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    • 5. 发明申请
    • INTERACTIVE HELMET WITH DISPLAY OF WELDING PARAMETERS
    • 具有焊接参数显示的交互式HELMET
    • US20160331592A1
    • 2016-11-17
    • US14708860
    • 2015-05-11
    • Lincoln Global, Inc.
    • Eric STEWART
    • A61F9/06B23K9/00B23K37/00B23K9/095
    • A61F9/06B23K9/095B23K9/322
    • A welding system includes welding equipment for generating a welding current and voltage, a welding control system for controlling the welding current and voltage, a monitoring system for monitoring a welding parameter, and a welding helmet. The welding helmet includes a main body, a retinal tracking system configured to identify a field of view of a user by tracking movement of the user's eyes, and a visual display system configured to generate a visual image of the welding parameter and further configured to position the visual image within the field of view of the user identified by the retinal tracking system. The retinal tracking system is further configured to receive a welding parameter input from the user based on tracking movement of the user's eyes, and to communicate the welding parameter input to the welding control system to control at least one of the welding current and voltage.
    • 焊接系统包括用于产生焊接电流和电压的焊接设备,用于控制焊接电流和电压的焊接控制系统,用于监测焊接参数的监控系统和焊接头盔。 焊接头盔包括主体,视网膜跟踪系统,其被配置为通过跟踪用户的眼睛的移动来识别用户的视野;以及视觉显示系统,被配置为生成焊接参数的视觉图像,并且还被配置为定位 由视网膜跟踪系统识别的用户的视野内的视觉图像。 视网膜跟踪系统还被配置为基于用户的眼睛的跟踪移动来接收来自用户的焊接参数输入,并且将焊接参数输入传送到焊接控制系统以控制焊接电流和电压中的至少一个。
    • 8. 发明申请
    • DUAL-SPECTRUM DIGITAL IMAGING WELDING HELMET
    • 双频数字成像焊接手电筒
    • US20150266128A1
    • 2015-09-24
    • US14732969
    • 2015-06-08
    • Lincoln Global, Inc.
    • Douglas Alan WillsWilliam T. Matthews
    • B23K9/32A42B3/22H04N5/265H04N5/33H04N7/18B23K9/095A42B3/04
    • B23K9/322A42B3/042A42B3/0433A42B3/225B23K9/0956H04N5/265H04N5/33H04N7/183
    • Arc welding systems, methods, and apparatus that provide dual-spectrum, real-time viewable, enhanced user-discrimination between arc welding characteristics during an arc welding process. Welding headgear is configured to shield a user from harmful radiation and to include a digital camera or cameras to provide dual-spectrum (i.e., both visible spectrum and infrared spectrum) real-time digital video image frames. The welding headgear is also configured with an optical display assembly for displaying real-time digital video image frames to the user while wearing the headgear during an arc welding process. Image processing is performed on the visible and infrared spectrum video image frames to generate dual-spectrum video image frames providing an integrated and optimized view of both the visible and thermal characteristics of the arc welding process which can be viewed by the user on the optical display assembly in real time.
    • 电弧焊接系统,方法和装置,在电弧焊接过程中提供电弧焊接特性之间的双光谱,实时可视,增强的用户鉴别。 焊接头饰被配置为屏蔽用户免受有害辐射,并且包括数字照相机或相机以提供双光谱(即可见光谱和红外光谱)实时数字视频图像帧。 焊接头饰还配置有光学显示组件,用于在电弧焊接过程中佩戴头带时向用户显示实时数字视频图像帧。 对可见光和红外光谱视频图像帧进行图像处理,以产生双光谱视频图像帧,提供电弧焊接过程的可见和热特性的集成和优化视图,用户可以在光学显示器上观看 组装实时。
    • 9. 发明申请
    • ELECTRIC-ARC RESISTANT FACE SHIELD OR LENS INCLUDING IR-BLOCKING INORGANIC NANOPARTICLES
    • 耐电弧面罩或镜头,包括红外阻抗无机纳米粒子
    • US20140256865A1
    • 2014-09-11
    • US13785147
    • 2013-03-05
    • HONEYWELL INTERNATIONAL INC.
    • Jonathan BoultonPhilip Johnson
    • A42B3/22
    • A42B3/225A61F9/022B23K9/322F16P1/06
    • A transparent electric-arc resistant composition is produced by preparing crystalline tungsten bronze nanoparticles and homogenously dispersing the nanoparticles in a transparent plastic matrix. The crystalline tungsten bronze nanoparticles are prepared by homogeneously mixing an aqueous solution of soluble tungsten and cesium salts and then drying the solution. The dried solution is then heated in a reducing gas or inert gas atmosphere to form crystalline tungsten bronze nanoparticles. Thereafter, a dispersion agent is added and the nanoparticles are dispersed in a liquid solvent medium by wet milling to form a dispersion mixture. The dispersion mixture is then mixed with polymer pellets to form a polymer mixture, and the polymer mixture is then extruded to yield polymer pellets containing highly homogeneously dispersed inorganic nanoparticles. During or after dispersion, additional particles, dyes, heat stabilizers or UV absorbers, may be added. A lens or shield is then molded from the polymer pellets.
    • 通过制备结晶钨青铜纳米颗粒并将纳米颗粒均匀分散在透明塑料基质中来制备透明的电弧抗性组合物。 通过均匀混合可溶性钨和铯盐的水溶液然后干燥该溶液来制备结晶钨青铜纳米颗粒。 然后将干燥的溶液在还原气体或惰性气体气氛中加热以形成结晶钨青铜纳米颗粒。 此后,加入分散剂,并通过湿研磨将纳米颗粒分散在液体溶剂介质中以形成分散体混合物。 然后将分散混合物与聚合物颗粒混合以形成聚合物混合物,然后将聚合物混合物挤出以产生含有高度均匀分散的无机纳米颗粒的聚合物颗粒。 在分散期间或之后,可以加入另外的颗粒,染料,热稳定剂或UV吸收剂。 然后从聚合物颗粒中模制出透镜或屏蔽层。