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    • 1. 发明申请
    • WELDING OBSERVATION DEVICE
    • 焊接观察装置
    • US20100206851A1
    • 2010-08-19
    • US12596045
    • 2008-04-11
    • Kenichi NakatateTakashi TsumanumaSatoshi KatouAkemi KatouJun Yamagishi
    • Kenichi NakatateTakashi TsumanumaSatoshi KatouAkemi KatouJun Yamagishi
    • B23K9/16B23K9/00
    • B23K9/0956B23K9/321B23K31/125G01N21/67G02B5/208G02B5/23G02B13/22Y10S901/42
    • A welding observation apparatus is provided to use partial darkening by a telecentric optical system and a photochromic filter (PCF) as an optical system for filtering light emission from arc discharge in order to verify the welding condition under the welding arc discharge, without forming an image on the PCF, so that light reducing performance can be secured even if a focus shifts from on the PCF, with satisfactory monitoring of welding condition.The welding observation apparatus comprises: an arc welding unit 8; an objective optical system (1, 2) for concentrating light from the arc welding unit 8; a telecentric optical system 3 for guiding the light concentrated by the objective optical system (1, 2); a PCF 4 for illuminating with the light guided by the telecentric optical system 3; and a solid state imaging device 9 for receiving the light passing through the PCF 4, wherein the light from the arc welding unit 8 is partial-darkened by the PCF 4.
    • 提供了一种焊接观察装置,用于通过远心光学系统和光致变色滤光器(PCF)作为用于过滤来自电弧放电的光的系统的部分变暗,以便在焊接电弧放电下验证焊接条件,而不形成图像 在PCF上,即使焦点从PCF上移动,也可以保证焊接条件的良好监控,从而可以确保降低光的性能。 焊接观察装置包括:电弧焊接单元8; 用于聚集来自电弧焊接单元8的光的物镜光学系统(1,2); 用于引导由物镜光学系统(1,2)集中的光的远心光学系统3; 用于用由远心光学系统3引导的光照射的PCF4; 以及用于接收通过PCF 4的光的固态成像装置9,其中来自电弧焊接单元8的光被PCF 4部分变暗。
    • 2. 发明授权
    • Welding observation apparatus
    • 焊接观察装置
    • US08884187B2
    • 2014-11-11
    • US12596045
    • 2008-04-11
    • Kenichi NakatateTakashi TsumanumaJun YamagishiAkemi Katou
    • Kenichi NakatateTakashi TsumanumaSatoshi KatouJun Yamagishi
    • B23K9/10G02B5/20G02B13/22B23K31/12B23K9/095B23K9/32G01N21/67G02B5/23
    • B23K9/0956B23K9/321B23K31/125G01N21/67G02B5/208G02B5/23G02B13/22Y10S901/42
    • A welding observation apparatus is provided to use partial darkening by a telecentric optical system and a photochromic filter (PCF) as an optical system for filtering light emission from arc discharge in order to verify the welding condition under the welding arc discharge, without forming an image on the PCF, so that light reducing performance can be secured even if a focus shifts from on the PCF, with satisfactory monitoring of welding condition.The welding observation apparatus comprises: an arc welding unit 8; an objective optical system (1, 2) for concentrating light from the arc welding unit 8; a telecentric optical system 3 for guiding the light concentrated by the objective optical system (1, 2); a PCF 4 for illuminating with the light guided by the telecentric optical system 3; and a solid state imaging device 9 for receiving the light passing through the PCF 4, wherein the light from the arc welding unit 8 is partial-darkened by the PCF 4.
    • 提供了一种焊接观察装置,用于通过远心光学系统和光致变色滤光器(PCF)作为用于过滤来自电弧放电的光的系统的部分变暗,以便在焊接电弧放电下验证焊接条件,而不形成图像 在PCF上,即使焦点从PCF上移动,也可以保证焊接条件的良好监控,从而可以确保降低光的性能。 焊接观察装置包括:电弧焊接单元8; 用于聚集来自电弧焊接单元8的光的物镜光学系统(1,2); 用于引导由物镜光学系统(1,2)集中的光的远心光学系统3; 用于用由远心光学系统3引导的光照射的PCF4; 以及用于接收通过PCF 4的光的固态成像装置9,其中来自电弧焊接单元8的光被PCF 4部分变暗。
    • 3. 发明申请
    • Processing method for an image fiber
    • 图像光纤的处理方法
    • US20060104581A1
    • 2006-05-18
    • US11323139
    • 2005-12-30
    • Kenichi NakatateTakashi Tsumanuma
    • Kenichi NakatateTakashi Tsumanuma
    • G02B6/06
    • C03B37/15C03B2203/06C03B2203/20C03B2203/40G02B6/06G02B6/2835
    • In the present invention, a deformation process is applied to a part of an image fiber, and when implementing improvement of the quality of the transmitted image, the improvement of the image quality in the center region and peripheral region of the image fiber in the radial direction is carried out to an equal degree, and a uniform improvement of the entire screen can be carried out. A processed part is formed having a deformation of all cores that is substantially identical by deforming in the radial direction or by deforming and twisting a part of an image fiber having a plurality of cores that function as pixels in the radial direction thereof. The image fiber can be manufactured by a processing in which by a part of the image fiber having a plurality of cores that function as pixels is heated, and deformed in the radial direction thereof or simultaneously deformed and twisted in the radial direction thereof this heated part.
    • 在本发明中,对图像光纤的一部分进行变形处理,在实现透射图像质量的提高的同时,提高图像光纤的中心区域和周边区域的图像质量 方向进行相同的程度,可以进行整个屏幕的均匀改善。 形成具有通过径向变形基本上相同的所有芯的变形的加工部分,或通过变形和扭曲具有作为其径向方向的像素的多个芯的图像纤维的一部分。 图像纤维可以通过以下处理来制造:其中,具有作为像素的多个芯的图像纤维的一部分被加热,并且在其径向方向上变形或同时变形并沿其径向扭转,该加热部 。
    • 9. 发明授权
    • Processing method for an image fiber
    • 图像光纤的处理方法
    • US07209617B2
    • 2007-04-24
    • US11323139
    • 2005-12-30
    • Kenichi NakatateTakashi Tsumanuma
    • Kenichi NakatateTakashi Tsumanuma
    • G02B6/06G02B6/00
    • C03B37/15C03B2203/06C03B2203/20C03B2203/40G02B6/06G02B6/2835
    • In the present invention, a deformation process is applied to a part of an image fiber, and when implementing improvement of the quality of the transmitted image, the improvement of the image quality in the center region and peripheral region of the image fiber in the radial direction is carried out to an equal degree, and a uniform improvement of the entire screen can be carried out. A processed part is formed having a deformation of all cores that is substantially identical by deforming in the radial direction or by deforming and twisting a part of an image fiber having a plurality of cores that function as pixels in the radial direction thereof. The image fiber can be manufactured by a processing in which by a part of the image fiber having a plurality of cores that function as pixels is heated, and deformed in the radial direction thereof or simultaneously deformed and twisted in the radial direction thereof this heated part.
    • 在本发明中,对图像光纤的一部分进行变形处理,在实现透射图像质量的提高的同时,提高图像光纤的中心区域和周边区域的图像质量 方向进行相同的程度,可以进行整个屏幕的均匀改善。 形成具有通过径向变形基本上相同的所有芯的变形的加工部分,或通过变形和扭曲具有作为其径向方向的像素的多个芯的图像纤维的一部分。 图像纤维可以通过以下处理来制造:其中,具有作为像素的多个芯的图像纤维的一部分被加热,并且在其径向方向上变形或同时变形并沿其径向扭转,该加热部 。