Laser Cutting Method Optimized In Terms Of The Amount of Aerosols
    1.
    发明申请
    Laser Cutting Method Optimized In Terms Of The Amount of Aerosols 有权
    激光切割方法优化的气溶胶量

    公开(公告)号:US20140054274A1

    公开(公告)日:2014-02-27

    申请号:US13882838

    申请日:2011-10-28

    Abstract: The invention relates to an optimized laser cutting method for cutting a part from a material by means of a cutting system comprising: a laser source for producing a laser beam having a certain power; and a cutting head comprising an end nozzle for passage of a cutting laser beam, wherein the method comprises: determining a cutting power Pd such that Pd=Max(Popt;λe) where Max is the mathematical operator of the maximum, Popt is an optimal power of the laser beam of the cutting system, which is predetermined in accordance with the part to be cut, and/or with cutting parameters and/or with system parameters, in order to minimize the amount of aerosols produced when the part is cut, λ is a leading coefficient representing the number of kW required for cutting the part per mm of the thickness of the part, and e is the thickness of the part in mm.

    Abstract translation: 本发明涉及一种用于通过切割系统从材料切割零件的优化的激光切割方法,包括:用于产生具有一定功率的激光束的激光源; 以及切割头,其包括用于切割激光束通过的端部喷嘴,其中所述方法包括:确定切割功率Pd,使得Pd = Max(Popt; lambdae),其中Max是最大值的数学运算符,Popt是最优 切割系统的激光束的功率,其根据待切割部分预定,和/或具有切割参数和/或具有系统参数,以便最小化当切割部件时产生的气溶胶的量, λ是表示切割部件每mm厚度的零件所需的kW的数量的主要系数,e是零件的厚度(mm)。

    Laser cutting method optimized in terms of mass defect per unit length
    2.
    发明授权
    Laser cutting method optimized in terms of mass defect per unit length 有权
    激光切割方法根据单位长度的质量缺陷进行优化

    公开(公告)号:US09399270B2

    公开(公告)日:2016-07-26

    申请号:US13882571

    申请日:2011-10-28

    CPC classification number: B23K26/38 B23K26/0626 B23K26/14 G21D1/003

    Abstract: The invention relates to an optimized laser cutting method for cutting a part from a material by means of a cutting system comprising: a laser source for producing a laser beam having a certain power; and a cutting head comprising an end nozzle for passage of a cutting laser beam, said method being characterized in that it comprises a step of determining the cutting power Pd such that: Pd=Max(Popt;λe) where Max is the mathematical operator of the maximum, Popt is an optimal power of the laser beam of the cutting system, which is predetermined in accordance with the part to be cut, and/or with cutting parameters and/or with system parameters, to minimize the mass defect per unit length of the part when the part is being cut, λ is a leading coefficient representing the number of kW required for cutting the part per mm of the thickness of the part, and e is the thickness of the part in mm.

    Abstract translation: 本发明涉及一种用于通过切割系统从材料切割零件的优化的激光切割方法,包括:用于产生具有一定功率的激光束的激光源; 以及包括用于切割激光束通过的端部喷嘴的切割头,所述方法的特征在于,其包括确定切割功率Pd的步骤,使得:Pd = Max(Popt;λe)其中Max是数学运算符 最大Popt是切割系统的激光束的最佳功率,其根据待切割部分和/或具有切割参数和/或具有系统参数预定,以使每单位长度的质量缺陷最小化 的零件的零件,λ是表示切割零件每mm厚度的零件所需的kW的数量的主要系数,e是零件的厚度(mm)。

    Laser cutting method optimized in terms of the amount of aerosols
    3.
    发明授权
    Laser cutting method optimized in terms of the amount of aerosols 有权
    激光切割方法优化了气溶胶的用量

    公开(公告)号:US09333592B2

    公开(公告)日:2016-05-10

    申请号:US13882838

    申请日:2011-10-28

    Abstract: The invention relates to an optimized laser cutting method for cutting a part from a material by means of a cutting system comprising: a laser source for producing a laser beam having a certain power; and a cutting head comprising an end nozzle for passage of a cutting laser beam, wherein the method comprises: determining a cutting power Pd such that Pd=Max(Popt;λe) where Max is the mathematical operator of the maximum, Popt is an optimal power of the laser beam of the cutting system, which is predetermined in accordance with the part to be cut, and/or with cutting parameters and/or with system parameters, in order to minimize the amount of aerosols produced when the part is cut, λ is a leading coefficient representing the number of kW required for cutting the part per mm of the thickness of the part, and e is the thickness of the part in mm.

    Abstract translation: 本发明涉及一种用于通过切割系统从材料切割零件的优化的激光切割方法,包括:用于产生具有一定功率的激光束的激光源; 以及包括用于切割激光束通过的端部喷嘴的切割头,其中所述方法包括:确定切割功率Pd,使得Pd = Max(Popt;λe),其中Max是最大值的数学运算符,Popt是最优 切割系统的激光束的功率,其根据待切割部分预定,和/或具有切割参数和/或具有系统参数,以便最小化当切割部件时产生的气溶胶的量, λ是表示切割零件每mm厚度部件所需的kW数量的主要系数,e是零件的厚度(mm)。

    LASER CUTTING METHOD OPTIMIZED IN TERMS OF MASS DEFECT PER UNIT LENGTH
    4.
    发明申请
    LASER CUTTING METHOD OPTIMIZED IN TERMS OF MASS DEFECT PER UNIT LENGTH 有权
    激光切割方法优于单位长度的质量缺陷

    公开(公告)号:US20130299473A1

    公开(公告)日:2013-11-14

    申请号:US13882571

    申请日:2011-10-28

    CPC classification number: B23K26/38 B23K26/0626 B23K26/14 G21D1/003

    Abstract: The invention relates to an optimized laser cutting method for cutting a part from a material by means of a cutting system comprising: a laser source for producing a laser beam having a certain power; and a cutting head comprising an end nozzle for passage of a cutting laser beam, said method being characterized in that it comprises a step of determining the cutting power Pd such that: Pd=Max(Popt;λe) where Max is the mathematical operator of the maximum, Popt is an optimal power of the laser beam of the cutting system, which is predetermined in accordance with the part to be cut, and/or with cutting parameters and/or with system parameters, to minimize the mass defect per unit length of the part when the part is being cut, λ is a leading coefficient representing the number of kW required for cutting the part per mm of the thickness of the part, and e is the thickness of the part in mm.

    Abstract translation: 本发明涉及一种用于通过切割系统从材料切割零件的优化的激光切割方法,包括:用于产生具有一定功率的激光束的激光源; 以及包括用于切割激光束通过的端部喷嘴的切割头,所述方法的特征在于,其包括确定切割功率Pd的步骤,使得:Pd = Max(Popt; lambdae)其中Max是数学运算符 最大Popt是切割系统的激光束的最佳功率,其根据待切割部分和/或具有切割参数和/或具有系统参数预定,以使每单位长度的质量缺陷最小化 当零件被切割时,λ是表示切割零件每mm厚度部件所需的kW数量的主导系数,e是零件的厚度(mm)。

    Monitoring method and device by shadowscopy
    5.
    发明授权
    Monitoring method and device by shadowscopy 失效
    监控方法和设备通过阴影检查

    公开(公告)号:US08138446B2

    公开(公告)日:2012-03-20

    申请号:US10589797

    申请日:2005-02-21

    Abstract: A monitoring device by laser shadowscopy, which comprises a light emitter (5) and receiver (6), mounted on an arm (8) oscillating at will around two joints (13, 14), in order to restore the image of the monitored profile more accurately.An important application relates to welding methods and especially in hollow beveled edges.

    Abstract translation: 一种通过激光影像检查的监测装置,其包括光发射器(5)和接收器(6),安装在围绕两个关节(13,14)摆动的臂(8)上,以便恢复所监视的轮廓的图像 更精确地。 一个重要的应用涉及焊接方法,尤其涉及中空斜边。

    Monitoring Method and Device by Shadowscopy
    6.
    发明申请
    Monitoring Method and Device by Shadowscopy 失效
    监视方法和设备通过镜像

    公开(公告)号:US20080283510A1

    公开(公告)日:2008-11-20

    申请号:US10589797

    申请日:2005-02-21

    Abstract: A monitoring device by laser shadowscopy, which comprises a light emitter (5) and receiver (6), mounted on an arm (8) oscillating at will around two joints (13, 14), in order to restore the image of the monitored profile more accurately.An important application relates to welding methods and especially in hollow beveled edges.

    Abstract translation: 一种通过激光影像检查的监测装置,其包括光发射器(5)和接收器(6),安装在围绕两个关节(13,14)摆动的臂(8)上,以便恢复所监视的轮廓的图像 更精确地。 一个重要的应用涉及焊接方法,尤其涉及中空斜边。

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