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    • 1. 发明授权
    • Laser machining apparatus
    • 激光加工设备
    • US06818856B2
    • 2004-11-16
    • US10426651
    • 2003-05-01
    • Etsuo YamazakiAtsushi MoriMotohiko Sato
    • Etsuo YamazakiAtsushi MoriMotohiko Sato
    • B23K2600
    • B23K26/702H01S3/1022H01S3/1305H01S5/06825H01S5/06835
    • A laser machining apparatus capable of effecting a feedback control of a laser output from an early stage of operation and detecting an abnormality of the laser output quickly and precisely. A laser output command issued from a laser output commanding section is subjected to a feedback control and inputted to a laser pumping power supply for a laser oscillator. An output of a laser power sensor is amplified by an amplifier and compared with an output of a measurement simulating section for estimating the measured value of the laser output. A difference of the measured value and the simulated value of the laser output is inputted to the feedback control section and also to an output abnormality detecting section. A measurement input estimating section calculates an average power which should be outputted in a normal condition of the laser machining based on data of the laser output command. A fist order delay system can be adopted as the measurement simulating section. The laser output abnormality detecting section determines whether or not the difference of the measured value and the simulated value is within an allowable range for the detection of an abnormality of the laser machining.
    • 一种激光加工设备,其能够从早期操作实现激光输出的反馈控制,并且快速且精确地检测激光输出的异常。 从激光输出指令部发出的激光输出指令经受反馈控制,并输入激光振荡器的激光泵浦电源。 激光功率传感器的输出由放大器放大,并与用于估计激光输出的测量值的测量模拟部分的输出进行比较。 将测量值和激光输出的模拟值的差异输入到反馈控制部分,以及输出异常检测部分。 测量输入估计部分基于激光输出命令的数据来计算应在激光加工的正常状态下输出的平均功率。 作为测量模拟部分,可采用第一阶延迟系统。 激光输出异常检测部判定测定值和模拟值的差是否在检测激光加工异常的容许范围内。
    • 2. 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。
    • 4. 发明授权
    • Apparatus for and method of welding surface-treated metallic workpieces
    • 表面处理金属工件的焊接和焊接方法
    • US5326957A
    • 1994-07-05
    • US938177
    • 1992-12-04
    • Norio KarubeYoshinori NakataAtsushi MoriEtsuo Yamazaki
    • Norio KarubeYoshinori NakataAtsushi MoriEtsuo Yamazaki
    • B23K9/16B23K9/167B23K9/23B23K10/02
    • B23K9/23B23K9/167
    • Surface-treated metallic workpieces such as zinc-plated steel plates are welded with high quality while they are being held in intimate contact with each other. An auxiliary gas including an oxygen gas is ejected from a space (7) around an electrode (1) through a nozzle (8) to a welding point (9) on overlapping surface-treated metallic workpieces such as zinc-plated steel plates (3a, 3b). When the zinc-plated steel plates (3a, 3b) are welded in the atmosphere of the auxiliary gas, the surface layers of zinc and oxygen react with each other, producing a solid oxide such as zinc oxide or zinc peroxide. Therefore, a gas such as a zinc vapor is prevented from being produced between the overlapping zinc-plated steel plates (3a, 3b). The welded joint is of high quality without blowholes which would otherwise blow away molten steel.
    • PCT No.PCT / JP92 / 00517 Sec。 371日期1992年12月4日第 102(e)日期1992年12月4日PCT提交1992年4月21日PCT公布。 出版物WO92 / 19412 PCT 日期:1992年11月12日。表面处理的金属工件如镀锌钢板在保持彼此紧密接触的同时以高品质焊接。 包括氧气的辅助气体从电极(1)周围的空间(7)通过喷嘴(8)喷射到重叠的表面处理金属工件(例如镀锌钢板(3a))上的焊接点(9) ,3b)。 当在辅助气体的气氛中焊接镀锌钢板(3a,3b)时,锌和氧的表面层相互反应,生成氧化锌或过氧化锌等固体氧化物。 因此,防止在重叠的镀锌钢板(3a,3b)之间产生诸如锌蒸气的气体。 焊接接头质量高,无气孔,否则会吹走钢水。
    • 6. 发明授权
    • Image forming apparatus having a density sensor movable in a main scanning direction
    • 图像形成装置具有可在主扫描方向上移动的密度传感器
    • US09451116B2
    • 2016-09-20
    • US14499733
    • 2014-09-29
    • Atsushi MoriShinji KatoMasaru Kumagai
    • Atsushi MoriShinji KatoMasaru Kumagai
    • G03G15/00H04N1/047H04N1/028
    • G03G15/5041G03G15/5058H04N1/02885H04N1/047
    • An image forming apparatus includes a photoconductor, an optical scanner, a development device, a movable density sensor, a density sensor driver, and a processor. The optical scanner includes a light source to emit light, and irradiates a surface of the photoconductor in a main scanning direction with the light to form a latent image on the surface of the photoconductor. The development device develops the latent image into a toner image. The density sensor detects unevenness in density of the toner image in the main scanning direction. The density sensor driver moves the density sensor in the main scanning direction. The processor corrects a driving signal for the light source according to image data to reduce the unevenness in density in the main scanning direction, according to positional data of the density sensor in the main scanning direction and an output value of the density sensor.
    • 图像形成装置包括光电导体,光学扫描器,显影装置,可移动密度传感器,密度传感器驱动器和处理器。 光学扫描器包括发光的光源,并且用光在主扫描方向上照射感光体的表面,以在感光体的表面上形成潜像。 显影装置将潜像显影成调色剂图像。 密度传感器检测调色剂图像在主扫描方向上的浓度不均匀。 密度传感器驱动器将密度传感器沿主扫描方向移动。 处理器根据图像数据校正光源的驱动信号,以根据密度传感器在主扫描方向上的位置数据和密度传感器的输出值来减小主扫描方向上的浓度不均匀性。
    • 8. 发明申请
    • LASER DEVICE THAT STABLY CONTROLS VERY LOW LASER POWER
    • 稳定的控制非常低的激光功率的激光器件
    • US20110243165A1
    • 2011-10-06
    • US13039715
    • 2011-03-03
    • Masahiro HONDAKoji HayanoAtsushi Mori
    • Masahiro HONDAKoji HayanoAtsushi Mori
    • H01S3/13
    • H01S3/134H01S3/036H01S3/073H01S3/0971
    • A laser device comprises: first and second laser excitation regions that are disposed in series each other; a first power supply unit (PSU1) that injects a first energy into the first laser excitation region; and a second power supply unit (PSU2) that injects a second energy into the second laser excitation region, wherein the first power supply unit injects a predetermined excitation energy equal to or higher than a critical injection energy at which laser oscillation starts into the first laser excitation region as the first energy and the second power supply unit injects energy between a preliminary excitation energy needed for preliminary discharge and the critical injection energy into the second laser excitation region as the second energy, so as to control laser power. Consequently, the laser device can stably output very low laser even though it is a high power laser.
    • 激光装置包括:彼此串联布置的第一和第二激光激发区域; 第一电源单元(PSU1),其向第一激光激发区域注入第一能量; 以及将第二能量注入到所述第二激光激发区域的第二电源单元(PSU2),其中,所述第一电源单元注入等于或高于激光振荡开始到所述第一激光器的临界注入能量的预定激发能量 作为第一能量的激发区域和第二电力供给单元将预备放电所需要的预备激励能量与进入第二激光激励区域的临界注入能量之间的能量注入第二能量,以控制激光功率。 因此,尽管激光装置是高功率激光器,但激光装置可以稳定地输出非常低的激光。