加工路径。 读取装置读取加工头的前端点的要切割的孔的形状,孔的尺寸,孔的中心位置以及起始位置和最终停止位置的指定代码。 平滑路径生成装置从孔的形状,孔的尺寸,孔的中心位置以及开始位置和最终停止位置的指定代码生成平滑路径,使得用于 加工头的前端点变得光滑。 加工程序生成装置基于生成的平滑路径生成加工程序。 根据加工程序,加工头移动通过工件切割孔。
    • 24. 发明授权
    • Laser beam machine and laser beam machining method
    • 激光束机和激光束加工方法
    • US5582749A
    • 1996-12-10
    • US335823
    • 1994-11-16
    • Atsushi MoriYoshinori Nakata
    • Atsushi MoriYoshinori Nakata
    • B23K26/00B23K26/06B23K26/08B23K26/14B23K26/38B23K31/00
    • B23K26/0665B23K26/08B23K26/082B23K26/123B23K26/14B23K26/147
    • A laser beam machine which makes it possible to diagonally cut a workpiece by the use of a laser beam. The laser beam (1) is condensed by a condensing lens (1a) and irradiated diagonally to a workpiece (5). An assist gas nozzle (3) is held perpendicularly to the workpiece (5), and an assist gas (3b) introduced via an assist gas-introducing port (3a) is jetted via an open end of the assist gas nozzle (3) against the cutting point (5a) on the workpiece (5) from above. By perpendicularly blowing the assist gas (3b) against the workpiece, sufficient pressure of the assist gas is applied to the cutting point (5a), whereby when a groove (5b) is formed through shifting of the cutting point (5a) as the diagonal cutting proceeds, the assist gas (3b) is constantly supplied through the groove (5b) to the optimum degree. At each cutting point (5a) , the laser beam (1) diagonally irradiated and the assist gas (3b) perpendicularly blown cause thermal and chemical reactions of a metal to melt same, while molten metal is immediately removed by the assist gas (3b). As a result, the diagonal cutting of the workpiece proceeds smoothly.
    • PCT No.PCT / JP94 / 00516 Sec。 371日期:1994年11月16日 102(e)日期1994年11月16日PCT 1994年3月29日PCT公布。 第WO94 / 23887号公报 日期:1994年10月27日激光束机可以通过使用激光束对角地切割工件。 激光束(1)被会聚透镜(1a)会聚并被对角地照射到工件(5)上。 辅助气体喷嘴(3)垂直于工件(5)保持,经辅助气体导入口(3a)引入的辅助气体(3b)通过辅助气体喷嘴(3)的开口端被喷射抵抗 (5)上的切​​割点(5a)。 通过将辅助气体(3b)垂直吹送到工件上,辅助气体的足够的压力被施加到切割点(5a),由此当通过切割点(5a)的移动形成凹槽(5b)时,对角线 切割进行时,辅助气体(3b)通过槽(5b)恒定地供给到最佳程度。 在每个切割点(5a)处,对角线照射的激光束(1)和垂直吹塑的辅助气体(3b)引起金属的热化学反应和化学反应而熔融,同时由辅助气体(3b)立即除去熔融金属, 。 结果,工件的对角切割顺利进行。